TY - JOUR A1 - Glutsch, Valerie A1 - Grän, Franziska A1 - Weber, Judith A1 - Gesierich, Anja A1 - Goebeler, Matthias A1 - Schilling, Bastian T1 - Response to combined ipilimumab and nivolumab after development of a nephrotic syndrome related to PD-1 monotherapy JF - Journal for ImmunoTherapy of Cancer N2 - Background High response rates of metastatic melanoma have been reported upon immune checkpoint inhibition by PD-1 blockade alone or in combination with CTLA-4 inhibitors. However, the majority of patients with a primary resistance to anti-PD-1 monotherapy is also refractory to a subsequent combined checkpoint inhibition. In BRAF wildtype patients with a primary resistance to PD-1 inhibitors, therapeutic options are therefore limited and immune-related adverse events (irAE) have to be taken into consideration when discussing a subsequent immunotherapy. Case presentation We report the case of a 68-year-old male patient with metastatic melanoma who experienced an acute renal failure with nephrotic syndrome due to a minimal change disease developing after a single dose of the anti-PD-1 antibody pembrolizumab. A kidney biopsy revealed a podocytopathy without signs of interstitial nephritis. Renal function recovered to almost normal creatinine and total urine protein levels upon treatment with oral steroids and diuretics. Unfortunately, a disease progression (PD, RECIST 1.1) was observed in a CT scan after resolution of the irAE. In a grand round, re-exposure to a PD-1-containing regime was recommended. Consensually, a combined immunotherapy with ipilimumab and nivolumab was initiated. Nephrotoxicity was tolerable during combined immunotherapy and a CT scan of chest and abdomen showed a deep partial remission (RECIST 1.1) after three doses of ipilimumab (3 mg/kg) and nivolumab (1 mg/kg). Conclusion This case illustrates that a fulminant response to combined checkpoint inhibition is possible after progression after anti-PD-1 monotherapy and a severe irAE. KW - PD-1 KW - Immune-related adverse event KW - Minimal change disease KW - Ipilimumab KW - Nivolumab Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201214 VL - 7 ER - TY - JOUR A1 - Hoesl, Christine A1 - Fröhlich, Thomas A1 - Posch, Christian A1 - Kneitz, Hermann A1 - Goebeler, Matthias A1 - Schneider, Marlon R. A1 - Dahlhoff, Maik T1 - The transmembrane protein LRIG1 triggers melanocytic tumor development following chemically induced skin carcinogenesis JF - Molecular Oncology N2 - The incidence of melanoma and nonmelanoma skin cancer has increased tremendously in recent years. Although novel treatment options have significantly improved patient outcomes, the prognosis for most patients with an advanced disease remains dismal. It is, thus, imperative to understand the molecular mechanisms involved in skin carcinogenesis in order to develop new targeted treatment strategies. Receptor tyrosine kinases (RTK) like the ERBB receptor family, including EGFR/ERBB1, ERBB2/NEU, ERBB3, and ERBB4, are important regulators of skin homeostasis and their dysregulation often results in cancer, which makes them attractive therapeutic targets. Members of the leucine‐rich repeats and immunoglobulin‐like domains protein family (LRIG1‐3) are ERBB regulators and thus potential therapeutic targets to manipulate ERBB receptors. Here, we analyzed the function of LRIG1 during chemically induced skin carcinogenesis in transgenic mice expressing LRIG1 in the skin under the control of the keratin 5 promoter (LRIG1‐TG mice). We observed a significant induction of melanocytic tumor formation in LRIG1‐TG mice and no difference in papilloma incidence between LRIG1‐TG and control mice. Our findings also revealed that LRIG1 affects ERBB signaling via decreased phosphorylation of EGFR and increased activation of the oncoprotein ERBB2 during skin carcinogenesis. The epidermal proliferation rate was significantly decreased during epidermal tumorigenesis under LRIG1 overexpression, and the apoptosis marker cleaved caspase 3 was significantly activated in the epidermis of transgenic LRIG1 mice. Additionally, we detected LRIG1 expression in human cutaneous squamous cell carcinoma and melanoma samples. Therefore, we depleted LRIG1 in human melanoma cells (A375) by CRISPR/Cas9 technology and found that this caused EGFR and ERBB3 downregulation in A375 LRIG1 knockout cells 6 h following stimulation with EGF. In conclusion, our study demonstrated that LRIG1‐TG mice develop melanocytic skin tumors during chemical skin carcinogenesis and a deletion of LRIG1 in human melanoma cells reduces EGFR and ERBB3 expression after EGF stimulation. KW - ERBB receptors KW - LRIG1 KW - melanoma KW - mouse model KW - skin carcinogenesis Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-238925 VL - 15 IS - 8 SP - 2140 EP - 2155 ER - TY - THES A1 - Jonas, Wenzel Till T1 - Komparative Analyse des Einflusses zielgerichteter Therapeutika auf den immunologischen Phänotyp im BRAF-V600-mutierten Melanom T1 - Comparative Analysis of the Impact of Targeted Therapy on the Immunological Phenotype in BRAF-V600-mutated Malignant Melanoma N2 - Die Einführung von zielgerichteter Therapie und Immuntherapie hat die Behandlungsmöglichkeiten des Melanoms revolutioniert. Jedoch profitieren viele Patienten nicht langfristig von diesen Therapien. Derzeit werden klinische Studien durchgeführt, die zielgerichtete Therapie und Immuntherapie miteinander kombinieren. In dieser Arbeit wurden in vitro Untersuchungen an den drei BRAF-V600E-mutieren Melanomzelllinien UACC 257, Malme 3M und Sk-Mel 5 unter kombinierter MAPK-Inhibitortherapie durchgeführt. Es wurden die aus der klinischen Routine bekannten Kombinationen aus BRAF- und MEK-Inhibitor – Vemurafenib und Cobimetinib, Dabrafenib und Trametinib sowie Encorafenib und Binimetinib – verwendet. Es wurde untersucht, ob obige zielgerichtete Therapeutika einen Effekt auf immunologische Marker im Melanom haben und ob sich eine der Kombinationen in ihrer Wirkung signifikant von den übrigen unterscheidet. Mittels MTS-Assay und Zellzyklusanalysen konnte eine konzentrationsabhängige Wirkung der Inhibitoren gezeigt und in ihrer Wirkung vergleichbare Inhibitorkonzentrationen eingestellt werden. Unter kombinierter MAPK-Inhibitortherapie zeigte sich ein begrenzter Effekt auf die theoretische Immunogenität des Melanoms. So konnte eine erhöhte MHC-I-Expression (+14 %) und eine verminderte PD-L1-Expression (-24 %) gezeigt werden. Die gewählten Dosen an Inhibitoren induzierten keinen ER-Stress. Ebenso konnte keine Ekto-Calreticulin-Expression auf lebenden Zellen nachgewiesen werden. Zwischen den drei Inhibitorkombinationen zeigten sich keine signifikanten Unterschiede. Die in dieser Arbeit gezeigten begrenzten immunologischen Effekte unter kombinierter MAPK-Inhibitortherapie legen nahe, dass eine Kombination mit Immuntherapie in Teilen synergistisch wirken könnte. Hier sind die Ergebnisse weiterer Studien abzuwarten, die zielgerichtete und Immuntherapie miteinander kombinieren, um ein tiefgreifenderes Verständnis bzgl. etwaiger Synergien zu generieren. Da zwischen den Inhibitorkombinationen keine signifikanten Unterschiede hinsichtlich ihrer Wirkung auf die Immunogenität des Melanoms gefunden wurden, ist anzunehmen, dass sie sich grundsätzlich alle gleichermaßen für eine Kombination mit einer Immuntherapie eignen. Die gezeigte MHC-I-Erhöhung trat bereits bei geringen Inhibitorkonzentrationen auf. Möglicherweise genügt bei einer Kombination mit Immuntherapie bereits eine niedrige Dosis der zielgerichteten Therapie, um die Immuntherapie zu boostern. Um die Frage nach einer möglichen Kombinationstherapie fortwährend zu analysieren, sollten zusätzliche Aspekte der Immunogenität unter kombinierter MAPK-Inhibitortherapie untersucht und die Inhibitortitration zum Vergleich der zielgerichteten Therapeutika weiter präzisiert werden. N2 - The approval of targeted therapy and immunotherapy has revolutionized the treatment options for malignant melanoma. However, many patients do not benefit long-term from these therapies. Clinical trials combining targeted therapy and immunotherapy are currently ongoing. In this study, in vitro analyses were performed on the three BRAF-V600E-mutant melanoma cell lines UACC 257, Malme 3M and Sk-Mel 5 under treatment with combined MAPK inhibitor therapy. Combinations of BRAF inhibitors and MEK inhibitors known from clinical routine - vemurafenib and cobimetinib, dabrafenib and trametinib, and encorafenib and binimetinib - were used. We investigated whether above targeted therapies influence immunological markers in malignant melanoma and whether any of the combinations differ significantly in their effect from the others. Using MTS assay and cell cycle analyses, a concentration-dependent effect of the inhibitors was shown. Furthermore, inhibitor concentrations of comparable effect were adjusted. Combined MAPK inhibitor therapy demonstrated a limited effect on the theoretical immunogenicity of malignant melanoma. Increased MHC-I expression (+14%) and decreased PD-L1 expression (-24%) were shown. The selected doses of inhibitors did not induce ER stress. Similarly, no ecto-calreticulin expression was detected on viable cells. There were no significant differences between the three combinations of inhibitors. The limited immunological effects shown in this study using combined MAPK inhibitor therapy suggest that combination with immunotherapy may act partially synergistic. The results of further studies combining targeted therapy and immunotherapy should be awaited to generate a more profound understanding of any synergies. Since no significant differences were found between the inhibitor combinations regarding their effect on the immunogenicity of malignant melanoma, it can be assumed that they are all equally suitable for combination with immunotherapy. The shown increase of MHC-I already occurred at low inhibitor concentrations. Possibly even a low dose of the targeted therapy in combination with immunotherapy is sufficient to boost said immunotherapy. To further analyze the question of a possible combination therapy, additional aspects of immunogenicity under combined MAPK inhibitor therapy should be investigated and the inhibitor titration used to compare the targeted therapeutics should be further refined. KW - Melanom KW - Immunogenität KW - MAPK-Inhibitoren Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-323239 ER - TY - JOUR A1 - Kirsten, Natalia A1 - Ohm, Frenz A1 - Gehrdau, Kathrin A1 - Girbig, Gefion A1 - Stephan, Brigitte A1 - Ben-Anaya, Nesrine A1 - Pinter, Andreas A1 - Bechara, Falk G. A1 - Presser, Dagmar A1 - Zouboulis, Christos C. A1 - Augustin, Matthias T1 - Switching from adalimumab originator to biosimilar in patients with hidradenitis suppurativa results in losses of response — data from the German HS registry HSBest JF - Life N2 - Since 2021, adalimumab biosimilar ABP 501 can be used alternatively to adalimumab originator (ADAO) in the treatment of hidradenitis suppurativa (HS). Effectiveness and safety data remain scarce. We investigated the impact of switching from ADAO to ABP 501 on disease severity and the occurrence of adverse events (AEs) in patients with HS. We analyzed clinical data on patients enrolled in the German HSBest registry. Evaluation outcomes were assessed at three time points (baseline of originator (t0), prior to switching to biosimilar (t1) and 12 to 14 weeks after switching (t2)) and included patient-reported AEs and disease severity using the International Hidradenitis Suppurativa Severity Score System (IHS4) score. In total, 94 patients were switched from ADAO to ABP 501. Overall, 33.3% (n = 31/94) of the patients developed AEs and/or loss of response (LoR) within 12 to 14 weeks after switching. Of these, 61.3% (n = 19/31) experienced LoR but no AEs, 22.6% (n = 7/31) LoR combined with AEs and 16.1% (n = 5/31) AEs only. Our study showed that switching HS patients from ADAO to ABP 501 does significantly affect treatment effectiveness. Switching patients who are on remission maintenance therapy should be viewed critically. KW - hidradenitis suppurativa KW - biologics KW - TNF alpha KW - adverse drug reaction KW - biosimilar KW - drug effectiveness KW - switching KW - adalimumab KW - registry Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-288213 SN - 2075-1729 VL - 12 IS - 10 ER - TY - JOUR A1 - Banicka, Veronika A1 - Martens, Marie Christine A1 - Panzer, Rüdiger A1 - Schrama, David A1 - Emmert, Steffen A1 - Boeckmann, Lars A1 - Thiem, Alexander T1 - Homozygous CRISPR/Cas9 knockout generated a novel functionally active exon 1 skipping XPA variant in melanoma cells JF - International Journal of Molecular Sciences N2 - Defects in DNA repair pathways have been associated with an improved response to immune checkpoint inhibition (ICI). In particular, patients with the nucleotide excision repair (NER) defect disease Xeroderma pigmentosum (XP) responded impressively well to ICI treatment. Recently, in melanoma patients, pretherapeutic XP gene expression was predictive for anti-programmed cell death-1 (PD-1) ICI response. The underlying mechanisms of this finding are still to be revealed. Therefore, we used CRISPR/Cas9 to disrupt XPA in A375 melanoma cells. The resulting subclonal cell lines were investigated by Sanger sequencing. Based on their genetic sequence, candidates from XPA exon 1 and 2 were selected and further analyzed by immunoblotting, immunofluorescence, HCR and MTT assays. In XPA exon 1, we established a homozygous (c.19delG; p.A7Lfs*8) and a compound heterozygous (c.19delG/c.19_20insG; p.A7Lfs*8/p.A7Gfs*55) cell line. In XPA exon 2, we generated a compound heterozygous mutated cell line (c.206_208delTTG/c.208_209delGA; p.I69_D70delinsN/p.D70Hfs*31). The better performance of the homozygous than the heterozygous mutated exon 1 cells in DNA damage repair (HCR) and post-UV-C cell survival (MTT), was associated with the expression of a novel XPA protein variant. The results of our study serve as the fundamental basis for the investigation of the immunological consequences of XPA disruption in melanoma. KW - DNA repair KW - nucleotide excision repair KW - XPA KW - CRISPR KW - knockout KW - protein variant KW - melanoma KW - A375 Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290427 SN - 1422-0067 VL - 23 IS - 19 ER - TY - JOUR A1 - Rauschenberger, Tabea A1 - Schmitt, Viola A1 - Azeem, Muhammad A1 - Klein-Hessling, Stefan A1 - Murti, Krisna A1 - Grän, Franziska A1 - Goebeler, Matthias A1 - Kerstan, Andreas A1 - Klein, Matthias A1 - Bopp, Tobias A1 - Serfling, Edgar A1 - Muhammad, Khalid T1 - T cells control chemokine secretion by keratinocytes JF - Frontiers in Immunology N2 - The massive infiltration of lymphocytes into the skin is a hallmark of numerous human skin disorders. By co-culturing murine keratinocytes with splenic T cells we demonstrate here that T cells affect and control the synthesis and secretion of chemokines by keratinocytes. While pre-activated CD8\(^+\)T cells induce the synthesis of CXCL9 and CXCL10 in keratinocytes and keep in check the synthesis of CXCL1, CXCL5, and CCL20, keratinocytes dampen the synthesis of CCL3 and CCL4 in pre-activated CD8\(^+\)T cells. One key molecule is IFN-γ that is synthesized by CD8\(^+\)T cells under the control of NFATc1 and NFATc2. CD8\(^+\)T cells deficient for both NFAT factors are unable to induce CXCL9 and CXCL10 expression. In addition, CD8\(^+\)T cells induced numerous type I IFN-inducible “defense genes” in keratinocytes encoding the PD1 and CD40 ligands, TNF-α and caspase-1. The enhanced expression of type I IFN-inducible genes resembles the gene expression pattern at the dermal/epidermal interface in lichen planus, an inflammatory T lymphocyte-driven skin disease, in which we detected the expression of CXCL10 in keratinocytes in close vicinity to the infiltration front of T cells. These data reflect the multifaceted interplay of lymphocytes with keratinocytes at the molecular level. KW - chemokine KW - keratinocytes KW - IFN KW - lichen planus KW - T cells KW - Nfatc1 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195695 SN - 1664-3224 VL - 10 IS - 1917 ER - TY - JOUR A1 - Kosnopfel, Corinna A1 - Sinnberg, Tobias A1 - Sauer, Birgit A1 - Niessner, Heike A1 - Muenchow, Alina A1 - Fehrenbacher, Birgit A1 - Schaller, Martin A1 - Mertens, Peter R. A1 - Garbe, Claus A1 - Thakur, Basant Kumar A1 - Schittek, Birgit T1 - Tumour progression stage-dependent secretion of YB-1 stimulates melanoma cell migration and invasion JF - Cancers N2 - Secreted factors play an important role in intercellular communication. Therefore, they are not only indispensable for the regulation of various physiological processes but can also decisively advance the development and progression of tumours. In the context of inflammatory disease, Y-box binding protein 1 (YB-1) is actively secreted and the extracellular protein promotes cell proliferation and migration. In malignant melanoma, intracellular YB-1 expression increases during melanoma progression and represents an unfavourable prognostic marker. Here, we show active secretion of YB-1 from melanoma cells as opposed to benign cells of the skin. Intriguingly, YB-1 secretion correlates with the stage of melanoma progression and depends on a calcium- and ATP-dependent non-classical secretory pathway leading to the occurrence of YB-1 in the extracellular space as a free protein. Along with an elevated YB-1 secretion of melanoma cells in the metastatic growth phase, extracellular YB-1 exerts a stimulating effect on melanoma cell migration, invasion, and tumourigenicity. Collectively, these data suggest that secreted YB-1 plays a functional role in melanoma cell biology, stimulating metastasis, and may serve as a novel biomarker in malignant melanoma that reflects tumour aggressiveness. KW - melanoma KW - secretion KW - Y-box binding protein 1 KW - migration and invasiveness Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-211206 SN - 2072-6694 VL - 12 IS - 8 ER - TY - JOUR A1 - Cyran, Laura A1 - Serfling, Julia A1 - Kirschner, Luisa A1 - Raifer, Hartmann A1 - Lohoff, Michael A1 - Hermanns, Heike M. A1 - Kerstan, Andreas A1 - Bodem, Jochen A1 - Lutz, Manfred B. T1 - Flt3L, LIF, and IL‐10 combination promotes the selective in vitro development of ESAM\(^{low}\) cDC2B from murine bone marrow JF - European Journal of Immunology N2 - The development of two conventional dendritic cells (DC) subsets (cDC1 and cDC2) and the plasmacytoid DC (pDC) in vivo and in cultures of bone marrow (BM) cells is mediated by the growth factor Flt3L. However, little is known about the factors that direct the development of the individual DC subsets. Here, we describe the selective in vitro generation of murine ESAM\(^{low}\) CD103\(^{-}\) XCR1\(^{-}\) CD172a\(^{+}\) CD11b\(^{+}\) cDC2 from BM by treatment with a combination of Flt3L, LIF, and IL‐10 (collectively named as FL10). FL10 promotes common dendritic cell progenitors (CDP) proliferation in the cultures, similar to Flt3L and CDP sorted and cultured in FL10 generate exclusively cDC2. These cDC2 express the transcription factors Irf4, Klf4, and Notch2, and their growth is reduced using BM from Irf4\(^{-/-}\) mice, but the expression of Batf3 and Tcf4 is low. Functionally they respond to TLR3, TLR4, and TLR9 signals by upregulation of the surface maturation markers MHC II, CD80, CD86, and CD40, while they poorly secrete proinflammatory cytokines. Peptide presentation to TCR transgenic OT‐II cells induced proliferation and IFN‐γ production that was similar to GM‐CSF‐generated BM‐DC and higher than Flt3L‐generated DC. Together, our data support that FL10 culture of BM cells selectively promotes CDP‐derived ESAM\(^{low}\) cDC2 (cDC2B) development and survival in vitro. KW - dendritic cells KW - cDC2 subset KW - Flt3L KW - LIF KW - IL‐10 Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312448 VL - 52 IS - 12 SP - 1946 EP - 1960 ER - TY - JOUR A1 - Krebs, Markus A1 - Behrmann, Christoph A1 - Kalogirou, Charis A1 - Sokolakis, Ioannis A1 - Kneitz, Susanne A1 - Kruithof-de Julio, Marianna A1 - Zoni, Eugenio A1 - Rech, Anne A1 - Schilling, Bastian A1 - Kübler, Hubert A1 - Spahn, Martin A1 - Kneitz, Burkhard T1 - miR-221 Augments TRAIL-mediated apoptosis in prostate cancer cells by inducing endogenous TRAIL expression and targeting the functional repressors SOCS3 and PIK3R1 JF - BioMed Research International N2 - miR-221 is regarded as an oncogene in many malignancies, and miR-221-mediated resistance towards TRAIL was one of the first oncogenic roles shown for this small noncoding RNA. In contrast, miR-221 is downregulated in prostate cancer (PCa), thereby implying a tumour suppressive function. By using proliferation and apoptosis assays, we show a novel feature of miR-221 in PCa cells: instead of inducing TRAIL resistance, miR-221 sensitized cells towards TRAIL-induced proliferation inhibition and apoptosis induction. Partially responsible for this effect was the interferon-mediated gene signature, which among other things contained an endogenous overexpression of the TRAIL encoding gene TNFSF10. This TRAIL-friendly environment was provoked by downregulation of the established miR-221 target gene SOCS3. Moreover, we introduced PIK3R1 as a target gene of miR-221 in PCa cells. Proliferation assays showed that siRNA-mediated downregulation of SOCS3 and PIK3R1 mimicked the effect of miR-221 on TRAIL sensitivity. Finally, Western blotting experiments confirmed lower amounts of phospho-Akt after siRNA-mediated downregulation of PIK3R1 in PC3 cells. Our results further support the tumour suppressing role of miR-221 in PCa, since it sensitises PCa cells towards TRAIL by regulating the expression of the oncogenes SOCS3 and PIK3R1. Given the TRAIL-inhibiting effect of miR-221 in various cancer entities, our results suggest that the influence of miR-221 on TRAIL-mediated apoptosis is highly context- and entity-dependent. KW - Cancer Cell Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202480 VL - 2019 ER - TY - THES A1 - Schmid, Corinna T1 - p53-Inaktivierung im Melanom - ein therapeutischer Ansatzpunkt? T1 - p53-inactivation in melanoma - a therapeutical target? N2 - Die Therapiemöglichkeiten für Patienten im Melanom Stadium IV sind nach wie vor begrenzt und die Erkrankung nur selten heilbar. Eine mögliche Ziel¬struktur in der Melanom¬therapie der Zukunft könnte das im Melanom häufig genetisch wild¬typisch vorliegende p53 sein. Für vorliegende Arbeit wurden humane Melanomzelllinien, welche stabil mit einem p53-Reportergenkonstrukt transduziert waren, hinsichtlich ihrer p53-Expression, -Akti-vität und -Akti¬vierbarkeit untersucht. Alle verwendeten Melanom¬zell¬¬¬linien exprimierten p53 un¬ab¬hängig vom p53-Mutations¬status. Drei der sieben untersuchten p53-wild¬typischen Melanomzelllinien zeigten keine oder nur sehr niedrige p53-Reporter¬gen¬aktivität. Die anderen vier p53-wildtypischen Zelllinien dagegen waren durch hohe, mittels p53-Knockdown unterdrückbare Reportergen¬expression gekennzeichnet. Die Proliferation dieser Zellen in Gegenwart von aktivem p53 belegt, dass Melanomzellen eine hohe Toleranz gegenüber diesem Tumor¬suppressor besitzen können. Eine weitere Steige¬rung der p53-Expression und -Aktivität durch die Hemmung von MDM2 (mouse double minute 2) mit der Substanz Nutlin-3a führte in den Zellen mit messbarer p53-Aktivität jedoch zu einem G1-Zell¬zyklusarrest. Dies belegt die prinzipielle Eignung von p53 als mögliche thera¬peutische Zielstruktur. Aufgrund ihrer schlechten Biover¬füg¬barkeit und hohen Toxizität gelten MDM2-Inhibitoren bisher aber als ungeeignet für den klinischen Einsatz. Die Reduktion hoher therapeutischer Nebenwirkungen könnte durch eine Melanom-spezifische Reaktivierung von p53 gelingen. Eine mögliche negativ-modulierende Wirkung des Mela¬¬nom¬¬markers TRP2 (tyrosinase-related-protein 2) auf p53 wurde im Jahr 2010 von Sendoel et al. nach Unter¬suchungen am Fadenwurm C. elegans vorgeschlagen. TRP2 wird beim metastasierten Melanom in mehr als 80 % der Fälle exprimiert und wäre, handelte es sich beim Melanom um einen weit verbreiteten Regulationsmechanismus, ein interessantes Zielprotein, um die Aktivität von p53 zu steigern. Die dargestellten Ergeb¬nisse zeigen, dass TRP2 zwar in vier von fünf Melanomzelllinien exprimiert wurde, die Unterdrückung der TRP2-Expression jedoch weder spezifischen Einfluss auf die p53-Expression noch auf die p53-Reportergenaktivität zeigte. Auch das veränderte Wachs¬tums¬¬¬verhalten der Zellen nach Unterdrückung von TRP2 mittels drei unterschiedlicher shRNAs konnte im Rescue-Experiment, bei dem TRP nach seinem Knockdown ektop exprimiert wurde, keinem spezifischen Effekt von TRP2 auf die p53-Expression oder p53-Reporteraktivität zugeordnet werden. Auch in der TRP2-negativen Zelllinie führte die ektope TRP2-Expression nicht zu einer verminderten p53-Expression oder -Aktivität. Für das im Gegensatz zu MDM2 deutlich melanomspezifischere TRP2 konnte demensprechend kein sicherer regulatorischer Zusammenhang mit p53 dargestellt werden. Weitere Untersuchungen müssen zeigen, welche Bedeutung wildtypischem p53 im Melanom zukommt und ob sich weitere mögliche p53-Regulatoren als therapeutische Angriffspunkte eignen. N2 - The aim of this study was to investigate the role of wildtype and transcriptional inactive p53 and tyrosinase related protein 2 (TRP2) as potential regulator of p53 in melanoma cell lines. Nine human melanoma cell lines were transduced with a lentiviral pGreenFire™ reporter construct encoding luciferase and GFP under the control of a p53 responsive element. Western blots, luciferase and green fluorescent protein (GFP) assays were used to analyze p53-expression, -activity and -upregulation before and after knockdown of p53 and TRP2 by specific shRNAs. Moreover, melanoma cells were treated with Nutlin-3a, a specific inhibitor of the p53 ubiquitinase mouse double minute 2 homolog (mdm-2), to study its effect on cell proliferation using propidium iodide cell cycle FACS-analysis. Growth of melanoma cells in the presence of active p53 suggests that they tolerate high levels of p53. Furthermore this study shows that preexisting p53 activity can be upregulated by treating the cells with Nutlin-3a. This upregulation was associated with a clear cut cell cycle arrest while the low level p53 activity melanoma cell lines did not show any comparable effect. In contrast regulation of p53 by TRP2 seems not to be common in melanoma cell lines. This study could not depict specific effects on p53 activity alteration after TRP2 knockdown. The role of TRP2 as a potential regulator of p53 in melanoma stays questionable. In principle enhancement of preexisting p53 activity by treating melanoma cells with Nutlin-3a would be a suitable therapeutic target. However, due to its toxicity in humans it might be inappropriate for clinical applications. KW - Melanom KW - p53 KW - TRP2 KW - Nutlin Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-157853 ER - TY - JOUR A1 - Alrefai, Hani A1 - Muhammad, Khalid A1 - Rudolf, Ronald A1 - Pham, Duong Anh Thuy A1 - Klein-Hessling, Stefan A1 - Patra, Amiya K. A1 - Avots, Andris A1 - Bukur, Valesca A1 - Sahin,, Ugur A1 - Tenzer, Stefan A1 - Goebeler, Matthias A1 - Kerstan, Andreas A1 - Serfling, Edgar T1 - NFATc1 supports imiquimod-induced skin inflammation by suppressing IL-10 synthesis in B cells JF - Nature Communications N2 - Epicutaneous application of Aldara cream containing the TLR7 agonist imiquimod (IMQ) to mice induces skin inflammation that exhibits many aspects of psoriasis, an inflammatory human skin disease. Here we show that mice depleted of B cells or bearing interleukin (IL)-10-deficient B cells show a fulminant inflammation upon IMQ exposure, whereas ablation of NFATc1 in B cells results in a suppression of Aldara-induced inflammation. In vitro, IMQ induces the proliferation and IL-10 expression by B cells that is blocked by BCR signals inducing NFATc1. By binding to HDAC1, a transcriptional repressor, and to an intronic site of the Il10 gene, NFATc1 suppresses IL-10 expression that dampens the production of tumour necrosis factor-α and IL-17 by T cells. These data indicate a close link between NFATc1 and IL-10 expression in B cells and suggest NFATc1 and, in particular, its inducible short isoform, NFATc1/αA, as a potential target to treat human psoriasis. KW - B cells KW - psoriasis KW - interleukins KW - inflammation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-173053 VL - 7 ER - TY - THES A1 - Kervarrec, Thibault T1 - Histogenesis of Merkel cell carcinoma T1 - Histogenese des Merkelzellkarzinoms N2 - Merkel cell carcinoma (MCC) is a rare and aggressive skin cancer. In approximately 80% of cases, genomic integration of the Merkel cell polyomavirus (MCPyV) is observed and overexpression of the two MCPyV T antigens (TAgs) is regarded as the main oncogenic determinant of MCPyV-positive MCC cases. However, the nature of the cells from which MCC arises is unknown. Therefore, the goal of the present work was to determine the cell of origin of MCC. First, we characterized MCC patients’ tumors and demonstrated a high similarity of MCPyV- negative MCC with extracutaneous neuroendocrine carcinoma while MCPyV-positive MCC differs from these two groups with respect to morphology, immunohistochemical profile, genetics, origin and behavior. Based on the analysis of a trichoblastoma/MCC combined tumor, we demonstrated that a MCPyV-positive MCC can arise following MCPyV integration in an epithelial cell. In addition, the high similarity between trichoblastoma cells and Merkel cell (MC) progenitors of the hair follicle suggests that these hair follicle cells may represent a general start point for the development of MCPyV-positive MCC. A contribution of the viral TAgs to the development of the characteristic Merkel cell-like MCC phenotype is suggested by experiments demonstrating induction of Merkel cell markers upon TAg expression in human primary keratinocytes or hair follicle cells. As potential mechanisms mediating these phenotypic changes, we identified the capability of MCPyV LT to repress degradation of master regulator of MC development, i.e. the transcription factor ATOH1. To conclude, our work suggests that MCPyV integration in epithelial cells of the hair follicle may represent an important path for MCC development. N2 - Das Merkelzellkarzinom (MCC) ist ein seltener und aggressiver Hautkrebs. In etwa 80% der Fälle wird die genomische Integration des Merkelzell-Polyomavirus (MCPyV) beobachtet und die Überexpression der beiden MCPyV-T-Antigene (TAgs) gilt als die wichtigste onkogene Determinante der MCPyV-positiven MCC-Fälle. Die Ursprungszelle des MCC ist jedoch bisher unbekannt. Daher war das Ziel der vorliegenden Arbeit, die Hinweise auf die Herkunftszelle zu generieren. ... KW - Merkel-Zellkarzinom KW - Merkel cell carcinoma KW - Histogenesis KW - Hair follicle KW - Polyomavirus KW - Histogenese Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-199750 ER - TY - JOUR A1 - Ballin, Nadja A1 - Hotz, Alrun A1 - Bourrat, Emmanuelle A1 - Küsel, Julia A1 - Oji, Vinzenz A1 - Bouadjar, Bakar A1 - Brognoli, Davide A1 - Hickman, Geoffroy A1 - Heinz, Lisa A1 - Vabres, Pierre A1 - Marrakchi, Slaheddine A1 - Leclerc‐Mercier, Stéphanie A1 - Irvine, Alan A1 - Tadini, Gianluca A1 - Hamm, Henning A1 - Has, Cristina A1 - Blume‐Peytavi, Ulrike A1 - Mitter, Diana A1 - Reitenbach, Marina A1 - Hausser, Ingrid A1 - Zimmer, Andreas D. A1 - Alter, Svenja A1 - Fischer, Judith T1 - Genetical, clinical, and functional analysis of a large international cohort of patients with autosomal recessive congenital ichthyosis due to mutations in NIPAL4 JF - Human Mutation N2 - Autosomal recessive congenital ichthyosis (ARCI) belongs to a heterogeneous group of disorders of keratinization. To date, 10 genes have been identified to be causative for ARCI. NIPAL4 (Nipa‐Like Domain‐Containing 4) is the second most commonly mutated gene in ARCI. In this study, we present a large cohort of 101 families affected with ARCI carrying mutations in NIPAL4. We identified 16 novel mutations and increase the total number of pathogenic mutations in NIPAL4 to 34. Ultrastructural analysis of biopsies from six patients showed morphological abnormalities consistent with an ARCI EM type III. One patient with a homozygous splice site mutation, which leads to a loss of NIPAL4 mRNA, showed additional ultrastructural aberrations together with a more severe clinical phenotype. Our study gives insights into the frequency of mutations, a potential hot spot for mutations, and genotype–phenotype correlations. KW - ARCI KW - ARCI EM type III KW - collodion baby KW - ichthyosis KW - NIPAL4 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212747 VL - 40 IS - 12 ER - TY - JOUR A1 - Thiem, Alexander A1 - Hesbacher, Sonja A1 - Kneitz, Hermann A1 - di Primio, Teresa A1 - Heppt, Markus V. A1 - Hermanns, Heike M. A1 - Goebeler, Matthias A1 - Meierjohann, Svenja A1 - Houben, Roland A1 - Schrama, David T1 - IFN-gamma-induced PD-L1 expression in melanoma depends on p53 expression JF - Journal of Experimental & Clinical Cancer Research N2 - Background Immune checkpoint inhibition and in particular anti-PD-1 immunotherapy have revolutionized the treatment of advanced melanoma. In this regard, higher tumoral PD-L1 protein (gene name: CD274) expression is associated with better clinical response and increased survival to anti-PD-1 therapy. Moreover, there is increasing evidence that tumor suppressor proteins are involved in immune regulation and are capable of modulating the expression of immune checkpoint proteins. Here, we determined the role of p53 protein (gene name: TP53) in the regulation of PD-L1 expression in melanoma. Methods We analyzed publicly available mRNA and protein expression data from the cancer genome/proteome atlas and performed immunohistochemistry on tumors with known TP53 status. Constitutive and IFN-ɣ-induced PD-L1 expression upon p53 knockdown in wildtype, TP53-mutated or JAK2-overexpressing melanoma cells or in cells, in which p53 was rendered transcriptionally inactive by CRISPR/Cas9, was determined by immunoblot or flow cytometry. Similarly, PD-L1 expression was investigated after overexpression of a transcriptionally-impaired p53 (L22Q, W23S) in TP53-wt or a TP53-knockout melanoma cell line. Immunoblot was applied to analyze the IFN-ɣ signaling pathway. Results For TP53-mutated tumors, an increased CD274 mRNA expression and a higher frequency of PD-L1 positivity was observed. Interestingly, positive correlations of IFNG mRNA and PD-L1 protein in both TP53-wt and -mutated samples and of p53 and PD-L1 protein suggest a non-transcriptional mode of action of p53. Indeed, cell line experiments revealed a diminished IFN-ɣ-induced PD-L1 expression upon p53 knockdown in both wildtype and TP53-mutated melanoma cells, which was not the case when p53 wildtype protein was rendered transcriptionally inactive or by ectopic expression of p53\(^{L22Q,W23S}\), a transcriptionally-impaired variant, in TP53-wt cells. Accordingly, expression of p53\(^{L22Q,W23S}\) in a TP53-knockout melanoma cell line boosted IFN-ɣ-induced PD-L1 expression. The impaired PD-L1-inducibility after p53 knockdown was associated with a reduced JAK2 expression in the cells and was almost abrogated by JAK2 overexpression. Conclusions While having only a small impact on basal PD-L1 expression, both wildtype and mutated p53 play an important positive role for IFN-ɣ-induced PD-L1 expression in melanoma cells by supporting JAK2 expression. Future studies should address, whether p53 expression levels might influence response to anti-PD-1 immunotherapy. KW - Melanoma KW - PD-L1 KW - CD274 KW - p53 KW - TP53 KW - JAK2 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201016 VL - 38 ER - TY - JOUR A1 - Orouji, Elias A1 - Peitsch, Wiebke K. A1 - Orouji, Azadeh A1 - Houben, Roland A1 - Utikal, Jochen T1 - Oncogenic role of an epigenetic reader of m\(^6\)A RNA modification: YTHDF1 in Merkel cell carcinoma JF - Cancers N2 - Merkel cell carcinoma is a deadly skin cancer, which in the majority of cases is caused by the Merkel cell polyomavirus (MCPyV). The viral small T antigen is regarded as the dominant oncoprotein expressed in the tumor cells. We used genomic screening of copy number aberrations along with transcriptomic analysis to investigate regions with amplification that harbor differentially expressed genes. We identified YTHDF1, a protein that is a reader of N\(^6\)-methyladenosine (m\(^6\)A) RNA modifications, to have high copy gains and to be highly expressed in Merkel cell carcinoma. Importantly, we identified the presence of m\(^6\)A on small T antigen mRNA suggesting a relation between YTHDF1 amplification and MCPyV gene expression. Interestingly, knockdown of YTHDF1 in Merkel cell carcinoma (MCC) cell lines negatively affected the translation initiation factor eIF3 and reduced proliferation and clonogenic capacity in vitro. Furthermore, analysis of survival data revealed worse overall survival in YTHDF1\(^{high}\) MCC patients compared to YTHDF1\(^{low}\) patients. Our findings indicate a novel oncogenic role of YTHDF1 through m\(^6\)A machinery in the tumorigenesis of MCC. KW - Merkel cell carcinoma KW - Merkel cell polyomavirus KW - copy number variations KW - m\(^6\)A KW - RNA modification KW - epitranscriptome KW - YTHDF1 KW - epigenetic reader Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200815 SN - 2072-6694 VL - 12 IS - 1 ER - TY - JOUR A1 - Fan, Kaiji A1 - Zebisch, Armin A1 - Horny, Kai A1 - Schrama, David A1 - Becker, Jürgen C. T1 - Highly expressed miR-375 is not an intracellular oncogene in Merkel cell polyomavirus-associated Merkel cell carcinoma JF - Cancers N2 - miR-375 is a highly abundant miRNA in Merkel cell carcinoma (MCC). In other cancers, it acts as either a tumor suppressor or oncogene. While free-circulating miR-375 serves as a surrogate marker for tumor burden in patients with advanced MCC, its function within MCC cells has not been established. Nearly complete miR-375 knockdown in MCC cell lines was achieved using antagomiRs via nucleofection. The cell viability, growth characteristics, and morphology were not altered by this knockdown. miR-375 target genes and related signaling pathways were determined using Encyclopedia of RNA Interactomes (ENCORI) revealing Hippo signaling and epithelial to mesenchymal transition (EMT)-related genes likely to be regulated. Therefore, their expression was analyzed by multiplexed qRT-PCR after miR-375 knockdown, demonstrating only a limited change in expression. In summary, highly effective miR-375 knockdown in classical MCC cell lines did not significantly change the cell viability, morphology, or oncogenic signaling pathways. These observations render miR-375 an unlikely intracellular oncogene in MCC cells, thus suggesting that likely functions of miR-375 for the intercellular communication of MCC should be addressed. KW - miR-375 KW - antagomiRs KW - Merkel cell carcinoma KW - Hippo signaling KW - focal adhesion Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200678 SN - 2072-6694 VL - 12 IS - 3 ER - TY - JOUR A1 - Ritter, Cathrin A1 - Fan, Kaiji A1 - Paulson, Kelly G. A1 - Nghiem, Paul A1 - Schrama, David A1 - Becker, Jürgen C. T1 - Reversal of epigenetic silencing of MHC class I chain-related protein A and B improves immune recognition of Merkel cell carcinoma JF - Scientific Reports N2 - Merkel cell carcinoma (MCC) is a virally associated cancer characterized by its aggressive behavior and strong immunogenicity. Both viral infection and malignant transformation induce expression of MHC class I chain-related protein (MIC) A and B, which signal stress to cells of the immune system via Natural Killer group 2D (NKG2D) resulting in elimination of target cells. However, despite transformation and the continued presence of virally-encoded proteins, MICs are only expressed in a minority of MCC tumors in situ and are completely absent on MCC cell lines in vitro. This lack of MIC expression was due to epigenetic silencing via MIC promoter hypo-acetylation; indeed, MIC expression was re-induced by pharmacological inhibition of histone deacetylases (HDACs) both in vitro and in vivo. This re-induction of MICs rendered MCC cells more sensitive to immune-mediated lysis. Thus, epigenetic silencing of MICs is an important immune escape mechanism of MCCs. KW - epigenetic silencing KW - Merkel cell carcinoma KW - MHC class I chain-related protein KW - skin cancer Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-167992 IS - 21678 ET - 6 ER - TY - THES A1 - Geiseler, Marina T1 - Klinische, histopathologische und immunphänotypische Charakterisierung der CD4+ klein-/mittelgroßzelligen kutanen T-Zell-Lymphoproliferation T1 - Clinical, histopathological and immunophenotypic characterization of CD4+ small / medium-sized cutaneous T-cell lymphoproliferative disorder N2 - Innerhalb der Gruppe der kutanen T-Zell-Lymphome ist die CD4+ klein-/mittelgroßzellige T-Zell-Lymphoproliferation (SMTCL) eine seltene und bisher als provisorisch erfasste Entität. Um genauere Kenntnisse zu Klinik und Verlauf, Histologie und Immunphänotyp zu gewinnen, untersuchten wir in dieser Fallserie an 95 Fällen entsprechende Charakteristika. Dabei konnten alle der bisher provisorisch definierten Eigenschaften der SMTCL bestätigt werden. Lediglich die 5-Jahre-Überlebensrate zeigte sich mit 100% weitaus höher als die in der WHO-/EORTC-Klassifikation angegebenen 60–80%. Diese Bestätigung der provisorisch definierten Eigenschaften an einem größeren Kollektiv kann dazu beitragen, dass die SMTCL in die nächste Version der WHO-Klassifikation – durch ausreichende Daten gestützt – als definitive Entität aufgenommen werden kann. Insgesamt konnten in dieser Studie einige Faktoren, die mit einem weniger indolenten Krankheitsverlauf assoziiert sind, identifiziert werden. So zeigten klinisch ein initial bestehender generalisierter Hautbefall sowie eine extrafaziale Lokalisation der Läsion einen weniger indolenten Verlauf an. Auch Patienten, bei denen ein Verlust von CD2, CD3 oder CD5 bei den Tumorzellen festgestellt wurde, wiesen einen für die CD4+ SMTCL ungewöhnlichen und weniger indolenten Krankheitsverlauf mit häufigeren Rezidiven und seltenerem Erreichen einer kompletten Remission auf. Histopathologisch schien eine oberflächlichere Infiltrattiefe des Präparates sowie das Vorhandensein eines fokalen Epidermotropismus einen negativen prognostischen Wert zu besitzen. Bezüglich des Gesamtüberlebens hatten allerdings auch Patienten mit einem der identifizierten negativen prognostischen Faktoren eine exzellente Prognose. Bei Vorliegen eines dieser negativen Faktoren sollte jedoch eine engmaschigere klinische Überwachung erfolgen. N2 - Within the group of primary cutaneous T-cell lymphomas, CD4+ small / medium-sized T-cell lymphoproliferative disorder (SMTCL) is a rare and hitherto provisionally defined entity. In this case series we examined clinical, histopathological and immunophenotypic data in 95 SMTCL cases in order to gain more detailed knowledge of the corresponding characteristics of this entity. All the previously provisionally defined properties of SMTCL could be confirmed. Only the 5-year survival rate was, at 100%, much higher than the 60-80% reported in the WHO-/ EORTC-classification. This confirmation of the provisionally defined properties in a larger collective may help to make SMTCL a definitive entity in the next version of the WHO-/EORTC- classification, supported by sufficient data. Overall, several factors associated with less indolent disease progression could be identified in this study. Clinically, an initially existing generalized skin involvement as well as an extrafacial localization of the lesion indicated a less indolent course. Patients diagnosed with a loss of CD2, CD3 or CD5 in tumor cells also had a less indolent course: they showed more frequent relapses and achieved more seldom complete remission. Histopathologically, a more superficial infiltration depth and the presence of focal epidermotropism appeared to have a negative prognostic value. Still, patients with one of the negative prognostic factors identified also had an excellent prognosis in terms of overall survival. However, if one of these negative factors is present, clinical monitoring should be more closely. KW - Hautlymphom KW - Primär kutanes Lymphom KW - primary cutaneous lymphoma Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184112 ER - TY - JOUR A1 - Fusi, Lorenza A1 - Paudel, Rupesh A1 - Meder, Katharina A1 - Schlosser, Andreas A1 - Schrama, David A1 - Goebeler, Matthias A1 - Schmidt, Marc T1 - Interaction of transcription factor FoxO3 with histone acetyltransferase complex subunit TRRAP modulates gene expression and apoptosis JF - Journal of Biological Chemistry N2 - Forkhead box O (FoxO) transcription factors are conserved proteins involved in the regulation of life span and age-related diseases, such as diabetes and cancer. Stress stimuli or growth factor deprivation promotes nuclear localization and activation of FoxO proteins, which—depending on the cellular context—can lead to cell cycle arrest or apoptosis. In endothelial cells (ECs), they further regulate angiogenesis and may promote inflammation and vessel destabilization implicating a role of FoxOs in vascular diseases. In several cancers, FoxOs exert a tumor-suppressive function by regulating proliferation and survival. We and others have previously shown that FoxOs can regulate these processes via two different mechanisms: by direct binding to forkhead-responsive elements at the promoter of target genes or by a poorly understood alternative process that does not require direct DNA binding and regulates key targets in primary human ECs. Here, we performed an interaction study in ECs to identify new nuclear FoxO3 interaction partners that might contribute to FoxO-dependent gene regulation. Mass spectrometry analysis of FoxO3-interacting proteins revealed transformation/transcription domain–associated protein (TRRAP), a member of multiple histone acetyltransferase complexes, as a novel binding partner of FoxO family proteins. We demonstrate that TRRAP is required to support FoxO3 transactivation and FoxO3-dependent G1 arrest and apoptosis in ECs via transcriptional activation of the cyclin-dependent kinase inhibitor p27\(^{kip1}\) and the proapoptotic B-cell lymphoma 2 family member, BIM. Moreover, FoxO–TRRAP interaction could explain FoxO-induced alternative gene regulation via TRRAP-dependent recruitment to target promoters lacking forkhead-responsive element sequences. KW - FoxO3 KW - TRRAP KW - transcription factors Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-299820 VL - 298 IS - 3 ER - TY - JOUR A1 - Schrüfer, Philipp A1 - Stoevesandt, Johanna A1 - Trautmann, Axel T1 - Outcome of a de-labelling algorithm compared with results of penicillin (β-lactam) allergy testing JF - Allergy, Asthma & Clinical Immunology N2 - Background Penicillin allergy labels frequently impede guideline-directed treatment with a penicillin or other β-lactam antibiotics. Despite presumed allergy, targeted questioning may indicate a low probability of sensitization and permit reasonably safe administration of the antibiotic in question. In this study, we evaluated a standardized algorithm aiming to differentiate non-allergic patients from those with true allergic β-lactam hypersensitivity. Methods We retrospectively applied a de-labelling algorithm in 800 consecutive patients with suspected β-lactam hypersensitivity. All had undergone complete allergy work-up permitting to definitely exclude or diagnose β-lactam allergy between 2009 and 2019. Results In 595 (74.4%) out of 800 cases evaluated, β-lactam allergy could be excluded by negative challenge testing. IgE-mediated anaphylaxis was diagnosed in 70 (8.7%) patients, delayed-type hypersensitivity in 135 (16.9%). In 62 (88.6%) anaphylaxis cases, the algorithm correctly advised to use an alternative antibiotic. Accuracy was higher in patients with moderate to severe anaphylaxis (97.7%) compared to those with a history of mild reactions (73.1%). The algorithm correctly identified 122 (90.4%) patients with proven delayed-type hypersensitivity. It permitted de-labelling in 330 (55.5%) out of 595 patients with diagnostic exclusion of penicillin hypersensitivity, but failed to identify the remaining 265 (44.5%) as low-risk cases. Conclusions The algorithm detected 89.8% of cases with penicillin (β-lactam) allergy, sensitivity was optimal for moderate to severe anaphylaxis. Study data justify the implementation of a standardized de-labelling algorithm under close supervision in order to permit guideline-directed treatment and reduce the use of broad-spectrum antibiotics as part of an antibiotic stewardship program. KW - anaphylaxis KW - drug adverse reaction KW - drug allergy KW - drug exanthema KW - drug hypersensitivity KW - penicillin allergy KW - penicillin hypersensitivity Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-299840 SN - 1710-1484 VL - 18 ER -