TY - JOUR A1 - Salman Haider, Malik A1 - Schreiner, Jochen A1 - Kendl, Sabine A1 - Kroiss, Matthias A1 - Luxenhofer, Robert T1 - A Micellar Mitotane Formulation with High Drug-Loading and Solubility: Physico-Chemical Characterization and Cytotoxicity Studies in 2D and 3D In Vitro Tumor Models JF - Macromolecular Bioscience N2 - Adrenocortical carcinoma (ACC) is a rare tumor and prognosis is overall poor but heterogeneous. Mitotane (MT) has been used for treatment of ACC for decades, either alone or in combination with cytotoxic chemotherapy. Even at doses up to 6 g per day, more than half of the patients do not achieve targeted plasma concentration (14–20 mg L\(^{-1}\)) even after many months of treatment due to low water solubility, bioavailability, and unfavorable pharmacokinetic profile. Here a novel MT nanoformulation with very high MT concentrations in physiological aqueous media is reported. The MT‐loaded nanoformulations are characterized by Fourier transform infrared spectroscopy, differential scanning calorimetry, and powder X‐ray diffraction which confirms the amorphous nature of the drug. The polymer itself does not show any cytotoxicity in adrenal and liver cell lines. By using the ACC model cell line NCI‐H295 both in monolayers and tumor cell spheroids, micellar MT is demonstrated to exhibit comparable efficacy to its ethanol solution. It is postulated that this formulation will be suitable for i.v. application and rapid attainment of therapeutic plasma concentrations. In conclusion, the micellar formulation is considered a promising tool to alleviate major drawbacks of current MT treatment while retaining bioactivity toward ACC in vitro. KW - adrenocortical carcinoma KW - amphiphilic block copolymer KW - NCI-H295R KW - poly(2-oxazoline) KW - solubility enhancement Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-206224 VL - 20 IS - 1 ER - TY - THES A1 - Schreiner, Jochen Josef T1 - Etablierung und Charakterisierung einer humanen adrenokortikalen Zelllinie T1 - Establishment and characterization of a human adrenocortical cel line N2 - Background: The response of advanced adrenocortical carcinoma (ACC) to current chemotherapies is unsatisfactory and a limited rate of response to immunotherapy was observed in clinical trials. High tumour mutational burden (TMB) and the presence of a specific DNA signature are characteristic features of tumours with mutations in the gene MUTYH encoding the mutY DNA glycosylase. Both have been shown to potentially predict the response to immunotherapy. High TMB in an ACC cell line model has not been reported yet. Design and methods: The JIL-2266 cell line was established from a primary ACC tumour, comprehensively characterised and oxidative damage, caused by a dysfunctional mutY DNA glycosylase, confirmed. Results: Here, we characterise the novel patient-derived ACC cell line JIL-2266, which is deficient in mutY-dependent DNA repair. JIL-2266 cells have a consistent STR marker profile that confirmed congruousness with primary ACC tumour. Cells proliferate with a doubling time of 41 ± 13 h. Immunohistochemistry revealed positivity for steroidogenic factor-1. Mass spectrometry did not demonstrate significant steroid hormone synthesis. JIL-2266 have hemizygous mutations in the tumour suppressor gene TP53 (c.859G>T:p.E287X) and MUTYH (c.316C>T:p.R106W). Exome sequencing showed 683 single nucleotide variants and 4 insertions/deletions. We found increased oxidative DNA damage in the cell line and the corresponding primary tumour caused by impaired mutY DNA glycosylase function and accumulation of 8-oxoguanine. Conclusion: This model will be valuable as a pre-clinical ACC cell model with high TMB and a tool to study oxidative DNA damage in the adrenal gland. N2 - Hintergrund: Das Therapieansprechen von fortgeschrittenen Nebennierenrindenkarzinomen (ACC) unter den aktuellen Chemotherapieregimen ist nicht zufriedenstellend.Ebenfalls zeigte sich in klinischen Studien nur ein limitiertes Ansprechen auf Immuntherapien. Eine hohe Mutationslast (TMB) und das Vorhandensein einer spezifischen DNA Signatur sind charakteristisch für Tumore mit Mutationen in dem Gen MUTYH, welches die mutY-DNA-Glykosilase kodiert. Es wurde gezeigt, dass dies potentiell ein Ansprechen auf eine Immontherapie vorhersagen kann. Eine hohe Mutationslast in ein ACC Zellline konnte bis jetzt noch nicht gezeigt werden. Methoden: Die JIL--2266 Zelllinie wurde etabliert aus einem primären ACC-Tumor. Diese wurde umfänglich charakterisiert und oxidativer Schaden, welcher durch eine dysfunktionelle mutY DNA Glykosilase verursacht wird, konnte gezeigt werden. Ergebnis: Wir charakterisierten eine neue ACC Zelllinie JIL-2266, welche eine Defizienz in dem mutY DNA-Reperaturmechanismus aufweist. Die JIL-2266 Zellen weisen ein mit dem Primärtumor kongruentes STR-Profil auf. Die Zellen proliferieren mit einer Verdopplungszeit von 41 bis 13h. Die immunhisochemische Färbung zeigte eine Positivität für SF-1. In der Massenspektrometrie fand sich keine signifikante Steroidproduktion. Die JIL-2266 haben eine hemizygote Mutation in dem Tumorsuppressorgen TP53 und MUTYH. Exomsequenzierung zeigte 683 SNVs. Wir fanden erhöhten oxidativen DNA Schaden in der Zelllinie und im Primärtumor, verursacht durch eine gestörte mutY Glykosilase Funktion und eine Anhäufung von 8-Oxoguanin. Zusammenfassung: Dieses Zellinie ist ein wertvolles ACC Modell mit einer hohen Mutationslast und ein Werkzeug um oxidativen DNA Schaden in der Nebenniere zu untersuchen. KW - Nebennierenrindenkarzinom KW - Zellkultur KW - Zelllinie KW - ACC KW - MUTYH1 Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312119 ER - TY - JOUR A1 - Landwehr, Laura-Sophie A1 - Altieri, Barbara A1 - Schreiner, Jochen A1 - Sbiera, Iuliu A1 - Weigand, Isabel A1 - Kroiss, Matthias A1 - Fassnacht, Martin A1 - Sbiera, Silviu T1 - Interplay between glucocorticoids and tumor-infiltrating lymphocytes on the prognosis of adrenocortical carcinoma JF - Journal for ImmunoTherapy of Cancer N2 - Background Adrenocortical carcinoma (ACC) is a rare endocrine malignancy. Tumor-related glucocorticoid excess is present in similar to 60% of patients and associated with particularly poor prognosis. Results of first clinical trials using immune checkpoint inhibitors were heterogeneous. Here we characterize tumor-infiltrating T lymphocytes (TILs) in ACC in association with glucocorticoids as potential explanation for resistance to immunotherapy. Methods We performed immunofluorescence analysis to visualize tumor-infiltrating T cells (CD3\(^+\)), T helper cells (CD3\(^+\)CD4\(^+\)), cytotoxic T cells (CD3\(^+\)CD8\(^+\)) and regulatory T cells (Tregs; CD3\(^+\)CD4\(^+\)FoxP3\(^+\)) in 146 ACC tissue specimens (107 primary tumors, 16 local recurrences, 23 metastases). Quantitative data of immune cell infiltration were correlated with clinical data (including glucocorticoid excess). Results 86.3% of ACC specimens showed tumor infiltrating T cells (7.7 cells/high power field (HPF)), including T helper (74.0%, 6.7 cells/HPF), cytotoxic T cells (84.3%, 5.7 cells/HPF) and Tregs (49.3%, 0.8 cells/HPF). The number of TILs was associated with better overall survival (HR for death: 0.47, 95% CI 0.25 to 0.87), which was true for CD4\(^+\)- and CD8\(^+\) subpopulations as well. In localized, non-metastatic ACC, the favorable impact of TILs on overall and recurrence-free survival was manifested even independently of ENSAT (European Network for the Study of Adrenal Tumors) stage, resection status and Ki67 index. T helper cells were negatively correlated with glucocorticoid excess (Phi=-0.290, p=0.009). Patients with glucocorticoid excess and low TILs had a particularly poor overall survival (27 vs. 121 months in patients with TILs without glucocorticoid excess). Conclusion Glucocorticoid excess is associated with T cell depletion and unfavorable prognosis. To reactivate the immune system in ACC by checkpoint inhibitors, an inhibition of adrenal steroidogenesis might be pivotal and should be tested in prospective studies. KW - immunity KW - immunotherapy KW - lymphocytes KW - tumor-infiltrating KW - t-lymphocytes KW - tumor microenvironment Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-229893 VL - 8 ER -