TY - JOUR A1 - Djuzenova, Cholpon S. A1 - Fiedler, Vanessa A1 - Memmel, Simon A1 - Katzer, Astrid A1 - Sisario, Dmitri A1 - Brosch, Philippa K. A1 - Göhrung, Alexander A1 - Frister, Svenja A1 - Zimmermann, Heiko A1 - Flentje, Michael A1 - Sukhorukov, Vladimir L. T1 - Differential effects of the Akt inhibitor MK-2206 on migration and radiation sensitivity of glioblastoma cells JF - BMC Cancer N2 - Background Most tumor cells show aberrantly activated Akt which leads to increased cell survival and resistance to cancer radiotherapy. Therefore, targeting Akt can be a promising strategy for radiosensitization. Here, we explore the impact of the Akt inhibitor MK-2206 alone and in combination with the dual PI3K and mTOR inhibitor PI-103 on the radiation sensitivity of glioblastoma cells. In addition, we examine migration of drug-treated cells. Methods Using single-cell tracking and wound healing migration tests, colony-forming assay, Western blotting, flow cytometry and electrorotation we examined the effects of MK-2206 and PI-103 and/or irradiation on the migration, radiation sensitivity, expression of several marker proteins, DNA damage, cell cycle progression and the plasma membrane properties in two glioblastoma (DK-MG and SNB19) cell lines, previously shown to differ markedly in their migratory behavior and response to PI3K/mTOR inhibition. Results We found that MK-2206 strongly reduces the migration of DK-MG but only moderately reduces the migration of SNB19 cells. Surprisingly, MK-2206 did not cause radiosensitization, but even increased colony-forming ability after irradiation. Moreover, MK-2206 did not enhance the radiosensitizing effect of PI-103. The results appear to contradict the strong depletion of p-Akt in MK-2206-treated cells. Possible reasons for the radioresistance of MK-2206-treated cells could be unaltered or in case of SNB19 cells even increased levels of p-mTOR and p-S6, as compared to the reduced expression of these proteins in PI-103-treated samples. We also found that MK-2206 did not enhance IR-induced DNA damage, neither did it cause cell cycle distortion, nor apoptosis nor excessive autophagy. Conclusions Our study provides proof that MK-2206 can effectively inhibit the expression of Akt in two glioblastoma cell lines. However, due to an aberrant activation of mTOR in response to Akt inhibition in PTEN mutated cells, the therapeutic window needs to be carefully defined, or a combination of Akt and mTOR inhibitors should be considered. KW - DNA damage KW - glioblastoma multiforme KW - histone H2AX KW - irradiation KW - migration KW - mTOR KW - PTEN KW - p53 KW - radiation sensitivity KW - wound healing Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200290 VL - 19 ER - TY - JOUR A1 - Sbiera, Silviu A1 - Kunz, Meik A1 - Weigand, Isabel A1 - Deutschbein, Timo A1 - Dandekar, Thomas A1 - Fassnacht, Martin T1 - The new genetic landscape of Cushing’s disease: deubiquitinases in the spotlight JF - Cancers N2 - Cushing’s disease (CD) is a rare condition caused by adrenocorticotropic hormone (ACTH)-producing adenomas of the pituitary, which lead to hypercortisolism that is associated with high morbidity and mortality. Treatment options in case of persistent or recurrent disease are limited, but new insights into the pathogenesis of CD are raising hope for new therapeutic avenues. Here, we have performed a meta-analysis of the available sequencing data in CD to create a comprehensive picture of CD’s genetics. Our analyses clearly indicate that somatic mutations in the deubiquitinases are the key drivers in CD, namely USP8 (36.5%) and USP48 (13.3%). While in USP48 only Met415 is affected by mutations, in USP8 there are 26 different mutations described. However, these different mutations are clustering in the same hotspot region (affecting in 94.5% of cases Ser718 and Pro720). In contrast, pathogenic variants classically associated with tumorigenesis in genes like TP53 and BRAF are also present in CD but with low incidence (12.5% and 7%). Importantly, several of these mutations might have therapeutic potential as there are drugs already investigated in preclinical and clinical setting for other diseases. Furthermore, network and pathway analyses of all somatic mutations in CD suggest a rather unified picture hinting towards converging oncogenic pathways. KW - Cushing’s disease KW - pathogenesis KW - somatic mutations KW - deubiquitinases Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193194 SN - 2072-6694 VL - 11 IS - 11 ER - TY - JOUR A1 - Horn, Melanie A1 - Mitesser, Oliver A1 - Hovestadt, Thomas A1 - Yoshii, Taishi A1 - Rieger, Dirk A1 - Helfrich-Förster, Charlotte T1 - The circadian clock improves fitness in the fruit fly, Drosophila melanogaster JF - Frontiers in Physiology N2 - It is assumed that a properly timed circadian clock enhances fitness, but only few studies have truly demonstrated this in animals. We raised each of the three classical Drosophila period mutants for >50 generations in the laboratory in competition with wildtype flies. The populations were either kept under a conventional 24-h day or under cycles that matched the mutant’s natural cycle, i.e., a 19-h day in the case of pers mutants and a 29-h day for perl mutants. The arrhythmic per0 mutants were grown together with wildtype flies under constant light that renders wildtype flies similar arrhythmic as the mutants. In addition, the mutants had to compete with wildtype flies for two summers in two consecutive years under outdoor conditions. We found that wildtype flies quickly outcompeted the mutant flies under the 24-h laboratory day and under outdoor conditions, but perl mutants persisted and even outnumbered the wildtype flies under the 29-h day in the laboratory. In contrast, pers and per0 mutants did not win against wildtype flies under the 19-h day and constant light, respectively. Our results demonstrate that wildtype flies have a clear fitness advantage in terms of fertility and offspring survival over the period mutants and – as revealed for perl mutants – this advantage appears maximal when the endogenous period resonates with the period of the environment. However, the experiments indicate that perl and pers persist at low frequencies in the population even under the 24-h day. This may be a consequence of a certain mating preference of wildtype and heterozygous females for mutant males and time differences in activity patterns between wildtype and mutants. KW - competition KW - mutants KW - resonance theory KW - mating preference KW - fertility Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195738 SN - 1664-042X VL - 10 IS - 1374 ER - TY - JOUR A1 - Fathy, Moustafa A1 - Fawzy, Michael Atef A1 - Hintzsche, Henning A1 - Nikaido, Toshio A1 - Dandekar, Thomas A1 - Othman, Eman M. T1 - Eugenol exerts apoptotic effect and modulates the sensitivity of HeLa cells to cisplatin and radiation JF - Molecules N2 - Eugenol is a phytochemical present in different plant products, e.g., clove oil. Traditionally, it is used against a number of different disorders and it was suggested to have anticancer activity. In this study, the activity of eugenol was evaluated in a human cervical cancer (HeLa) cell line and cell proliferation was examined after treatment with various concentrations of eugenol and different treatment durations. Cytotoxicity was tested using lactate dehydrogenase (LDH) enzyme leakage. In order to assess eugenol’s potential to act synergistically with chemotherapy and radiotherapy, cell survival was calculated after eugenol treatment in combination with cisplatin and X-rays. To elucidate its mechanism of action, caspase-3 activity was analyzed and the expression of various genes and proteins was checked by RT-PCR and western blot analyses. Eugenol clearly decreased the proliferation rate and increased LDH release in a concentration- and time-dependent manner. It showed synergistic effects with cisplatin and X-rays. Eugenol increased caspase-3 activity and the expression of Bax, cytochrome c (Cyt-c), caspase-3, and caspase-9 and decreased the expression of B-cell lymphoma (Bcl)-2, cyclooxygenase-2 (Cox-2), and interleukin-1 beta (IL-1β) indicating that eugenol mainly induced cell death by apoptosis. In conclusion, eugenol showed antiproliferative and cytotoxic effects via apoptosis and also synergism with cisplatin and ionizing radiation in the human cervical cancer cell line. KW - eugenol KW - HeLa cells KW - cisplatin KW - radiation KW - apoptosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193227 SN - 1420-3049 VL - 24 IS - 21 ER - TY - JOUR A1 - Mateos, Mariana A1 - Kang, Du A1 - Klopp, Christophe A1 - Parrinello, Hugues A1 - García-Olazábal, Mateo A1 - Schumer, Molly A1 - Jue, Nathaniel K. A1 - Guiguen, Yann A1 - Schartl, Manfred T1 - Draft genome assembly and annotation of the Gila Topminnow Poeciliopsis occidentalis JF - Frontiers in Ecology and Evolution N2 - No abstract available. KW - genome assembly KW - genome annotation KW - transposable elements KW - topminnow KW - mitochondrial genome Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-190339 SN - 2296-701X VL - 7 IS - 404 ER - TY - JOUR A1 - Kunz, Tobias C. A1 - Götz, Ralph A1 - Sauer, Markus A1 - Rudel, Thomas T1 - Detection of chlamydia developmental forms and secreted effectors by expansion microscopy JF - Frontiers in Cellular and Infection Microbiology N2 - Expansion microscopy (ExM) is a novel tool to improve the resolution of fluorescence-based microscopy that has not yet been used to visualize intracellular pathogens. Here we show the expansion of the intracellular pathogen Chlamydia trachomatis, enabling to differentiate its two distinct forms, catabolic active reticulate bodies (RB) and infectious elementary bodies (EB), on a conventional confocal microscope. We show that ExM enables the possibility to precisely locate chlamydial effector proteins, such as CPAF or Cdu1, within and outside of the chlamydial inclusion. Thus, we claim that ExM offers the possibility to address a broad range of questions and may be useful for further research on various intracellular pathogens. KW - expansion microscopy KW - chlamydia KW - secreted effectors KW - developmental forms KW - superresolution KW - imaging Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195716 SN - 2235-2988 VL - 9 IS - 276 ER - TY - JOUR A1 - Heydarian, Motaharehsadat A1 - Yang, Tao A1 - Schweinlin, Matthias A1 - Steinke, Maria A1 - Walles, Heike A1 - Rudel, Thomas A1 - Kozjak-Pavlovic, Vera T1 - Biomimetic human tissue model for long-term study of Neisseria gonorrhoeae infection JF - Frontiers in Microbiology N2 - Gonorrhea is the second most common sexually transmitted infection in the world and is caused by Gram-negative diplococcus Neisseria gonorrhoeae. Since N. gonorrhoeae is a human-specific pathogen, animal infection models are only of limited use. Therefore, a suitable in vitro cell culture model for studying the complete infection including adhesion, transmigration and transport to deeper tissue layers is required. In the present study, we generated three independent 3D tissue models based on porcine small intestinal submucosa (SIS) scaffold by co-culturing human dermal fibroblasts with human colorectal carcinoma, endometrial epithelial, and male uroepithelial cells. Functional analyses such as transepithelial electrical resistance (TEER) and FITC-dextran assay indicated the high barrier integrity of the created monolayer. The histological, immunohistochemical, and ultra-structural analyses showed that the 3D SIS scaffold-based models closely mimic the main characteristics of the site of gonococcal infection in human host including the epithelial monolayer, the underlying connective tissue, mucus production, tight junction, and microvilli formation. We infected the established 3D tissue models with different N. gonorrhoeae strains and derivatives presenting various phenotypes regarding adhesion and invasion. The results indicated that the disruption of tight junctions and increase in interleukin production in response to the infection is strain and cell type-dependent. In addition, the models supported bacterial survival and proved to be better suitable for studying infection over the course of several days in comparison to commonly used Transwell® models. This was primarily due to increased resilience of the SIS scaffold models to infection in terms of changes in permeability, cell destruction and bacterial transmigration. In summary, the SIS scaffold-based 3D tissue models of human mucosal tissues represent promising tools for investigating N. gonorrhoeae infections under close-to-natural conditions. KW - 3D tissue model KW - small intestinal submucosa scaffold KW - co-culture KW - infection KW - Neisseria gonorrhoeae Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197912 SN - 1664-302X VL - 10 IS - 1740 ER - TY - THES A1 - Neubert, Franziska T1 - Markierung postsynaptischer Proteine für die hochauflösende Fluoreszenzmikroskopie T1 - Labeling of postsynaptic proteins for super-resolution microscopy N2 - Das menschliche Gehirn ist ein Organ, das aufgrund seiner Komplexität und zellulären Diversität noch am wenigsten verstanden ist. Eine der Ursachen dafür sind zahlreiche Herausforderungen in diversen neurobiologischen Bild-gebungsverfahren. Erst seit der Erfindung der hochauflösenden Fluoreszenz-mikroskopie ist es möglich, Strukturen unterhalb der Beugungsgrenze zu visua-lisieren und somit eine maximale Auflösung von bis zu 20 nm zu erreichen. Zusätzlich hängt die Fähigkeit, biologische Strukturen aufzulösen, von der Markierungs-größe und -dichte ab. Derzeit ist die häufigste Methode zur Proteinfärbung die indirekte Antikörperfärbung, bei der ein Fluorophor-markierter Sekundärantikörper an einen Epitop-spezifischen Primärantikörper bindet. Dabei kann der Abstand von Zielstruktur und Fluorophor bis zu 30 nm betragen, was eine Auflösungs-verminderung zur Folge haben kann. Aufgrund dessen wurden in dieser Arbeit alternative Markierungsmethoden getestet, um postsynaptische Proteine sicht-bar zu machen. Zunächst wurde der postsynaptische N-Methyl-D-Aspartat (NMDA)-Rezeptor mit Hilfe konventioneller indirekter Antikörperfärbung markiert. Hier war die NR1-Untereinheit des NMDA-Rezeptors von besonderem Interesse, da diese in der Autoimmunerkrankung Anti-NMDA-Rezeptor-Enzephalitis invol-viert ist. Patienten dieser seltenen Krankheit bilden Autoantikörper gegen die NR1-Untereinheit, wodurch ein schneller reversibler Verlust der NMDA-Rezeptoren auf der Postsynapse induziert wird. Wichtige Informationen können nicht mehr ausreichend weitergegeben werden, was psychiatrische und neurologi-sche Störungen zur Folge hat. In dieser Arbeit wurden sowohl kommerzielle NR1-Antikörper, als auch rekombinante monoklonale NR1-Antikörper von Patien-ten mit Anti-NMDA-Rezeptor-Enzephalitis getestet. In konfokalen und in hochaufgelösten SIM- (engl. structured illumination microscopy) und dSTORM- (engl. direct stochastic optical reconstruction microscopy) Messun-gen konnten kommerzielle NR1-Antikörper keine erfolgreichen Färbungen erzielen. Dagegen erwiesen sich die rekombinanten monoklonalen NR1-Patientenantikörper als sehr spezifisch, sowohl in primären Neuronen als auch im Hippocampus von murinen Gehirnschnitten und lieferten gute Kolokalisati-onen mit dem postsynaptischen Markerprotein Homer. Um die optische Auflösung zu verbessern, wurde eine neue Markierungs-methode mit sog. „Super-Binde-Peptiden“ (SBPs) getestet. SBPs sind modifi-zierte Peptide, die erhöhte Affinitäten und Spezifitäten aufweisen und mit ei-ner Größe von ~ 2,5 nm wesentlich kleiner als Antikörper sind. In dieser Arbeit bestätigte sich ein kleines hochspezifisches SPB, das an den Fluoreszenzfarb-stoff Tetra- methylrhodamin (TMR) gekoppelt ist, als effektiver Marker für das Ankerpro-tein Gephyrin. Gephyrin ist für die Lokalisation und Verankerung einiger post-synaptischer Rezeptoren zuständig, indem es sie mit dem Cytoskelett der Zelle verbindet. SIM-Messungen in primären Neuronen zeigten eine bessere Clus-terrepräsentation bei der Färbung von Gephyrin mit SBPs, als mit Antikörper-färbung. Zusätzlich wurden Kolokalisationsanalysen von Gephyrin zusammen mit dem inhibito-rischen präsynaptischen vesikulären GABA-Transporter VGAT durchgeführt. Eine weitere Färbemethode stellte die bioorthogonale Click-Färbung durch die Erweiterung des eukaryotischen genetischen Codes (engl. genetic code ex-pansion, GCE) dar. Dabei wurde eine unnatürliche, nicht-kanonische Amino-säure (engl. non-canonical amino acid, ncAA) ins Zielprotein eingebaut und in Kombination mit der Click-Chemie ortsspezifisch mit organischen Tetrazin-Farbstoff-Konjugaten angefärbt. Organische Fluorophore haben den Vorteil, dass sie mit einer Größe von 0,5 – 2 nm sehr klein sind und damit die natürli-chen Funktionen der Proteine in der Zelle kaum beeinflussen. In dieser Arbeit wurde zum ersten Mal gezeigt, dass der tetramere postsynaptische NMDA-Rezeptor durch die Amber-Supres-sionsmethode bioorthogonal angefärbt werden konnte. Aus sieben verschiede-nen Amber-Mutanten der NR1-Untereinheit stellte sich die Y392TAG-NR1-Mutante als diejenige mit der besten Proteinexpression, Färbeeffizienz und rezeptorfunktionalität heraus. Dies konnte durch Fluoreszenzmikroskopie- und Whole-Cell Patch-Clamp-Experimenten gezeigt werden. Die bioorthogo-nale Click-Färbung durch GCE eignete sich für die Färbung des NMDA-Rezeptors in verschiedenen Zelllinien, mit unterschiedlichen Tetrazin-Farbstoff-Konjugaten und für Lebendzellexperimente. In dSTORM-Messungen erwies sich das Tetrazin-Cy5-Farbstoff-Konjugat als ideal aufgrund seiner Grö-ße, Photostabilität, Helligkeit und seines geeigneten Blinkverhaltens, sodass eine homogene NMDA-Rezeptorverteilung auf der Zellmembran gezeigt wer-den konnte. NR1-Antikörperfärbungen wiesen dagegen starke Clusterbildun-gen auf. Die Ergebnisse konnten belegen, dass kleinere Farbstoffe eine deut-lich bessere Zugänglichkeit zu ihrem Zielprotein haben und somit besser für die hochauflösende Fluoreszenzmikroskopie geeignet sind. N2 - Due to its complexity and cellular diversity, the human brain is an organ which is poorly understood. In particular, there are numerous challenges in different neurobiological imaging processes. The advent of super-resolution fluorescence microscopy, where a maximal optical resolution of up to 20 nm is achievable, made it feasible to visualize structures beyond the diffraction limit. The ability to resolve biological structures is further dependent on the labeling size and density. Currently, indirect antibody staining is the most common method for protein labeling. Thereby, a fluorophore marked secondary anti-body binds an epitope specific primary antibody. Consequently, the off-distance between target structure and fluorophore can be up to 30 nm, which could provoke a decrease of resolution. As a result, alternative labeling methods were tested in this work to visualize postsynaptic proteins. Initially, labeling of the postsynaptic N-methyl-D-aspartate (NMDA) recep-tor was performed with conventional indirect antibody staining. Here, the NR1 subunit of the NMDA receptor was of special interest because it is involved in the autoimmune disease of Anti-NMDA receptor encephalitis. Patients of this rare disorder produce autoantibodies against the NR1 subunit, which induces a fast and reversible reduction of NMDA receptors on the postsynapse. Important synaptic information cannot be transferred sufficiently which results in psychiatrical and neurological deficiencies. In this work commercial NR1 antibodies as well as recombinant monoclonal NR1 antibodies from patients with Anti-NMDA receptor encephalitis were tested. In confocal and super-resolved SIM (structured illumination microscopy) and dSTORM (direct sto-chastic optical reconstruction microscopy) measurements the commercial NR1 antibodies could not obtain a successful staining. In contrast, recombinant monoclonal NR1 patient antibodies turn out to be very specific, both in primary neurons and in the hippocampus of murine brain slices. Additionally, they show perfect colocaliza-tion together with the postsynaptic marker protein Homer. To further improve the optical resolution, a new labeling method was tested with so called “super-binding peptides” (SBPs). SBPs are modified peptides with enhanced affinity and specificity. With a size of ~ 2.5 nm, they are much smaller than antibodies. In this work a small, highly specific SBP, coupled to the fluorescent dye tetramethylrhodamine (TMR), turned out to be an efficient marker for the postsynaptic anchor protein gephyrin. Gephyrin is responsible for the localization and anchoring of postsynaptic receptors by connecting them with the cytoskeleton of the cell. SIM measurements in primary neurons showed better cluster representation of gephyrin stained with SBPs than with antibody stain-ing. In addition, colocalization analysis of gephyrin together with the inhibitory presynaptic vesicular GABA transporter VGAT was performed. Another staining method was the bioorthogonal click chemistry by the eu-karyotic genetic code expansion (GCE). Thereby, an unnatural, non-canonical amino acid (ncAA) is incorporated into the target protein and click-labeled site- specifically with an organic tetrazine dye conjugate. Organic dyes are very small with a size of only 0.5 – 2 nm and barely influence the natural function of proteins within the cell, which is beneficial for super-resolution microscopy. In this work, tetrameric postsynaptic NMDA receptors were bioorthogonally la-beled via the amber suppression method for the first time. From a series of seven different amber mutants of the NR1 subunit, the Y392TAG mutant was the one with the best protein expression, labeling efficiency and receptor functionality, as shown by fluorescence microscopy and whole-cell patch clamp experiments. The bioortho-gonal click staining by GCE was suitable for the NMDA receptor stain-ing in different cell lines, with various tetrazine dye conjugates and for live-cell experiments. In dSTORM measurements the tetrazine-Cy5 dye conjugate was ideal because of its size, photostability, brightness and appropriate blinking be-havior. Accordingly, a homogenous NMDA receptor distribution on the cell membrane was observed. In contrast, NR1 antibody staining showed big cluster formation. The results show that small labels have a better accessibility to its target and are therefore much more suitable for super-resolution microscopy. KW - hochauflösende Fluoreszenzmikroskopie KW - Markierungen synaptischer Proteine Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192394 ER - TY - THES A1 - Griffoni, Chiara T1 - Towards advanced immunocompetent skin wound models for in vitro drug evaluation T1 - Auf dem Weg zu fortschrittlichen immunkompetenten Hautwundmodellen für die in vitro-Medikamentenbewertung N2 - Current preclinical models used to evaluate novel therapies for improved healing include both in vitro and in vivo methods. However, ethical concerns related to the use of animals as well as the poor physiological translation between animal and human skin wound healing designate in vitro models as a highly relevant and promising platforms for healing investigation. While current in vitro 3D skin models recapitulate a mature tissue with healing properties, they still represent a simplification of the in vivo conditions, where for example the inflammatory response originating after wound formation involves the contribution of immune cells. Macrophages are among the main contributors to the inflammatory response and regulate its course thanks to their plasticity. Therefore, their implementation into in vitro skin could greatly increase the physiological relevance of the models. As no full-thickness immunocompetent skin model containing macrophages has been reported so far, the parameters necessary for a successful triple co-culture of fibroblasts, keratinocytes and macrophages were here investigated. At first, cell source and culture timed but also an implementation strategy for macrophages were deter-mined. The implementation of macrophages into the skin model focused on the minimization of the culture time to preserve immune cell viability and phenotype, as the environment has a major influence on cell polarization and cytokine production. To this end, incorporation of macrophages in 3D gels prior to the combination with skin models was selected to better mimic the in vivo environment. Em-bedded in collagen hydrogels, macrophages displayed a homogeneous cell distribution within the gel, preserving cell viability, their ability to respond to stimuli and their capability to migrate through the matrix, which are all needed during the involvement of macrophages in the inflammatory response. Once established how to introduce macrophages into skin models, different culture media were evaluated for their effects on primary fibroblasts, keratinocytes and macrophages, to identify a suitable medium composition for the culture of immunocompetent skin. The present work confirmed that each cell type requires a different supplement combination for maintaining functional features and showed for the first time that media that promote and maintain a mature skin structure have negative effects on primary macrophages. Skin differentiation media negatively affected macrophages in terms of viability, morphology, ability to respond to pro- and anti-inflammatory stimuli and to migrate through a collagen gel. The combination of wounded skin equivalents and macrophage-containing gels con-firmed that culture medium inhibits macrophage participation in the inflammatory response that oc-curs after wounding. The described macrophage inclusion method for immunocompetent skin creation is a promising approach for generating more relevant skin models. Further optimization of the co-cul-ture medium will potentially allow mimicking a physiological inflammatory response, enabling to eval-uate the effects novel drugs designed for improved healing on improved in vitro models. N2 - Aktuelle präklinische Modelle zur Bewertung neuartiger Therapien für eine verbesserte Heilung um- fassen sowohl in vitro als auch in vivo Methoden. Ethische Bedenken im Zusammenhang mit der Ver- wendung von Tieren sowie die schlechte physiologische Übersetzung zwischen tierischer und mensch- licher Hautwundheilung bezeichnen In-vitro-Modelle jedoch als hochrelevante und vielversprechende Plattformen für die Heilungsforschung. Während die aktuellen in vitro 3D-Hautmodelle ein reifes Ge- webe mit heilenden Eigenschaften rekapitulieren, stellen sie dennoch eine Vereinfachung der in vivo- Bedingungen dar, bei denen beispielsweise die nach der Wundbildung entstehende Entzündungsreak- tion den Beitrag von Immunzellen beinhaltet. Makrophagen gehören zu den Hauptverursachern der Entzündungsreaktion und regulieren ihren Verlauf durch ihre Plastizität. Daher könnte ihre Implemen- tierung in die in vitro Haut die physiologische Relevanz der Modelle deutlich erhöhen. Da bisher kein volldickes, immunkompetentes Hautmodell mit Makrophagen berichtet wurde, wurden hier die für eine erfolgreiche Dreifach-Cokultur von Fibroblasten, Keratinozyten und Makrophagen notwendigen Parameter untersucht. Zuerst wurden die Zellquelle und die Kultur zeitlich festgelegt, aber auch eine Implementierungsstrategie für Makrophagen festgelegt. Die Implementierung von Makrophagen in das Hautmodell konzentrierte sich auf die Minimierung der Kultivierungszeit, um die Lebensfähigkeit und den Phänotyp der Immunzellen zu erhalten, da die Umgebung einen großen Einfluss auf die Zell- polarisation und Zytokinproduktion hat. Zu diesem Zweck wurde die Integration von Makrophagen in 3D-Gelen vor der Kombination mit Hautmodellen ausgewählt, um die in vivo-Umgebung besser nach- ahmen zu können. Eingebettet in Kollagenhydrogele zeigten Makrophagen eine homogene Zellvertei- lung im Gel, die die Zelllebensfähigkeit bewahrt, auf Reize reagiert und durch die Matrix wandert, die alle bei der Beteiligung von Makrophagen an der Entzündungsreaktion benötigt werden. Nachdem festgestellt worden war, wie Makrophagen in Hautmodelle eingeführt werden können, wurden ver- schiedene Kulturmedien hinsichtlich ihrer Auswirkungen auf Primärfibroblasten, Keratinozyten und Makrophagen untersucht, um eine geeignete Medienzusammensetzung für die Kultur immunkompe- tenter Haut zu identifizieren. Die vorliegende Arbeit bestätigte, dass jeder Zelltyp eine andere Supple- mentkombination zur Aufrechterhaltung der Funktionsmerkmale benötigt und zeigte erstmals, dass Medien, die eine reife Hautstruktur fördern und aufrechterhalten, negative Auswirkungen auf die pri- mären Makrophagen haben. Hautdifferenzierungsmedien wirkten sich negativ auf die Makrophagen in Bezug auf Lebensfähigkeit, Morphologie, Fähigkeit, auf pro- und antiinflammatorische Reize zu rea- gieren und durch ein Kollagengel zu wandern aus. Die Kombination aus verwundeten Hautäquivalen- ten und makrophagenhaltigen Gelen bestätigte, dass das Kulturmedium die Teilnahme der Makro- phage an der Entzündungsreaktion, die nach der Wunde auftritt, hemmt. Die beschriebene Makrophagen-Einschlussmethode zur immunkompetenten Hautbildung ist ein vielversprechender An- satz zur Generierung relevanterer Hautmodelle. Eine weitere Optimierung des Co-Kulturmediums wird es möglicherweise ermöglichen, eine physiologische Entzündungsreaktion nachzuahmen und die Aus- wirkungen neuartiger Medikamente zur verbesserten Heilung auf verbesserte In-vitro-Modelle zu be- werten. KW - skin model KW - macrophages KW - wound healing KW - immunocompetent skin KW - Haut KW - In vitro KW - Wundheilung Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192125 ER - TY - JOUR A1 - Yang, Manli A1 - Rajeeve, Karthika A1 - Rudel, Thomas A1 - Dandekar, Thomas T1 - Comprehensive Flux Modeling of Chlamydia trachomatis Proteome and qRT-PCR Data Indicate Biphasic Metabolic Differences Between Elementary Bodies and Reticulate Bodies During Infection JF - Frontiers in Microbiology N2 - Metabolic adaptation to the host cell is important for obligate intracellular pathogens such as Chlamydia trachomatis (Ct). Here we infer the flux differences for Ct from proteome and qRT-PCR data by comprehensive pathway modeling. We compare the comparatively inert infectious elementary body (EB) and the active replicative reticulate body (RB) systematically using a genome-scale metabolic model with 321 metabolites and 277 reactions. This did yield 84 extreme pathways based on a published proteomics dataset at three different time points of infection. Validation of predictions was done by quantitative RT-PCR of enzyme mRNA expression at three time points. Ct’s major active pathways are glycolysis, gluconeogenesis, glycerol-phospholipid (GPL) biosynthesis (support from host acetyl-CoA) and pentose phosphate pathway (PPP), while its incomplete TCA and fatty acid biosynthesis are less active. The modeled metabolic pathways are much more active in RB than in EB. Our in silico model suggests that EB and RB utilize folate to generate NAD(P)H using independent pathways. The only low metabolic flux inferred for EB involves mainly carbohydrate metabolism. RB utilizes energy -rich compounds to generate ATP in nucleic acid metabolism. Validation data for the modeling include proteomics experiments (model basis) as well as qRT-PCR confirmation of selected metabolic enzyme mRNA expression differences. The metabolic modeling is made fully available here. Its detailed insights and models on Ct metabolic adaptations during infection are a useful modeling basis for future studies. KW - metabolic modeling KW - metabolic flux KW - infection biology KW - elementary body KW - reticulate body KW - Chlamydia trachomatis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-189434 SN - 1664-302X VL - 10 IS - 2350 ER -