@phdthesis{Kuhnen2006, author = {Kuhnen, Sebastian}, title = {Charakterisierung von sFRP4 als phosphatsensitives Phosphatonin in mesenchymalen Stammzellen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-22738}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2006}, abstract = {Phosphat stellt einen essenziellen Bestandteil der Knochenhartsubstanz dar und ist zudem erforderlich, um mesenchymale Stammzellen osteogen zu differenzieren. Bei der Aufkl{\"a}rung molekularer Pathomechanismen von St{\"o}rungen der Phosphathom{\"o}ostase wurden in den vergangenen zehn Jahre mehrere Botenstoffe identifiziert, die spezifische Wirkungen auf den systemischen Phosphathaushalt haben. Die als „Phosphatonine" bezeichneten Substanzen FGF23 (Fibroblastenwachstumsfaktor 23), sFRP4 (secreted frizzled related protein 4), FGF7 (Fibroblastenwachstumsfaktor 7) und MEPE (matrix extracellular phosphoglycoprotein) induzieren eine negative Phosphatbilanz, indem sie an der Niere phosphaturisch wirken. Ziel dieser Arbeit war es, eventuell vorhandene Interaktionen zwischen knochenbildenden Zellen, Phosphat und den inzwischen bekannten Substanzen mit Wirkung auf den Phosphathaushalt zu charakterisieren. Dazu wurden immortalisierte Zelllinien mesenchymaler Stammzellen (hMSC-TERT) und fetaler Osteoblasten (hFOB) konzentrations- und zeitabh{\"a}ngig mit Phosphat stimuliert (von 1,25 mM bis 20 mM, von 0 bis 48 h). Die quantitative real-time-PCR zur relativen mRNA-Quantifizierung wurde dabei in der Arbeitsgruppe als Methode etabliert, um den Einfluss dieser erh{\"o}hten Phosphatspiegel im N{\"a}hrmedium auf die Expression von Genen des Phosphatstoffwechsels und Markern der osteogenen Differenzierung zu analysieren. Untersucht wurden Col1 (Kollagen 1), OC (Osteokalzin), AP (Alkalische Phosphatase) und OP (Osteopontin) als Differenzierungsmarker, Pit-1 (Natrium-Phosphattransporter), sFRP4, MEPE und FGF23 als Schl{\"u}sselsubstanzen im Phosphatstoffwechsel sowie Aktin und EF1a als Housekeeping-Gene. Die real-time-PCR wurde mit der SYBR® Green-Methode durchgef{\"u}hrt, die Effizienzbestimmung erfolgte mit LinRegPCR, die Auswertung mit REST© und REST 2005, jeweils f{\"u}r die ermittelte Effizienz und die als optimal angenommene Effizienz (E=2). Zun{\"a}chst konnte die Expression des Natrium-Phosphattransporters Pit-1 in den Zellen hMSC-TERT und hFOB nachgewiesen werden. Bei beiden Zelllinien zeigte sich, dass die Expression von sFRP4 mit steigender Phosphatkonzentration bzw. steigender Stimulationsdauer nach unten reguliert wird. Beim Vergleich aller stimulierten Proben mit den unstimulierten Kontrollen fiel das Expressionsverh{\"a}ltnis bei hMSC-TERT ungef{\"a}hr auf die H{\"a}lfte des Ausgangswertes (0,52; p<0,05), bei hFOB reduzierte es sich auf zwei Drittel (0,67; p<0,05). Es ist somit anzunehmen, dass Phosphat in der Lage ist, die Genexpression von sFRP4 in hMSC-TERT und hFOB nach unten zu regulieren. F{\"u}r Pit-1 ergab sich bei hMSC-TERT der Hinweis auf eine gesteigerte mRNA-Expression unter Phosphateinwirkung, f{\"u}r hFOB-Zellen konnte diese Beobachtung nicht gemacht werden. Beide Zelllinien zeigten unter Phosphat-Stimulation und maximaler Einwirkzeit von 48 h kein einheitliches Expressionsmuster, das auf eine beginnende Differenzierung hinweisen w{\"u}rde. Der in dieser Arbeit gefundene Hinweis auf eine Phosphatsensitivit{\"a}t von sFRP4 in mesenchymalen Stammzellen und Osteoblasten l{\"a}sst somit die Vermutung einer physiologischen Beteiligung von sFRP4 an der Phosphatregulation zu. Es bleibt zu kl{\"a}ren, inwieweit andere Phosphatonine an solchen Signalachsen beteiligt sind. Spekuliert werden kann, dass sFRP4 auch als Antagonist des Wnt-Signalweges bei Differenzierungsvorg{\"a}ngen eine gr{\"o}ßere Rolle spielt als bisher angenommen. Des Weiteren sollte in der vorliegenden Arbeit ein Genexpressionssystem (Tet-On™ Konstrukt) in mesenchymalen adulten Stammzellen (hMSC-TERT) etabliert werden, mit dem im Endzustand die Expression beliebiger Gene Tetracyclin-abh{\"a}ngig induziert werden kann. Diese Arbeiten konnten bis zur ersten Transfektion erfolgreich durchgef{\"u}hrt werden: F{\"u}r einen Referenz-Vektor zeigte sich eine ausgepr{\"a}gte Induzierbarkeit durch Doxycyclin. Als erstes Gen sollte sFRP4 {\"u}berexprimiert werden, das daf{\"u}r zun{\"a}chst isoliert, sequenziert und kloniert wurde und nun f{\"u}r den Einsatz in diesem Genexpressionssystem zur Verf{\"u}gung steht. Die Aufkl{\"a}rung der Regulationsmechanismen und auch der Wirkungsweise von Phosphat wird ein wichtiges Ziel zuk{\"u}nftiger Forschung sein und eventuell neue therapeutische M{\"o}glichkeiten zur Behandlung von krankhaften Abweichungen der Phosphathom{\"o}ostase er{\"o}ffnen.}, language = {de} } @article{KonradsBarthel2015, author = {Konrads, Christian and Barthel, Thomas}, title = {Children and Adolescents with Knee Pain Need Diagnostics for Osteochondritis Dissecans}, series = {Journal of Pain Management \& Medicine}, volume = {2}, journal = {Journal of Pain Management \& Medicine}, number = {1}, doi = {10.4172/jpmme.1000107}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-146531}, pages = {107}, year = {2015}, abstract = {No abstract available.}, language = {en} } @phdthesis{Weissenberger2012, author = {Weißenberger, Manuel Claudius}, title = {Chondrogene Differenzierung von humanen mesenchymalen Stammzellen zur Knorpelregeneration mittels adenoviralem Indian Hedgehog-Gentransfer}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-78014}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Ziel dieser Arbeit war es zu untersuchen, ob mittels IHH-Gentransfer aus H{\"u}ftk{\"o}pfen gewonnene hMSCs chondrogen im Pelletkultursystem differenziert werden k{\"o}nnen und ob zugleich durch IHH eine Modulation der hypertrophen Enddifferenzierung der hMSCs in diesem System m{\"o}glich ist. IHH bestimmt in der Wachstumsfuge zusammen mit PTHrP w{\"a}hrend der endochondralen Ossifikation die Chondrozytenreifung und -differenzierung entscheidend mit und ist daher ein interessanter Kandidat zur Induktion von hyalinem oder zumindest hyalin-{\"a}hnlichem Knorpelgewebe in der stammzellbasierten Gentherapie. Nach Gewinnung und Kultivierung der hMSCs wurden diese mit Ad.GFP, Ad.IHH, Ad.IHH+TGF-β1, Ad.IHH+SOX-9 oder Ad.IHH+BMP-2 transduziert bzw. ein Teil f{\"u}r die Negativkontrolle nicht transduziert und im Anschluss alle Gruppen zu Pellets weiterverarbeitet. Histologische, biochemische sowie molekularbiologische Untersuchungen wurden an verschiedenen Zeitpunkten zur Evaluierung des chondrogenen Differenzierungsgrades sowie der hypertrophiespezifischen Merkmale der kultivierten Pellets durchgef{\"u}hrt. Es konnte durch diese Arbeit sowohl auf Proteinebene als auch auf Genexpressionsebene reproduzierbar gezeigt werden, dass prim{\"a}re hMSCs im Pelletkultursystem sowohl durch den adenoviralen Gentransfer von IHH allein als auch durch die Co-Transduktionsgruppen IHH+TGF-β1, IHH+SOX-9 und IHH+BMP-2 chondrogen differenziert werden k{\"o}nnen. Dabei zeigten alle IHH-modifizierten Pellets Col II- und CS-4-positive immunhistochemische Anf{\"a}rbungen, eine gesteigerte Synthese von Glykosaminoglykanen im biochemischen GAG-Assay sowie eine Hochregulation von mit der Chondrogenese assoziierten Genen. Das Auftreten hypertropher Merkmale bei den chondrogen differenzierten MSCs konnte durch IHH-Gentransfer nach 3 Wochen in vitro-Kultivierung nicht vollkommen unterdr{\"u}ckt werden, war jedoch besonders stark ausgepr{\"a}gt, wenn BMP-2 co-exprimiert wurde und war etwas weniger evident in der IHH+SOX-9-Gruppe. Dabei zeigte die Ad.IHH+BMP-2-Gruppe sowohl in der ALP-F{\"a}rbung als auch in dem ALP-Assay und der quantitativen RT-PCR die st{\"a}rkste Hochregulierung des hypertrophen Markers ALP. M{\"o}glicherweise brachte die {\"U}berexpression von IHH das fein aufeinander abgestimmte Regulationssystem zwischen IHH und PTHrP aus dem Gleichgewicht und k{\"o}nnte als ein Grund daf{\"u}r angef{\"u}hrt werden, warum die Hypertrophie im Pelletkultursystem nicht vollkommen supprimiert werden konnte. Es bleibt abzuwarten, ob IHH in vivo die Chondrogenese induzieren und dabei zugleich das Ph{\"a}nomen der chondrogenen Hypertrophie regulieren kann. In der Zukunft w{\"u}rde dies letztlich der stammzellbasierten Knorpelregeneration in vivo zu Gute kommen.}, subject = {Stammzelle}, language = {de} } @phdthesis{Heymer2008, author = {Heymer, Andrea}, title = {Chondrogenic differentiation of human mesenchymal stem cells and articular cartilage reconstruction}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-29448}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2008}, abstract = {Articular cartilage defects are still one of the major challenges in orthopedic and trauma surgery. Today, autologous chondrocyte transplantation (ACT), as a cell-based therapy, is an established procedure. However, one major limitation of this technique is the loss of the chondrogenic phenotype during expansion. Human mesenchymal stem cells (hMSCs) have an extensive proliferation potential and the capacity to differentiate into chondrocytes when maintained under specific conditions. They are therefore considered as candidate cells for tissue engineering approaches of functional cartilage tissue substitutes. First in this study, hMSCs were embedded in a collagen type I hydrogel to evaluate the cartilaginous construct in vitro. HMSC collagen hydrogels cultivated in different culture media showed always a marked contraction, most pronounced in chondrogenic differentiation medium supplemented with TGF-ß1. After stimulation with chondrogenic factors (dexamethasone and TGF-ß1) hMSCs were able to undergo chondrogenesis when embedded in the collagen type I hydrogel, as evaluated by the temporal induction of cartilage-specific gene expression. Furthermore, the cells showed a chondrocyte-like appearance and were homogeneously distributed within a proteoglycan- and collagen type II-rich extracellular matrix, except a small area in the center of the constructs. In this study, chondrogenic differentiation could not be realized with every hMSC preparation. With the improvement of the culture conditions, e.g. the use of a different FBS lot in the gel fabrication process, a higher amount of cartilage-specific matrix deposition could be achieved. Nevertheless, the large variations in the differentiation capacity display the high donor-to-donor variability influencing the development of a cartilaginous construct. Taken together, the results demonstrate that the collagen type I hydrogel is a suitable carrier matrix for hMSC-based cartilage regeneration therapies which present a promising future alternative to ACT. Second, to further improve the quality of tissue-engineered cartilaginous constructs, mechanical stimulation in specific bioreactor systems are often employed. In this study, the effects of mechanical loading on hMSC differentiation have been examined. HMSC collagen hydrogels were cultured in a defined chondrogenic differentiation medium without TGF-ß1 and subjected to a combined mechanical stimulation protocol, consisting of perfusion and cyclic uniaxial compression. Bioreactor cultivation neither affected overall cell viability nor the cell number in collagen hydrogels. Compared with non-loaded controls, mechanical loading promoted the gene expression of COMP and biglycan and induced an up-regulation of matrix metalloproteinase 3. These results circumstantiate that hMSCs are sensitive to mechanical forces, but their differentiation to chondrocytes could not be induced. Further studies are needed to identify the specific metabolic pathways which are altered by mechanical stimulation. Third, for the development of new cell-based therapies for articular cartilage repair, a reliable cell monitoring technique is required to track the cells in vivo non-invasively and repeatedly. This study aimed at analyzing systematically the performance and biological impact of a simple and efficient labeling protocol for hMSCs. Very small superparamagnetic iron oxide particles (VSOPs) were used as magnetic resonance (MR) contrast agent. Iron uptake was confirmed histologically with prussian blue staining and quantified by mass spectrometry. Compared with unlabeled cells, VSOP-labeling did neither influence significantly the viability nor the proliferation potential of hMSCs. Furthermore, iron incorporation did not affect the differentiation capacity of hMSCs. The efficiency of the labeling protocol was assessed with high resolution MR imaging at 11.7 Tesla. VSOP-labeled hMSCs were visualized in a collagen type I hydrogel indicated by distinct hypointense spots in the MR images, resulting from an iron specific loss of signal intensity. This was confirmed by prussian blue staining. In summary, this labeling technique has great potential to visualize hMSCs and track their migration after transplantation for articular cartilage repair with MR imaging.}, subject = {Gelenkknorpel}, language = {en} } @article{HoertererBaumbachLemperleetal.2019, author = {H{\"o}rterer, Hubert and Baumbach, Sebastian Felix and Lemperle, Stefan and Altenberger, Sebastian and Gottschalk, Oliver and Mehlhorn, Alexander Tobias and R{\"o}ser, Anke and Walther, Markus}, title = {Clinical outcome and concomitant injuries in operatively treated fractures of the lateral process of the talus}, series = {BMC Musculoskeletal Disorders}, volume = {20}, journal = {BMC Musculoskeletal Disorders}, doi = {10.1186/s12891-019-2603-3}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-321207}, year = {2019}, abstract = {Background The aim of this study was to review the patient rated outcome (PROM) of surgically treated fractures to the lateral process of the talus (LPTF) and identify factors influencing the outcome. Methods Retrospective study with a current follow-up. Eligible were all patients treated surgically for a LPTF (n = 23) with a minimum follow-up of one year. Demographics, medical history, trauma mechanism, fracture characteristics, concomitant injuries, treatment details, complications, return to work and sports were assessed retrospectively. The current follow-up included the VAS FA, Karlsson Score, and SF-12. The primary outcome was the VAS FA. Secondary aim was the identification of parameters influencing the PROMs. Results 22 patients (96\% follow-up) with a mean age of 32 ± 9 (18 to 49) years were included. 73\% suffered a Hawkins Type 1, 23\% a Type 2, and one patient a Type 3 fracture. 82\% suffered concomitant injuries. 9\% suffered minor surgical side infections, 50\% developed symptomatic subtalar osteoarthritis. At final follow-up (44 ± 2 (12 to 97) months), the mean VAS FA Overall was 77 ± 21 (20 to 100), the Karlsson Score 72 ± 21 (34 to 97), and for the SF 12 the PCS 53 ± 8 (36 to 64) and the MCS 53 ± 7 (32 to 63). 50\% of patients returned to their previous level of sports. Hawkins Type 1 fractures resulted in better VAS FA Overall score than Type 2 fractures. Posttraumatic subtalar osteoarthritis was the independent factor associated to a poor patient rated outcome (VAS FA, Karlsson Score). Conclusion After a follow-up of over 3.5 years, surgically treated LPTF resulted in only moderate results. 50\% suffered posttraumatic symptomatic subtalar osteoarthritis, which was the primary independent parameter for a poor outcome following LPTF. Level of evidence Level III.}, language = {en} } @article{AchenbachKleinLuigetal.2021, author = {Achenbach, Leonard and Klein, Christian and Luig, Patrick and Bloch, Hendrik and Schneider, Dominik and Fehske, Kai}, title = {Collision with opponents - but not foul play - dominates injury mechanism in professional men's basketball}, series = {BMC Sports Science Medicine and Rehabilitation}, volume = {13}, journal = {BMC Sports Science Medicine and Rehabilitation}, doi = {10.1186/s13102-021-00322-z}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-261765}, year = {2021}, abstract = {Background To identify injury patterns and mechanisms in professional men's basketball by means of video match analysis. Methods In Germany, injuries are registered with the statutory accident insurance for professional athletes (VBG) by clubs or club physicians as part of occupational accident reporting. Moderate and severe injuries (absence of > 7 days) sustained during basketball competition in one of four seasons (2014-2017 and 2018-2019) in the first or second national men's league in Germany were prospectively analyzed using a newly developed standardized observation form. Season 2017-2018 was excluded because of missing video material. Results Video analysis included 175 (53\%) of 329 moderate and severe match injuries. Contact patterns categorized according to the different body sites yielded eight groups of typical injury patterns: one each for the head, shoulders, and ankles, two for the thighs, and three for the knees. Injuries to the head (92\%), ankles (76\%), shoulders (70\%), knees (47\%), and thighs (32\%) were mainly caused by direct contact. The injury proportion of foul play was 19\%. Most injuries (61\%) occurred in the central zone below the basket. More injuries occurred during the second (OR 1.8, p = 0.018) and fourth quarter (OR 1.8, p = 0.022) than during the first and third quarter of the match. Conclusion The eight identified injury patterns differed substantially in their mechanisms. Moderate and severe match injuries to the head, shoulders, knees, and ankles were mainly caused by collision with opponents and teammates. Thus, stricter rule enforcement is unlikely to facilitate safer match play.}, language = {en} } @article{WagenbrennerMayerWagnerRudertetal.2021, author = {Wagenbrenner, Mike and Mayer-Wagner, Susanne and Rudert, Maximilian and Holzapfel, Boris Michael and Weissenberger, Manuel}, title = {Combinations of hydrogels and mesenchymal stromal cells (MSCs) for cartilage tissue engineering — a review of the literature}, series = {Gels}, volume = {7}, journal = {Gels}, number = {4}, issn = {2310-2861}, doi = {10.3390/gels7040217}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-250177}, year = {2021}, abstract = {Cartilage offers limited regenerative capacity. Cell-based approaches have emerged as a promising alternative in the treatment of cartilage defects and osteoarthritis. Due to their easy accessibility, abundancy, and chondrogenic potential mesenchymal stromal cells (MSCs) offer an attractive cell source. MSCs are often combined with natural or synthetic hydrogels providing tunable biocompatibility, biodegradability, and enhanced cell functionality. In this review, we focused on the different advantages and disadvantages of various natural, synthetic, and modified hydrogels. We examined the different combinations of MSC-subpopulations and hydrogels used for cartilage engineering in preclinical and clinical studies and reviewed the effects of added growth factors or gene transfer on chondrogenesis in MSC-laden hydrogels. The aim of this review is to add to the understanding of the disadvantages and advantages of various combinations of MSC-subpopulations, growth factors, gene transfers, and hydrogels in cartilage engineering.}, language = {en} } @article{WeissenbergerWagenbrennerNickeletal.2023, author = {Weißenberger, Manuel and Wagenbrenner, Mike and Nickel, Joachim and Ahlbrecht, Rasmus and Blunk, Torsten and Steinert, Andre F. and Gilbert, Fabian}, title = {Comparative in vitro treatment of mesenchymal stromal cells with GDF-5 and R57A induces chondrogenic differentiation while limiting chondrogenic hypertrophy}, series = {Journal of Experimental Orthopaedics}, volume = {10}, journal = {Journal of Experimental Orthopaedics}, doi = {10.1186/s40634-023-00594-z}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-357770}, year = {2023}, abstract = {Purpose Hypertrophic cartilage is an important characteristic of osteoarthritis and can often be found in patients suffering from osteoarthritis. Although the exact pathomechanism remains poorly understood, hypertrophic de-differentiation of chondrocytes also poses a major challenge in the cell-based repair of hyaline cartilage using mesenchymal stromal cells (MSCs). While different members of the transforming growth factor beta (TGF-β) family have been shown to promote chondrogenesis in MSCs, the transition into a hypertrophic phenotype remains a problem. To further examine this topic we compared the effects of the transcription growth and differentiation factor 5 (GDF-5) and the mutant R57A on in vitro chondrogenesis in MSCs. Methods Bone marrow-derived MSCs (BMSCs) were placed in pellet culture and in-cubated in chondrogenic differentiation medium containing R57A, GDF-5 and TGF-ß1 for 21 days. Chondrogenesis was examined histologically, immunohistochemically, through biochemical assays and by RT-qPCR regarding the expression of chondrogenic marker genes. Results Treatment of BMSCs with R57A led to a dose dependent induction of chondrogenesis in BMSCs. Biochemical assays also showed an elevated glycosaminoglycan (GAG) content and expression of chondrogenic marker genes in corresponding pellets. While treatment with R57A led to superior chondrogenic differentiation compared to treatment with the GDF-5 wild type and similar levels compared to incubation with TGF-ß1, levels of chondrogenic hypertrophy were lower after induction with R57A and the GDF-5 wild type. Conclusions R57A is a stronger inducer of chondrogenesis in BMSCs than the GDF-5 wild type while leading to lower levels of chondrogenic hypertrophy in comparison with TGF-ß1.}, language = {en} } @article{BoelchRuecklFuchsetal.2018, author = {Boelch, Sebastian P. and Rueckl, Kilian and Fuchs, Clara and Jordan, Martin and Knauer, Markus and Steinert, Andre and Rudert, Maximilian and Luedemann, Martin}, title = {Comparison of elution characteristics and compressive strength of biantibiotic-loaded PMMA bone cement for spacers: Copal\(^®\) spacem with gentamicin and vancomycin versus Palacos\(^®\) R+G with vancomycin}, series = {BioMed Research International}, volume = {2018}, journal = {BioMed Research International}, number = {4323518}, doi = {10.1155/2018/4323518}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-177435}, year = {2018}, abstract = {Purpose. Copal\(^®\) spacem is a new PMMA bone cement for fabricating spacers. This study compares elution of gentamicin, elution of vancomycin, and compressive strength of Copal\(^®\) spacem and of Palacos\(^®\) R+G at different vancomycin loadings in the powder of the cements. We hypothesized that antibiotic elution of Copal\(^®\) spacem is superior at comparable compressive strength. Methods. Compression test specimens were fabricated using Copal\(^®\) spacem manually loaded with 0.5 g gentamicin and additionally 2 g, 4 g, and 6 g of vancomycin per 40 g of cement powder (COP specimens) and using 0.5 g gentamicin premixed Palacos\(^®\) R+G manually loaded with 2 g, 4 g, and 6 g of vancomycin per 40 g of cement powder (PAL specimens). These specimens were used for determination of gentamicin and vancomycin elution (in fetal calf serum, at 22°C) and for determination of compressive strength both prior and following the elution tests. Results. Cumulative gentamicin concentrations (p < 0.005) and gentamicin concentration after 28 days (p ≤ 0.043) were significantly lower for COP specimens compared to PAL specimens. Cumulative vancomycin concentrations were significantly higher (p ≤ 0.043) for COP specimens after the second day. Vancomycin concentrations after 28 days were not significantly higher for the Copal specimens loaded with 2 g and 4 g of vancomycin. Compressive strength was not significantly different between COP specimens and PAL specimens before elution tests. Compressive strength after the elution tests was significantly lower (p = 0.005) for COP specimens loaded with 2 g of vancomycin. Conclusion. We could not demonstrate consistent superior antibiotic elution from Copal\(^®\) spacem compared to Palacos\(^®\) R+G for fabricating gentamicin and vancomycin loaded spacers. The results do not favor Copal\(^®\) spacem over Palacos\(^®\) R+G for the use as a gentamicin and vancomycin biantibiotic-loaded spacer.}, language = {en} } @article{DotterweichSchlegelmilchKelleretal.2016, author = {Dotterweich, Julia and Schlegelmilch, Katrin and Keller, Alexander and Geyer, Beate and Schneider, Doris and Zeck, Sabine and Tower, Robert J. J. and Ebert, Regina and Jakob, Franz and Sch{\"u}tze, Norbert}, title = {Contact of myeloma cells induces a characteristic transcriptome signature in skeletal precursor cells-implications for myeloma bone disease}, series = {Bone}, volume = {93}, journal = {Bone}, doi = {10.1016/j.bone.2016.08.006}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-186688}, pages = {155-166}, year = {2016}, abstract = {Physical interaction of skeletal precursors with multiple myeloma cells has been shown to suppress their osteogenic potential while favoring their tumor-promoting features. Although several transcriptome analyses of myeloma patient-derived mesenchymal stem cells have displayed differences compared to their healthy counterparts, these analyses insufficiently reflect the signatures mediated by tumor cell contact, vary due to different methodologies, and lack results in lineage-committed precursors. To determine tumor cell contact-mediated changes on skeletal precursors, we performed transcriptome analyses of mesenchymal stem cells and osteogenic precursor cells cultured in contact with the myeloma cell line INA-6. Comparative analyses confirmed dysregulation of genes which code for known disease-relevant factors and additionally revealed upregulation of genes that are associated with plasma cell homing, adhesion, osteoclastogenesis, and angiogenesis. Osteoclast-derived coupling factors, a dysregulated adipogenic potential, and an imbalance in favor of anti-anabolic factors may play a role in the hampered osteoblast differentiation potential of mesenchymal stem cells. Angiopoietin-Like 4 (ANGPTL4) was selected from a list of differentially expressed genes as a myeloma cell contact-dependent target in skeletal precursor cells which warranted further functional analyses. Adhesion assays with full-length ANGPTL4-coated plates revealed a potential role of this protein in INA6 cell attachment. This study expands knowledge of the myeloma cell contact-induced signature in the stromal compartment of myelomatous bones and thus offers potential targets that may allow detection and treatment of myeloma bone disease at an early stage.}, language = {en} }