TY - JOUR A1 - Weißenberger, Manuel A1 - Wagenbrenner, Mike A1 - Schote, Fritz A1 - Horas, Konstantin A1 - Schäfer, Thomas A1 - Rudert, Maximilian A1 - Barthel, Thomas A1 - Heinz, Tizian A1 - Reppenhagen, Stephan T1 - The 3-triangle method preserves the posterior tibial slope during high tibial valgus osteotomy: first preliminary data using a mathematical model JF - Journal of Experimental Orthopaedics N2 - Purpose Despite much improved preoperative planning techniques accurate intraoperative assessment of the high tibial valgus osteotomy (HTO) remains challenging and often results in coronal over- and under-corrections as well as unintended changes of the posterior tibial slope. Noyes et al. reported a novel method for accurate intraoperative coronal and sagittal alignment correction based on a three-dimensional mathematical model. This is the first study examining preliminary data via the proposed Noyes approach for accurate intraoperative coronal and sagittal alignment correction during HTO. Methods From 2016 to 2020 a total of 24 patients (27 knees) underwent HTO applying the proposed Noyes method (Noyes-Group). Radiographic data was analyzed retrospectively and matched to patients that underwent HTO using the conventional method, i.e., gradual medial opening using a bone spreader under fluoroscopic control (Conventional-Group). All operative procedures were performed by an experienced surgeon at a single orthopaedic university center. Results From the preoperative to the postoperative visit no statistically significant changes of the posterior tibial slope were noted in the Noyes-Group compared to a significant increase in the Conventional-Group (p = 0.01). Regarding the axial alignment no significant differences between both groups were observed pre- and postoperatively. The number of over- and under-corrections did not differ significantly between both groups. Linear regression analysis showed a significant correlation of the postoperative medial proximal tibial angle (MPTA) with the position of the weightbearing line on the tibial plateau. Conclusion The 3-triangle method by Noyes seems to be a promising approach for preservation of the posterior tibial slope during HTO. KW - knee KW - high tibial valgus osteotomy KW - axial alignment KW - posterior tibial slope KW - weight bearing line KW - cartilage KW - triangle method KW - osteoarthritis Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-300806 SN - 2197-1153 VL - 9 ER - TY - JOUR A1 - Weber, Patrick A1 - Beck, Melina A1 - Klug, Michael A1 - Klug, Andreas A1 - Klug, Alexander A1 - Glowalla, Claudio A1 - Gollwitzer, Hans T1 - Survival of patient-specific unicondylar knee replacement JF - Journal of Personalized Medicine N2 - Unicompartmental knee arthroplasty (UKA) in isolated medial or lateral osteoarthritis leads to good clinical results. However, revision rates are higher in comparison to total knee arthroplasty (TKA). One reason is suboptimal fitting of conventional off-the-shelf prostheses, and major overhang of the tibial component over the bone has been reported in up to 20% of cases. In this retrospective study, a total of 537 patient-specific UKAs (507 medial prostheses and 30 lateral prostheses) that had been implanted in 3 centers over a period of 10 years were analyzed for survival, with a minimal follow-up of 1 year (range 12 to 129 months). Furthermore, fitting of the UKAs was analyzed on postoperative X-rays, and tibial overhang was quantified. A total of 512 prostheses were available for follow-up (95.3%). Overall survival rate (medial and lateral) of the prostheses after 5 years was 96%. The 30 lateral UKAs showed a survival rate of 100% at 5 years. The tibial overhang of the prosthesis was smaller than 1 mm in 99% of cases. In comparison to the reported results in the literature, our data suggest that the patient-specific implant design used in this study is associated with an excellent midterm survival rate, particularly in the lateral knee compartment, and confirms excellent fitting. KW - unicompartmental knee arthroplasty KW - osteoarthritis KW - patient-specific implant KW - partial knee arthroplasty KW - patient-specific instruments Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-313650 SN - 2075-4426 VL - 13 IS - 4 ER - TY - JOUR A1 - Frischholz, Sebastian A1 - Berberich, Oliver A1 - Böck, Thomas A1 - Meffert, Rainer H. A1 - Blunk, Torsten T1 - Resveratrol counteracts IL‐1β‐mediated impairment of extracellular matrix deposition in 3D articular chondrocyte constructs JF - Journal of Tissue Engineering and Regenerative Medicine N2 - When aiming at cell‐based therapies in osteoarthritis (OA), proinflammatory conditions mediated by cytokines such as IL‐1β need to be considered. In recent studies, the phytoalexin resveratrol (RSV) has exhibited potent anti‐inflammatory properties. However, long‐term effects on 3D cartilaginous constructs under inflammatory conditions with regard to tissue quality, especially extracellular matrix (ECM) composition, have remained unexplored. Therefore, we employed long‐term model cultures for cell‐based therapies in an in vitro OA environment and evaluated effects of RSV. Pellet constructs made from expanded porcine articular chondrocytes were cultured with either IL‐1β (1–10 ng/ml) or RSV (50 μM) alone, or a cotreatment with both agents. Treatments were applied for 14 days, either directly after pellet formation or after a preculture period of 7 days. Culture with IL‐1β (10 ng/ml) decreased pellet size and DNA amount and severely compromised glycosaminoglycan (GAG) and collagen content. Cotreatment with RSV distinctly counteracted the proinflammatory catabolism and led to partial rescue of the ECM composition in both culture systems, with especially strong effects on GAG. Marked MMP13 expression was detected in IL‐1β‐treated pellets, but none upon RSV cotreatment. Expression of collagen type I was increased upon IL‐1β treatment and still observed when adding RSV, whereas collagen type X, indicating hypertrophy, was detected exclusively in pellets treated with RSV alone. In conclusion, RSV can counteract IL‐1β‐mediated degradation and distinctly improve cartilaginous ECM deposition in 3D long‐term inflammatory cultures. Nevertheless, potential hypertrophic effects should be taken into account when considering RSV as cotreatment for articular cartilage repair techniques. KW - articular chondrocytes KW - cartilage KW - cell‐based therapy KW - extracellular matrix KW - IL‐1β KW - inflammation KW - osteoarthritis KW - resveratrol Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-215471 VL - 14 IS - 7 SP - 897 EP - 908 ER - TY - THES A1 - Frischholz, Sebastian T1 - Resveratrol Counteracts IL-1β-mediated Impairment of Extracellular Matrix Deposition in 3D Articular Chondrocyte Constructs T1 - Resveratrol wirkt der IL-1β-vermittelten Beeinträchtigung von Extrazellulärmatrix-Deposition in 3D Konstrukten aus artikulären Chondrozyten entgegen N2 - Articular cartilage is an exceptional connective tissue which by a network of fibrillar collagen and glycosaminoglycan (GAG) molecules allows both low- friction articulation and distribution of loads to the subchondral bone (Armiento et al., 2018, Ulrich-Vinther et al., 2003). Because of its very limited ability to self-repair, chondral defects following traumatic injury increase the risk for secondary osteoarthritis (OA) (Muthuri et al., 2011). Still, current OA treatments such as common nonsteroidal anti-inflammatory drugs (NSAIDs) and joint replacement primarily address end-stage symptoms (Tonge et al., 2014). As low-grade inflammation plays a pivotal role in the pathogenesis of OA (Robinson et al., 2016), there is a strong demand for novel therapeutic concepts, such as integrating application of anti-inflammatory agents into cartilage cell- based therapies in order to effectively treat OA affected joints in early disease stages. The polyphenolic phytoalexin resveratrol (RSV), found in the skin of red grapes, berries, and peanuts, has been shown to have effective anti-inflammatory properties (Shen et al., 2012). However, its long-term effects on 3D chondrocyte constructs cultured in an inflammatory environment with regard to tissue quality have remained unexplored so far. Therefore, in this study, pellets made from expanded porcine articular chondrocytes were cultured for 14 days with either the pro-inflammatory cytokine interleukin-1β (IL-1β) (1 - 10 ng/ml) or RSV (50 μM) alone, or a co-treatment with both agents. Constructs treated with chondrocyte medium only served as control. Treatment with IL-1β at 10 ng/ml resulted in a significantly smaller pellet size and reduced DNA content. However, RSV counteracted the IL-1β-induced decrease and significantly enhanced diameter and DNA content. Also, in terms of GAG deposition, treatment with IL-1β at 10 ng/ml resulted in a tremendous depletion of absolute GAG content and GAG/DNA. Again, RSV co-treatment counteracted the inflammatory stimulus and led to a partial recovery of GAG content. Histological analysis utilizing safranin-O staining confirmed these findings. Marked expression of the cartilage-degrading enzyme matrix metalloproteinase 13 (MMP13) was detected in IL-1β-treated pellets, but none upon RSV co- treatment. Moreover, co-treatment of IL-1β-challenged constructs with RSV significantly increased absolute collagen content. However, under non- inflammatory conditions, RSV induced gene expression and protein accumulation of collagen type X, a marker for undesirable hypertrophy. Taken together, in the present thesis, RSV was demonstrated to elicit marked beneficial effects on the extracellular matrix composition of 3D cartilaginous constructs in long-term inflammatory culture in vitro, but also induced hypertrophy under non-inflammatory conditions. Based on these findings, further experiments examining multiple concentrations of RSV under various inflammatory conditions appear desirable concerning potential therapeutic applicability in OA. N2 - Gelenkknorpel ermöglicht als spezielles Bindegewebe aus Kollagenfasern und Glykosaminoglykanen (GAG) sowohl die reibungsarme Beweglichkeit in Gelenken als auch die Lastübertragung auf angrenzende Knochen (Armiento et al., 2018, Ulrich-Vinther et al., 2003). Aufgrund der sehr begrenzten Fähigkeit zur intrinsischen Erneuerung erhöhen chondrale Defekte nach traumatischen Verletzungen das Risiko für sekundäre Arthrose (Osteoarthritis; OA) (Muthuri et al., 2011). Dennoch konzentrieren sich derzeitige Behandlungsansätze, einschließlich nichtsteroidaler Antirheumatika (NSAR) und des operativen Gelenkersatzes, hauptsächlich auf Symptome im Endstadium der Erkrankung (Tonge et al., 2014). Da eine geringgradige Entzündung eine entscheidende Rolle in der Pathogenese der Arthrose spielt (Robinson et al., 2016), besteht ein starker Bedarf an neuartigen Therapiekonzepten, wie der Kombination von anti- inflammatorischen Wirkstoffen mit knorpelzellbasierten Therapien, um von Arthrose betroffene Gelenke in frühen Krankheitsstadien wirksam zu behandeln. Das polyphenolische Phytoalexin Resveratrol (RSV), welches in der Schale roter Weintrauben, in Beeren und Erdnüssen vorkommt, besitzt starke entzündungshemmende Eigenschaften (Shen et al., 2012). Langzeiteffekte auf 3D-Knorpelkonstrukte unter inflammatorischen Bedingungen sind hinsichtlich der Gewebequalität jedoch bislang unerforscht geblieben. Daher wurden in der vorliegenden Studie Pellets aus expandierten porcinen Gelenkknorpelzellen über einen Zeitraum von 14 Tagen entweder mit dem pro-inflammatorischen Zytokin Interleukin-1β (IL-1β) (1 - 10 ng/ml) oder RSV (50 μM) allein, oder mit beiden Agenzien kombiniert behandelt. Konstrukte, welche nur serumfreies Chondrozytenmedium erhielten, dienten als Kontrolle. Die Behandlung mit IL- 1β in einer Konzentration von 10 ng/ml führte zu einem signifikant geringeren Durchmesser der Pellets sowie einem verringerten DNA-Gehalt. RSV wirkte dieser IL-1β-vermittelten Reduktion entgegen und steigerte signifikant sowohl Durchmesser als auch DNA-Gehalt der untersuchten Konstrukte. Auch in Bezug auf die Deposition von GAG-Molekülen führte die Kultur mit IL-1β (10 ng/ml) zu einer massiven Abnahme des absoluten GAG-Gehaltes und der GAG/DNA- Ratio. Abermals wirkte die gleichzeitige Behandlung mit RSV dem Entzündungsreiz deutlich entgegen und resultierte in einer partiellen Wiederherstellung des GAG-Gehaltes. Die histologische Analyse unter Verwendung von Safranin-O-Färbungen bestätigte diese Ergebnisse. Darüber hinaus manifestierte sich eine ausgeprägte Expression des knorpelabbauenden Enzyms Matrix-Metalloproteinase 13 (MMP13) in IL-1β behandelten Pellets, nicht jedoch in denen, die simultan mit RSV behandelt wurden. Außerdem resultierte die gleichzeitige Behandlung von IL-1β-stimulierten Konstrukten mit RSV in einer signifikanten Erhöhung des absoluten Kollagengehaltes. Unter nicht-inflammatorischen Bedingungen induzierte RSV die Genexpression und Proteinakkumulation von Kollagen Typ X, einem Marker für unerwünschte Hypertrophie. Zusammengefasst wurde in der vorliegenden Arbeit gezeigt, dass RSV deutliche positive Effekte auf die Extrazellulärmatrix von 3D- Knorpelkonstrukten in einer Langzeit-Entzündungskultur in vitro hervorruft, allerdings unter nicht-inflammatorischen Bedingungen Hypertrophie induziert. Basierend auf diesen Befunden erscheinen weitere Experimente zur Untersuchung unterschiedlicher RSV-Konzentrationen unter verschiedenen Entzündungsbedingungen hinsichtlich einer möglichen therapeutischen Anwendbarkeit bei OA wünschenswert. KW - Resveratrol KW - Interleukin 1-beta KW - Gelenkknorpel KW - Extrazelluläre Matrix KW - Osteoarthritis KW - IL-1β KW - articular chondrocytes KW - cartilage KW - cell-based therapy KW - extracellular matrix KW - inflammation KW - osteoarthritis KW - resveratrol Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-237453 ER - TY - JOUR A1 - Wagenbrenner, Mike A1 - Poker, Konrad A1 - Heinz, Tizian A1 - Herrmann, Marietta A1 - Horas, Konstantin A1 - Ebert, Regina A1 - Mayer-Wagner, Susanne A1 - Holzapfel, Boris M. A1 - Rudert, Maximilian A1 - Steinert, Andre F. A1 - Weißenberger, Manuel T1 - Mesenchymal stromal cells (MSCs) isolated from various tissues of the human arthritic knee joint possess similar multipotent differentiation potential JF - Applied Sciences N2 - (1) Background: The mesenchymal stromal cells (MSCs) of different tissue origins are applied in cell-based chondrogenic regeneration. However, there is a lack of comparability determining the most suitable cell source for the tissue engineering (TE) of cartilage. The purpose of this study was to compare the in vitro chondrogenic potential of MSC-like cells from different tissue sources (bone marrow, meniscus, anterior cruciate ligament, synovial membrane, and the infrapatellar fat pad removed during total knee arthroplasty (TKA)) and define which cell source is best suited for cartilage regeneration. (2) Methods: MSC-like cells were isolated from five donors and expanded using adherent monolayer cultures. Differentiation was induced by culture media containing specific growth factors. Transforming growth factor (TGF)-ß1 was used as the growth factor for chondrogenic differentiation. Osteogenesis and adipogenesis were induced in monolayer cultures for 27 days, while pellet cell cultures were used for chondrogenesis for 21 days. Control cultures were maintained under the same conditions. After, the differentiation period samples were analyzed, using histological and immunohistochemical staining, as well as molecularbiological analysis by RT-PCR, to assess the expression of specific marker genes. (3) Results: Plastic-adherent growth and in vitro trilineage differentiation capacity of all isolated cells were proven. Flow cytometry revealed the clear co-expression of surface markers CD44, CD73, CD90, and CD105 on all isolated cells. Adipogenesis was validated through the formation of lipid droplets, while osteogenesis was proven by the formation of calcium deposits within differentiated cell cultures. The formation of proteoglycans was observed during chondrogenesis in pellet cultures, with immunohistochemical staining revealing an increased relative gene expression of collagen type II. RT-PCR proved an elevated expression of specific marker genes after successful differentiation, with no significant differences regarding different cell source of native tissue. (4) Conclusions: Irrespective of the cell source of native tissue, all MSC-like cells showed multipotent differentiation potential in vitro. The multipotent differentiation capacity did not differ significantly, and chondrogenic differentiation was proven in all pellet cultures. Therefore, cell suitability for cell-based cartilage therapies and tissue engineering is given for various tissue origins that are routinely removed during total knee arthroplasty (TKA). This study might provide essential information for the clinical tool of cell harvesting, leading to more flexibility in cell availability. KW - knee joint KW - MSCs KW - cellular origin KW - cartilage regeneration KW - tissue engineering KW - cell-based therapies KW - osteoarthritis Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262334 SN - 2076-3417 VL - 12 IS - 4 ER - TY - JOUR A1 - Niedermair, Tanja A1 - Lukas, Christoph A1 - Li, Shushan A1 - Stöckl, Sabine A1 - Craiovan, Benjamin A1 - Brochhausen, Christoph A1 - Federlin, Marianne A1 - Herrmann, Marietta A1 - Grässel, Susanne T1 - Influence of Extracellular Vesicles Isolated From Osteoblasts of Patients With Cox-Arthrosis and/or Osteoporosis on Metabolism and Osteogenic Differentiation of BMSCs JF - Frontiers in Bioengineering and Biotechnology N2 - Background: Studies with extracellular vesicles (EVs), including exosomes, isolated from mesenchymal stem cells (MSC) indicate benefits for the treatment of musculoskeletal pathologies as osteoarthritis (OA) and osteoporosis (OP). However, little is known about intercellular effects of EVs derived from pathologically altered cells that might influence the outcome by counteracting effects from “healthy” MSC derived EVs. We hypothesize, that EVs isolated from osteoblasts of patients with hip OA (coxarthrosis/CA), osteoporosis (OP), or a combination of both (CA/OP) might negatively affect metabolism and osteogenic differentiation of bone-marrow derived (B)MSCs. Methods: Osteoblasts, isolated from bone explants of CA, OP, and CA/OP patients, were compared regarding growth, viability, and osteogenic differentiation capacity. Structural features of bone explants were analyzed via μCT. EVs were isolated from supernatant of naïve BMSCs and CA, OP, and CA/OP osteoblasts (osteogenic culture for 35 days). BMSC cultures were stimulated with EVs and subsequently, cell metabolism, osteogenic marker gene expression, and osteogenic differentiation were analyzed. Results: Trabecular bone structure was different between the three groups with lowest number and highest separation in the CA/OP group. Viability and Alizarin red staining increased over culture time in CA/OP osteoblasts whereas growth of osteoblasts was comparable. Alizarin red staining was by trend higher in CA compared to OP osteoblasts after 35 days and ALP activity was higher after 28 and 35 days. Stimulation of BMSC cultures with CA, OP, and CA/OP EVs did not affect proliferation but increased caspase 3/7-activity compared to unstimulated BMSCs. BMSC viability was reduced after stimulation with CA and CA/OP EVs compared to unstimulated BMSCs or stimulation with OP EVs. ALP gene expression and activity were reduced in BMSCs after stimulation with CA, OP, and CA/OP EVs. Stimulation of BMSCs with CA EVs reduced Alizarin Red staining by trend. Conclusion: Stimulation of BMSCs with EVs isolated from CA, OP, and CA/OP osteoblasts had mostly catabolic effects on cell metabolism and osteogenic differentiation irrespective of donor pathology and reflect the impact of tissue microenvironment on cell metabolism. These catabolic effects are important for understanding differences in effects of EVs on target tissues/cells when harnessing them as therapeutic drugs. KW - extracellular vesicles KW - mesenchymal stem cells KW - osteoblasts KW - osteoarthritis KW - osteoporosis KW - EVs KW - osteogenic differentiation Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-219902 SN - 2296-4185 VL - 8 ER - TY - JOUR A1 - Wagenbrenner, Mike A1 - Heinz, Tizian A1 - Horas, Konstantin A1 - Jakuscheit, Axel A1 - Arnholdt, Joerg A1 - Mayer-Wagner, Susanne A1 - Rudert, Maximilian A1 - Holzapfel, Boris M. A1 - Weißenberger, Manuel T1 - Impact of Tranexamic Acid on Chondrocytes and Osteogenically Differentiated Human Mesenchymal Stromal Cells (hMSCs) In Vitro JF - Journal of Clinical Medicine N2 - The topical application of tranexamic acid (TXA) helps to prevent post-operative blood loss in total joint replacements. Despite these findings, the effects on articular and periarticular tissues remain unclear. Therefore, this in vitro study examined the effects of varying exposure times and concentrations of TXA on proliferation rates, gene expression and differentiation capacity of chondrocytes and human mesenchymal stromal cells (hMSCs), which underwent osteogenic differentiation. Chondrocytes and hMSCs were isolated and multiplied in monolayer cell cultures. Osteogenic differentiation of hMSCs was induced for 21 days using a differentiation medium containing specific growth factors. Cell proliferation was analyzed using ATP assays. Effects of TXA on cell morphology were examined via light microscopy and histological staining, while expression levels of tissue-specific genes were measured using semiquantitative RT-PCR. After treatment with 50 mg/mL of TXA, a decrease in cell proliferation rates was observed. Furthermore, treatment with concentrations of 20 mg/mL of TXA for at least 48 h led to a visible detachment of chondrocytes. TXA treatment with 50 mg/mL for at least 24 h led to a decrease in the expression of specific marker genes in chondrocytes and osteogenically differentiated hMSCs. No significant effects were observed for concentrations beyond 20 mg/mL of TXA combined with exposure times of less than 24 h. This might therefore represent a safe limit for topical application in vivo. Further research regarding in vivo conditions and effects on hMSC functionality are necessary to fully determine the effects of TXA on articular and periarticular tissues. KW - tranexamic acid KW - hMSCs KW - chondrocytes KW - osteoarthritis KW - toxicity KW - differentiation capacity Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-219410 SN - 2077-0383 VL - 9 IS - 12 ER - TY - JOUR A1 - Li, Shushan A1 - Stöckl, Sabine A1 - Lukas, Christoph A1 - Götz, Julia A1 - Herrmann, Marietta A1 - Federlin, Marianne A1 - Grässel, Susanne T1 - hBMSC-Derived Extracellular Vesicles Attenuate IL-1β-Induced Catabolic Effects on OA-Chondrocytes by Regulating Pro-inflammatory Signaling Pathways JF - Frontiers in Bioengineering and Biotechnology N2 - Background: Human bone marrow-derived mesenchymal stromal cells (hBMSCs) provide a promising therapeutic approach in the cell-based therapy of osteoarthritis (OA). However, several disadvantages evolved recently, including immune responses of the host and regulatory hurdles, making it necessary to search for alternative treatment options. Extracellular vesicles (EVs) are released by multiple cell types and tissues into the extracellular microenvironment, acting as message carriers during intercellular communication. Here, we investigate putative protective effects of hBMSC-derived EVs as a cell-free approach, on IL-1β-stimulated chondrocytes obtained from OA-patients. Methods: EVs were harvested from the cell culture supernatant of hBMSCs by a sequential ultracentrifugation process. Western blot, scanning electron microscopy (SEM), and nanoparticle tracking analysis (NTA) were performed to characterize the purified particles as EVs. Intracellular incorporation of EVs, derived from PHK26-labeled hBMSCs, was tested by adding the labeled EVs to human OA chondrocytes (OA-CH), followed by fluorescence microscopy. Chondrocytes were pre-stimulated with IL-1β for 24 h, followed by EVs treatment for 24 h. Subsequently, proliferation, apoptosis, and migration (wound healing) were analyzed via BrdU assay, caspase 3/7 assay, and scratch assay, respectively. With qRT-PCR, the relative expression level of anabolic and catabolic genes was determined. Furthermore, immunofluorescence microscopy and western blot were performed to evaluate the protein expression and phosphorylation levels of Erk1/2, PI3K/Akt, p38, TAK1, and NF-κB as components of pro-inflammatory signaling pathways in OA-CH. Results: EVs from hBMSCs (hBMSC-EVs) promote proliferation and reduce apoptosis of OA-CH and IL-1β-stimulated OA-CH. Moreover, hBMSC-EVs attenuate IL-1β-induced reduction of chondrocyte migration. Furthermore, hBMSC-EVs increase gene expression of PRG4, BCL2, and ACAN (aggrecan) and decrease gene expression of MMP13, ALPL, and IL1ß in OA-CH. Notably, COL2A1, SOX9, BCL2, ACAN, and COMP gene expression levels were significantly increased in IL-1β+ EV groups compared with those IL-1β groups without EVs, whereas the gene expression levels of COLX, IL1B, MMP13, and ALPL were significantly decreased in IL-1β+ EV groups compared to IL-1β groups without EVs. In addition, the phosphorylation status of Erk1/2, PI3K/Akt, p38, TAK1, and NF-κB signaling molecules, induced by IL-1β, is prevented by hBMSC- EVs. Conclusion: EVs derived from hBMSCs alleviated IL-1β-induced catabolic effects on OA-CH via promoting proliferation and migration and reducing apoptosis, probably via downregulation of IL-1ß-activated pro-inflammatory Erk1/2, PI3K/Akt, p38, TAK1, and NF-κB signaling pathways. EVs released from BMSCs may be considered as promising cell-free intervention strategy in cartilage regenerative medicine, avoiding several adverse effects of cell-based regenerative approaches. KW - extracellular vesicles KW - IL-1ß KW - osteoarthritis KW - signaling pathways KW - hBMSC KW - chondrocytes Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-219749 SN - 2296-4185 VL - 8 ER - TY - JOUR A1 - Mülek, Melanie A1 - Seefried, Lothar A1 - Genest, Franca A1 - Högger, Petra T1 - Distribution of constituents and metabolites of maritime pine bark extract (Pycnogenol\(^{®}\)) into serum, blood cells, and synovial fluid of patients with severe osteoarthritis: a randomized controlled trial JF - Nutrients N2 - The present randomized controlled study aimed to investigate the in vivo distribution of constituents or metabolites of the standardized maritime pine bark extract Pycnogenol\(^{®}\). Thirty-three patients with severe osteoarthritis scheduled for a knee arthroplasty were randomized to receive either 200 mg per day Pycnogenol\(^{®}\) (P+) or no treatment (Co) over three weeks before surgery. Serum, blood cells, and synovial fluid samples were analyzed using liquid chromatography coupled to tandem mass spectrometry with electrospray ionization (LC-ESI/MS/MS). Considerable interindividual differences were observed indicating pronounced variability of the polyphenol pharmacokinetics. Notably, the highest polyphenol concentrations were not detected in serum. Catechin and taxifolin primarily resided within the blood cells while the microbial catechin metabolite δ-(3,4-dihydroxy-phenyl)-γ-valerolactone, ferulic, and caffeic acid were mainly present in synovial fluid samples. Taxifolin was detected in serum and synovial fluid exclusively in the P+ group. Likewise, no ferulic acid was found in serum samples of the Co group. Calculating ratios of analyte distribution in individual patients revealed a simultaneous presence of some polyphenols in serum, blood cells, and/or synovial fluid only in the P+ group. This is the first evidence that polyphenols distribute into the synovial fluid of patients with osteoarthritis which supports rationalizing the results of clinical efficacy studies. KW - osteoarthritis KW - randomized controlled study KW - LC-ESI/MS/MS KW - human KW - pine bark extract KW - polyphenols Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159862 VL - 9 IS - 5 ER - TY - THES A1 - Ruppert, Andreas T1 - Die B-Lymphozyten-Aktivierung in der osteoarthrotischen Synovialmembran - ein Beitrag zum molekularpathogenetischen Verständnis der Osteoarthrose T1 - Activation of the B-lymphocytes in the osteoarthrotic synovitis - a contribution to the understanding of molecular pathogenesis N2 - Die Synovialmembran zeigt bei Osteoarthrose, einer primär degenerativen Erkrankung, ein sekundäres entzündliches Geschehen. Histopathologisch existiert das entzündliche Infiltrat in zwei unterschiedlichen Mustern, die jedoch eine sekundäre, durch Knorpelalteration bedingte Synovialitis gemeinsam haben: (1) Detritus Synovialitis und (2) lympho-plasmazelluläre Synovialitis, beide mit leicht ausgeprägter entzündlicher Infiltration durch Lymphozyten und Plasmazellen. Ziel dieser Studie war es, ein genaueres Verständnis von der B-Zell-Aktivierung in der Synovialmembran der OA zu eruieren. Denn es ist immer noch ungeklärt, ob die B-Lymphozyten im synovialen Infiltrat Antigen-aktiviert sind, als solche möglicherweise schon einwandern, oder ob sie auch lokal expandieren (im Sinne einer antigenabhängigen Affinitätsmaturation), wie bei der RA. Bei dieser ist inzwischen eine lokale Affinitätsmaturation in synovialen Keimzentren bewiesen. Dazu wurden IgVH-Gene der synovialen B-Lymphozyten analysiert und immunhistochemische Färbungen durchgeführt, da bis dato noch wenige morphologische, als auch molekularbiologische Daten über die synovialen B-Zellen bzw. Plasmazellen in der OA vorliegen. Ein Fokus wurde auf die Antigen-Aktivierung der synovialen B-Lymphozyten (charakterisiert durch hohe R/S-Ratios) gerichtet. Um der Herkunft des Entzündungsgeschehens nachzugehen, wurde die Histologie verschiedener Differenzierungsstufen von B-Lymphozyten im entzündlichen Infiltrat von nicht-follikulären und follikelähnlichen B-Zell-Ansammlugen analysiert. Durch CD27/CD20– und CD27/Syndekan-Doppelfärbungen konnte die bevorzugte Lokalisation von Memory-und Plasma-Zellen identifiziert werden. Diese gab nähere Hinweise auf den Ort der Antigen-Aktivierung bei Osteoarthrose. Die Resultate der hohen R/S-Ratios (17/24 Klonen), gerade in den CDR-Regionen, stehen im Einklang mit der gängigen Meinung, dass die CDR-Regionen mehr mutieren als die FR-Regionen, da in diesen eher ein konstantes Antikörpermerkmal erhalten wird, wohingegen die CDR´s auf eine Affinitätsanpassung (durch höhere Mutationsraten) ausgerichtet sind. Die Mutationsrate weist auf eine stattgefundene Antigenaktivierung dieser B-Lymphozyten hin. Aus den histologischen Schnittbildern mit den oben genannten Doppelfärbungen war v.a. perivaskulär ein Vorkommen von vielen CD27+/CD20+ Memory-B-Zellen (PMZ/IaM), sowie Plasmazellen zu erkennen, dahingegen relativ betrachtet wenige CD27-CD20+ B-Lymphozyten. Dies deutet darauf hin, dass bei der OA vermehrt bereits aktivierte Memory-Zellen ins Synovialgewebe einwandern. Allerdings zeigte sich eine unerwartete Anhäufung von Follikelähnlichen Formationen ohne Keimzentrumscharakter, die Anlaß zu weiteren Überlegungen geben. Die Diskussion findet im Rahmen des generellen Pathogenese-Konzepts der OA statt, mit besonderem Augenmerk auf die unterschiedlichen Entzündungstypen und -muster, sowie die dominierenden Zelltypen in der osteoarthrotischen Synovialmembran. Da in dem Entzündungsinfiltrat der osteoarthrotischen Synovialmembran keine Keimzentren zu finden sind, nur Follikelähnliche Formationen, muss von einer Antigen-Aktivierung und Affinitätsreifung außerhalb des Gelenkes ausgegangen werden. Bei nahezu allen morphologischen Betrachtungen der osteoarthrotischen Synovia fiel eine deutlich hohe Anzahl von CD27+/CD20+ Memory-B-Lymphozyten perivaskulär auf. Daher kann davon ausgegangen werden, dass wir es beim arthrotischen Entzündungsinfiltrat mit einer Sekundär-Antwort zu tun haben, die auf Antigene reagiert, an die sich das Immunsystem „erinnert“ und bereits aktivierte B-Zellen einwandern. Zusammenfassend legt die Datenlage nahe, dass man offensichtlich von einer immunologischen Bekanntheit es körpereigenen Immunsystems mit freigesetzten Antigenen in der OA spechen kann. Hierdurch wurde ein Beitrag zum immunpathogenetischen Verständnis der sekundären Begleitsynovialitis dahingehend gefunden, dass die geringer ausgeprägte Entzündung in der Arthrose -im Gegensatz zur RA- ein Ausdruck der Reaktivität auf „dem Immunsystem in Erinnerung gebliebener“ Antigene ist. Der Vergleich der potentiellen Antigene bei den Krankheitsbildern RA und OA weist einige Gemeinsamkeiten auf, wodurch sich die Frage einer genetischen Prädisposition für das Ausmaß des Entzündungsgrades in den Gelenken ergibt. N2 - The synovial membrane in osteoarthritis, which is a primary degenerative disease, shows a secondary stage of inflammation. Histopathologically, the infiltrate displays two different patterns of a secondary synovitis, which is caused by alteration of the cartilage: (1) detritus synovitis and (2) lympho-plasmacellular synovitis, both showing a low level of infiltration by lymphocytes and plasmacells. The aim of this study was to achieve a better understanding of the activation of B-cells in the synovial membrane in OA. It´s still unclear, whether the B-lymphocytes in the synovial infiltrate are antigen-activated in the tissue, immigrate in an already activated state or, as with antigen-dependent maturation in RA germ-centres, expand locally as well. The course of this study comprised analysis of IgVH-genes of the synovial B-lymphocytes as well as immunhistochemical stainings of synovial tissue. So far only few morphological and molecular-biological data concerning synovial B-lymphocytes or plasma-cells in OA have been published. To originate the beginning of the inflammation the study focussed on the antigen-activation of the synovial B-lymphocytes, characterized by high R/S-ratios. The histology of different stages in B-lymphocytal development was analysed in inflammatory aggregations of non-follicular and follicular formations. It was possible to identify the localisation of memory- and plasma-cells by means of CD27/CD20 and CD27/Syndecan double stainings, hinting to the locus of antigen-activation in OA. The high R/S-ratios (17/24 clones), epecially in CDR-regions, support the common view about CDR-regions showing more mutations than FR-regions. These FR-regions conserve a constant antibody-feature, contrary to CDR´s being programmed for affinity-maturation – as shown by high maturation rates of these B-lymphocytes. By means of double-staining a prevalence of perivascular CD27+/CD20+-memory cells and plasma-cells but only few CD27-CD20+-B-lymphocytes could be demonstrated on histological slices. This points out an immigration of numerous preactivated memory-cells into the synovial membrane in OA. However, there was an unexpectedly high prevalence of follicular-like formations without a germ-centre character, which should be subject to further investigation. On the backdrop of the general concept of pathogenesis of OA, the discussion focuses on different types and patterns of inflammation, as well as on the dominant cell-types in the synovial membrane of OA. The absence of real germ-centres and the appearance of follicular-like formations in the inflammatory infiltrate suggests an antigen-activation and affinity-maturation outside the joints. Therefore it can be concluded that the inflammatory response in OA bases on the memorization of some antigens by the immune system followed by an immigration of preactivated B-cells. In summary the immune system appears to memorize the antigens involved in the process of OA. This investigation thus provides further insight into the understanding of secondary synovitis especially regarding the less extensive inflammatory infiltrate in OA as opposed to RA. The comparison of potential antigens in RA and OA shows some similarities, hence proposing a determining genetic predisposition for the extent of inflammation in the joints. KW - Osteoarthrose KW - CD 27 KW - osteoarthritis KW - CD 27 Y1 - 2002 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-5161 ER -