610 Medizin und Gesundheit
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Identification of articular cartilage progenitor cells (ACPCs) has opened up new opportunities for cartilage repair. These cells may be used as alternatives for or in combination with mesenchymal stromal cells (MSCs) in cartilage engineering. However, their potential needs to be further investigated, since only a few studies have compared ACPCs and MSCs when cultured in hydrogels. Therefore, in this study, we compared chondrogenic differentiation of equine ACPCs and MSCs in agarose constructs as monocultures and as zonally layered co-cultures under both normoxic and hypoxic conditions. ACPCs and MSCs exhibited distinctly differential production of the cartilaginous extracellular matrix (ECM). For ACPC constructs, markedly higher glycosaminoglycan (GAG) contents were determined by histological and quantitative biochemical evaluation, both in normoxia and hypoxia. Differential GAG production was also reflected in layered co-culture constructs. For both cell types, similar staining for type II collagen was detected. However, distinctly weaker staining for undesired type I collagen was observed in the ACPC constructs. For ACPCs, only very low alkaline phosphatase (ALP) activity, a marker of terminal differentiation, was determined, in stark contrast to what was found for MSCs. This study underscores the potential of ACPCs as a promising cell source for cartilage engineering.
Solid tumors are complex organ-like structures that consist not only of tumor cells but also of vasculature, extracellular matrix (ECM), stromal, and immune cells. Often, this tumor microenvironment (TME) comprises the larger part of the overall tumor mass. Like the other components of the TME, the ECM in solid tumors differs significantly from that in normal organs. Intratumoral signaling, transport mechanisms, metabolisms, oxygenation, and immunogenicity are strongly affected if not controlled by the ECM. Exerting this regulatory control, the ECM does not only influence malignancy and growth of the tumor but also its response toward therapy. Understanding the particularities of the ECM in solid tumor is necessary to develop approaches to interfere with its negative effect. In this review, we will also highlight the current understanding of the physical, cellular, and molecular mechanisms by which the pathological tumor ECM affects the efficiency of radio-, chemo-, and immunotherapy. Finally, we will discuss the various strategies to target and modify the tumor ECM and how they could be utilized to improve response to therapy.
Integrins are transmembrane receptors transmitting mechanical signals from the extracellular matrix (ECM) to the cytoskeleton (outside-in-signaling). Many molecular defects in the link between cytoskeleton and ECM are known to induce cardiomyopathies. alpha v integrin appears to play a major role in several processes relevant to remodeling, such as binding and activation of matrix metalloproteinases as well as regulation of cell proliferation, migration, and differentiation. We hypothesized that alpha v integrin-mediated signaling is required for the compensatory hypertrophy after aortic banding (AB) and associated with the modulation of ECM protein expression. Mice were treated in vivo with a specific integrin alpha v inhibitor or vehicle via osmotic minipumps starting 1 day prior to aortic banding (AB). At day 2 and day 7 following AB or sham-operation, the mice were examined by echocardiography and hemodynamic analyses were performed. Treatment of alpha v Integrin inhibitor led to a dilated cardiomyopathy and congestive heart failure in AB mice (dilated left ventricle, depressed LV function, and pulmonary congestion), but not to hypertrophy as observed in mice without inhibitor treatment. Investigation of downstream signaling revealed significant activation of the p38 Mitogen-Activated Protein Kinase (MAPK), the Extracellular signal-Regulated Kinases 1 and 2 (Erk 1/2), Focal Adhesion Kinase (FAK) and tyrosine-phosphorylation of c-Src in mice 7 days after AB. This response was blunted in mice treated with integrin alpha v inhibitor. Microarrays probing for a total of 96 cell adhesion and ECM genes identified various genomic targets of integrin alpha v mediated signalling. 7 days after AB 18 ECM genes were up-regulated more than 2-fold (n=6), e.g. collagen (8.11 ± 2.2), fibronectin (2.32 ± 0.94), secreted protein, acidic and rich in cysteine (SPARC, 3.78 ± 0.12), A disintegrin-like and metalloprotease (reprolysin type) with trombospondin type 1 (Adamts-1, 3.51 ± 0.81) and Tissue inhibitor of metalloproteinase 2 (TIMP2, 2.23 ± 0.98), whereas this up-regulation was abolished in mice that were treatd by integrin alpha v inhibitor via mini pumps. We conclude that signaling downstream of integrin alpha v is mediated by the MAPK, FAK and c-Src pathways leading to an up-regulation of extracelluar matrix components necessary for the compensatory response of the heart under a condition of pressure overload.
Die Pathomechanismen der Neuropathie bei Neuroborreliose sind noch immer unklar. In der vorliegenden Studie untersuchten wir 22 Patienten mit einer Neuropathie bei Neuroborreliose (BN) (3 Patienten in Stadium 2, 19 Patienten in Stadium 3) und verglichen diese mit 9 Patienten einer vaskulitischen Neuropathie (VN) und 14 Patienten einer idiopathisch axonalen Neuropathie (AN). Histologische und immunhistochemische Färbungen wurden mit Antikörpern gegen Leu4, CD68, 27E10 (frühzeitig aktivierte Makrophagen) und 25F9 (späte Makrophagen), Membrane-Attack-Komplex C5b-9, Adhäsionsmolekül ICAM sowie inflammatorische Zytokine Tumor Nekrose-Faktor-alpha (TNF-alpha), Interleukin-1ß (IL-1ß) und Interleukin-6 (IL-6), als auch Metalloproteinase MMP-9 durchgeführt, ferner mit Antikörpern gegen das membranassoziierte Glykoprotein HLA-DR3. Zusätzlich wurden Semi-Dünn-Schnitte angefertigt. Klinisch wiesen die meisten BN Patienten eine distal symmetrische sensomotorische Neuropathie auf, nur 6/22 Patienten waren schmerzfrei. Die Mehrzahl (18/22) der BN Neuropathien waren primär axonal mit perivaskulären (6/22), in 8 Fällen vaskulitischen Infiltraten. Das Perineurium war schwerpunktmäßig im Rahmen einer Borrelien-assoziierten Neuropathie betroffen. Das lies sich aus dem gegenüber den Kontrollgruppen signifikant verdickten Perineurium, der vermehrten Vaskularisation des Perineuriums und der starken IR für das Zytokin TNF-α schliessen, in geringerem Ausmaß für IL-1β, und für die terminale Komplementkomponente C5b9. Perivaskuläre und vaskuläre Infiltrate sowie die betont perineurale Expression bestimmter inflammatorischer Zytokine und Adhäsionsmoleküle erschienen charakteristisch für eine Neuropathie bei Neuroborreliose. Autoimmune Reaktionen mit Angriff am Perineurium können für die Pathogenese der Neuropathie bei Neuroborreliose bedeutsam sein.