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Exposure of a tendon extracellular matrix to synovial fluid triggers endogenous and engrafted cell death: A mechanism for failed healing of intrathecal tendon injuries

机译:肌腱细胞外基质暴露于滑液触发内源性和植入细胞死亡:鞘内肌腱损伤愈合失败的机制

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Aim: The purpose of this study was to investigate the effect of normal synovial fluid (SF) on exposed endogenous tendon-derived cells (TDCs) and engrafted mesenchymal stem cells (MSCs) within the tendon extracellular matrix. Methods: Explants from equine superficial digital flexor (extra-synovial) and deep digital flexor tendons (DDFTs) from the compressed, intra-synovial and the tensile, extrasynovial regions were cultured in allogeneic or autologous SF-media. Human hamstring explants were cultured in allogeneic SF. Explant viability was assessed by staining. Proliferation of equine monolayer MSCs and TDCs in SF-media and co-culture with DDFT explants was determined by alamarblue (R). Non-viable Native Tendon matrices (NNTs) were re-populated with MSCs or TDCs and cultured in SF-media. Immunohistochemical staining of tendon sections for the apoptotic proteins caspase-3, -8, and -9 was performed. Results: Contact with autologous or allogeneic SF resulted in rapid death of resident tenocytes in equine and human tendon. SF did not affect the viability of equine epitenon cells, or of MSCs and TDCs in the monolayer or indirect explant co-culture. MSCs and TDCs, engrafted into NNTs, died when cultured in SF. Caspase-3, -8, and -9 expression was the greatest in SDFT explants exposed to allogeneic SF. Conclusions: The efficacy of cells administered intra-synovially for tendon lesion repair is likely to be limited, since once incorporated into the matrix, cells become vlnerable to the adverse effects of SF. These observations could account for the poor success rate of intra-synovial tendon healing following damage to the epitenon and contact with SF, common with most soft tissue intra-synovial pathologies.
机译:目的:本研究的目的是探讨正常的滑膜(SF)对肌腱细胞外基质内暴露的内源性肌腱衍生细胞(TDCS)和植入的间充质干细胞(MSCs)的影响。方法:从大型浅表性数字屈肌(超滑膜)和深层数字屈肌(DDFT)的外侧,从压缩,滑膜和拉伸,额外的额外区域培养在同种异体或自体SF培养基中。人类腿筋外植体在同种异体的SF中培养。通过染色评估外植物的活力。通过Alamarblue(R)测定SF-MEDION和DDFT外植体的SF-MEDION和TDC中的大标型MSCs和TDC的增殖。用MSCs或TDC重新填充不可行的天然肌腱基质(NNT)并在SF-MESIB中培养。进行凋亡蛋白Caspase-3,-8和-9的肌腱切片的免疫组织化学染色。结果:与自体或同种异体的SF接触导致马和人类肌腱中的居民胞胎的快速死亡。 SF不影响马上胚胎细胞的可行性,或在单层或间接外分泌蛋白的共同培养中的MSC和TDC。在SF培养时,将MSC和TDCS植入NNTS,死亡。 Caspase-3,-8和-9表达是暴露于同种异体SF的SDFT外植体中最大的。结论:施用肌腱病变修复的细胞施用细胞的功效可能是有限的,因为一旦掺入基质中,细胞变为VLOSION对SF的不良反应。这些观察结果可以考虑在对EpiteNon损伤后的滑膜内愈合愈合的差,并且与SF接触,与大多数软组织血液内病理有关。

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