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The cellular responses of articular cartilage to sharp and blunt trauma.

机译:关节软骨对尖锐钝性创伤的细胞反应。

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OBJECTIVE: To determine the response of immature articular cartilage to both sharp and blunt trauma in terms of cell death, cell proliferation and matrix synthesis. DESIGN: Blunt wounds were made with a trephine in full depth immature bovine articular cartilage explants which were cut in half through the center of the trephine wound with a sharp scalpel to produce blunt and sharp trauma on the same explant. Explants were maintained in culture for up to 10 days. Prior to fixation at days 2, 5 and 10, medium was supplemented with 10 microCi ml-1 35S-sulphate, [3H]-proline or [3H]-thymidine for 24h to assess matrix synthesis and cell proliferation. Cell death was assessed using a Live/Dead label. RESULTS: In the case of blunt wounds, a band of cell death was observed adjacent to the lesion edge. Microautoradiography demonstrated little radiolabel incorporation and, therefore, no new matrix synthesis or cell proliferation within this region. In contrast, wounds made with a sharp scalpel showed restricted cell death, with radiolabel incorporation adjacent to the lesion edge at all time points. This demonstrated not only chondrocyte proliferation and new matrix synthesis at the wound margin, but also an up-regulation of matrix synthesis adjacent to the lesion edge. CONCLUSIONS: In terms of clinical relevance, the use of sharp precise instruments during the surgical management of cartilage defects may be necessary to reduce cell death and promote matrix elaboration at the lesion edge in order to facilitate successful integration.
机译:目的:从细胞死亡,细胞增殖和基质合成方面,确定未成熟的软骨对尖锐和钝性创伤的反应。设计:在全部深度未成熟的牛关节软骨外植体上用曲华宁制作钝性伤口,用锋利的手术刀将其切成一半,穿过曲华因伤口中心,在同一植株上产生钝性和锋利的创伤。将外植体培养长达10天。在固定第2、5和10天之前,向培养基中添加10 microCi ml-1 35S硫酸盐,[3H]-脯氨酸或[3H]-胸苷24小时,以评估基质合成和细胞增殖。使用活/死标签评估细胞死亡。结果:在钝性伤口的情况下,在病灶边缘附近观察到一条细胞死亡带。显微放射自显影显示几乎没有放射性标记掺入,因此在该区域内没有新的基质合成或细胞增殖。相反,用锋利的手术刀制成的伤口显示出有限的细胞死亡,在所有时间点都在病变边缘附近掺入了放射性标记。这不仅表明了软骨细胞的增生和伤口边缘新基质的合成,而且还证实了病变边缘附近基质合成的上调。结论:就临床相关性而言,可能需要在外科手术中处理软骨缺损时使用精密的精密仪器,以减少细胞死亡并促进病变边缘的基质形成,以促进成功的融合。

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