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High Resistance of the Mechanical Properties of the Chondrocyte Pericellular Matrix to Proteoglycan Digestion by Chondroitinase Aggrecanase or Hyaluronidase

机译:软骨细胞软骨素或透明质酸酶的软骨细胞周细胞基质的机械特性对蛋白聚糖消化的高抗性

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摘要

In articular cartilage, the extracellular matrix (ECM) and chondrocyte-associated pericellular matrix (PCM) are characterized by a high concentration of proteoglycans (PGs) and their associated glycosaminoglycans (GAGs). These molecules serve important biochemical, structural, and biomechanical roles in the tissue and differences in their regional distributions suggest that different GAG/PG species contribute to the specific biomechanical properties of the ECM and PCM. The objective of this study was to investigate region-specific contributions of aggrecan, chondroitin and dermatan sulfate, and hyaluronan to the micromechanical properties of articular cartilage PCM and ECM in situ. Cryosections of porcine cartilage underwent digestion with ADAMTS-4, chondroitinase ABC, bacterial hyaluronidase or human leukocyte elastase. Guided by immunofluorescence for type VI collagen, AFM stiffness mapping was used to evaluate the elastic properties of matched PCM and ECM regions in paired control and digested cartilage sections. These methods were used to test the hypotheses that specific enzymatic digestion of GAGs or PGs would reduce both PCM and ECM elastic moduli. Elastase, which digests a number of PGs, some types of collagen, and non-collagenous proteins, was used as a positive control. ECM elastic moduli were significantly reduced by all enzyme treatments. However, PCM micromechanical properties were unaffected by enzymatic digestion of aggrecan, chondroitin/dermatan sulfate, and hyaluronan but were significantly reduced by 24% following elastase digestion. Our results provide new evidence for high resistance of PCM micromechanical properties to PG digestion and suggest a potential role for elastase in the degradation of the ECM and PCM.
机译:在关节软骨中,细胞外基质(ECM)和软骨细胞相关的细胞周围基质(PCM)的特征是高浓度的蛋白聚糖(PG)及其相关的糖胺聚糖(GAG)。这些分子在组织中起重要的生化,结构和生物力学作用,其区域分布的差异表明,不同的GAG / PG物种有助于ECM和PCM的特定生物力学特性。这项研究的目的是调查聚集蛋白聚糖,软骨素和硫酸皮肤素以及透明质酸对关节软骨PCM和ECM的微机械性能的区域特定贡献。用ADAMTS-4,软骨素酶ABC,细菌透明质酸酶或人白细胞弹性蛋白酶消化猪软骨的冷冻切片。通过免疫荧光对VI型胶原的指导,使用AFM刚度图评估配对对照和消化软骨切片中相匹配的PCM和ECM区域的弹性特性。这些方法用于检验以下假设:GAG或PG的特定酶消化会同时降低PCM和ECM弹性模量。消化许多PG,某些类型的胶原蛋白和非胶原蛋白的弹性蛋白酶被用作阳性对照。所有酶处理均可显着降低ECM弹性模量。但是,PCM的微机械性能不受聚集蛋白聚糖,软骨素/硫酸皮肤素和透明质酸的酶促消化的影响,但在弹性蛋白酶消化后却显着降低了24%。我们的结果为PCM的微机械特性对PG消化的高耐受性提供了新的证据,并提出了弹性蛋白酶在ECM和PCM降解中的潜在作用。

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