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首页> 外文期刊>Angewandte Chemie >Controlled-Potential Electromechanical Reshaping of Cartilage
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Controlled-Potential Electromechanical Reshaping of Cartilage

机译:软骨控制潜在机电重塑

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摘要

An alternative to conventional "cut-and-sew" cartilage surgery, electromechanical reshaping (EMR) is a molecular-based modality in which an array of needle electrodes is inserted into cartilage held under mechanical deformation by a jig. Brief (ca.2min) application of an electrochemical potential at the water-oxidation limit results in permanent reshaping of the specimen. Highly sulfated glycosaminoglycans within the cartilage matrix provide structural rigidity to the tissue through extensive ionic-bonding networks; this matrix is highly permselective for cations. Our studies indicate that EMR results from electrochemical generation of localized, low-pH gradients within the tissue: fixed negative charges in the proteoglycan matrix are protonated, resulting in chemically induced stress relaxation of the tissue. Re-equilibration to physiological pH restores the fixed negative charges, and yields remodeled cartilage that retains a new shape approximated by the geometry of the reshaping jig.
机译:传统的“切割和缝制”软骨手术,机电重塑(EMR)是一种基于分子的模态,其中将针电极阵列插入通过夹具的机械变形下保持的软骨中。简介(CA.2min)在水氧化极限下施加电化学潜力导致标本的永久重塑。软骨基质内的高度硫酸化糖胺聚糖通过广泛的离子键合网络为组织提供结构刚性;该基质对阳离子具有高偏移。我们的研究表明,组织内局部化的低pH梯度的电化学产生产生的EMR:质子蛋白生成基质中的固定负电荷被质子化,导致组织的化学诱导应力松弛。重新平衡到生理pH恢复固定的负电荷,并产生重塑的软骨,其保留由重塑夹具的几何形状近似的新形状。

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