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鉴定人膝关节中超薄的骨软骨界面组织具有特定的纳米结构。

Identification of an Ultrathin Osteochondral Interface Tissue with Specific Nanostructure at the Human Knee Joint.

机构信息

Dr. Li Dak Sum & Yip Yio Chin Center for Stem Cells and Regenerative Medicine & Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310058, China.

Zhejiang University-University of Edinburgh Institute, Zhejiang University School of Medicine, Zhejiang University, Hangzhou 314400, China.

出版信息

Nano Lett. 2022 Mar 23;22(6):2309-2319. doi: 10.1021/acs.nanolett.1c04649. Epub 2022 Mar 3.

Abstract

Cartilage adheres to subchondral bone via a specific osteochondral interface tissue where forces are transferred from soft cartilage to hard bone without conferring fatigue damage over a lifetime of load cycles. However, the fine structure and mechanical properties of the osteochondral interface tissue remain unclear. Here, we identified an ultrathin ∼20-30 μm graded calcified region with two-layered micronano structures of osteochondral interface tissue in the human knee joint, which exhibited characteristic biomolecular compositions and complex nanocrystals assembly. Results from finite element simulations revealed that within this region, an exponential increase of modulus (3 orders of magnitude) was conducive to force transmission. Nanoscale heterogeneity in the hydroxyapatite, coupled with enrichment of elastic-responsive protein-titin, which is usually present in muscle, endowed the osteochondral tissue with excellent mechanical properties. Collectively, these results provide novel insights into the potential design for high-performance interface materials for osteochondral interface regeneration.

摘要

软骨通过特定的软骨下骨界面组织附着在骨上,在一生的负荷循环中,力从软软骨传递到硬骨,而不会产生疲劳损伤。然而,软骨下骨界面组织的精细结构和力学性能仍不清楚。在这里,我们在人类膝关节中鉴定出一个超微的约 20-30μm 的分级钙化区域,具有软骨下骨界面组织的双层微纳结构,表现出特征性的生物分子组成和复杂的纳米晶体组装。有限元模拟的结果表明,在该区域内,模量呈指数级增加(3 个数量级)有利于力的传递。纳米级别的羟基磷灰石异质性,加上富含弹性响应蛋白-原肌球蛋白的存在,通常存在于肌肉中,赋予了软骨下骨组织优异的力学性能。总的来说,这些结果为软骨下骨界面再生的高性能界面材料的潜在设计提供了新的见解。

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