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一种利用重组人骨形态发生蛋白-2的化学动力学效应将软骨细胞接种到溶剂保存的人半月板上的新技术。

A new technique for seeding chondrocytes onto solvent-preserved human meniscus using the chemokinetic effect of recombinant human bone morphogenetic protein-2.

作者信息

Minehara Hiroaki, Urabe Ken, Naruse Kouji, Mehlhorn Alexander T, Uchida Kentaroo, Südkamp Norbert P, Itoman Moritoshi

机构信息

Department of Orthopaedic Surgery, Kitasato University School of Medicine, 1-15-1 Kitasato, Sagamihara, Japan.

出版信息

Cell Tissue Bank. 2011 Aug;12(3):199-207. doi: 10.1007/s10561-010-9185-5. Epub 2010 Jun 17.

Abstract

Many investigators are currently studying the use of decellularized tissue allografts from human cadavers as scaffolds onto which patients' cells could be seeded, or as carriers for genetically engineered cells to aid cell transplantation. However, it is difficult to seed cells onto very dense regular connective tissue which has few interstitial spaces. Here, we discuss the development of a chemotactic cell seeding technique using solvent-preserved human meniscus. A chemokinetic response to recombinant human bone morphogenetic protein-2 (rhBMP-2) was observed in a monolayer culture of primary chondrocytes derived from femoral epiphyseal cartilage of 2-day-old rats. The rhBMP-2 significantly increased their migration upto 10 ng/ml in a dose-dependent manner. When tested with solvent-preserved human meniscus as a scaffold, which has few interstitial spaces, rhBMP-2 was able to induce chondrocytes to migrate into the meniscus. After a 3-week incubation, newly-formed cartilaginous extracellular matrix was synthesized by migrated chondrocytes throughout the meniscus, down to a depth of 3 mm. These findings demonstrate that rhBMP-2 may be a natural chemokinetic factor in vivo, which induces migration of proliferative chondrocytes into the narrow interfibrous spaces. Our results suggest a potential application of rhBMP-2 for the designed distribution of chondrocytes into a scaffold to be used for tissue engineering.

摘要

目前,许多研究人员正在研究使用来自人类尸体的脱细胞组织同种异体移植物作为支架,在其上接种患者的细胞,或者作为基因工程细胞的载体以辅助细胞移植。然而,将细胞接种到间隙空间很少的非常致密的规则结缔组织上是困难的。在此,我们讨论一种使用溶剂保存的人半月板的趋化性细胞接种技术的发展。在源自2日龄大鼠股骨骨骺软骨的原代软骨细胞的单层培养中观察到对重组人骨形态发生蛋白-2(rhBMP-2)的化学动力学反应。rhBMP-2以剂量依赖性方式显著增加其迁移,直至10 ng/ml。当用间隙空间很少的溶剂保存的人半月板作为支架进行测试时,rhBMP-2能够诱导软骨细胞迁移到半月板中。经过3周的孵育,迁移的软骨细胞在整个半月板中合成了新形成的软骨细胞外基质,深度达3 mm。这些发现表明,rhBMP-2可能是体内一种天然的化学动力学因子,可诱导增殖性软骨细胞迁移到狭窄的纤维间隙中。我们的结果表明rhBMP-2在将软骨细胞设计分布到用于组织工程的支架中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4de/3135822/6ccd1c939974/10561_2010_9185_Fig1_HTML.jpg

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