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犬间充质干细胞的软骨生成、成骨生成和脂肪生成:一项生化、形态学和超微结构研究。

Chondrogenesis, osteogenesis and adipogenesis of canine mesenchymal stem cells: a biochemical, morphological and ultrastructural study.

作者信息

Csaki C, Matis U, Mobasheri A, Ye H, Shakibaei M

机构信息

Institute of Anatomy, Musculoskeletal Research Group, Ludwig-Maximilian-University Munich, Pettenkoferstrasse 11, 80336, Munich, Germany.

出版信息

Histochem Cell Biol. 2007 Dec;128(6):507-20. doi: 10.1007/s00418-007-0337-z. Epub 2007 Oct 6.

Abstract

Musculoskeletal diseases with osteochondrotic articular cartilage defects, such as osteoarthritis, are an increasing problem for humans and companion animals which necessitates the development of novel and improved therapeutic strategies. Canine mesenchymal stem cells (cMSCs) offer significant promise as a multipotent source for cell-based therapies and could form the basis for the differentiation and cultivation of tissue grafts to replace damaged tissue. However, no comprehensive analysis has been undertaken to characterize the ultrastructure of in vitro differentiated cMSCs. The main goal of this paper was to focus on cMSCs and to analyse their differentiation capacity. To achieve this aim, bone marrow cMSCs from three canine patients were isolated, expanded in monolayer culture and characterized with respect to their ability for osteogenic, adipogenic and chondrogenic differentiation capacities. cMSCs showed proliferative potential and were capable of osteogenic, adipogenic and chondrogenic differentiation. cMSCs treated with the osteogenic induction medium differentiated into osteoblasts, produced typical bone matrix components, beta1-integrins and upregulated the osteogenic specific transcription factor Cbfa-1. cMSCs treated with the adipogenic induction medium showed typical adipocyte morphology, produced adiponectin, collagen type I and beta1-integrins, and upregulated the adipogenic specific transcription factor PPAR-gamma. cMSCs treated with the chondrogenic induction medium exhibited a round to oval shape, produced a cartilage-specific extracellular matrix, beta1-integrins and upregulated the chondrogenic specific transcription factor Sox9. These results demonstrate, at the biochemical, morphological and ultrastructural levels, the multipotency of cMSCs and thus highlight their potential therapeutic value for cell-based tissue engineering.

摘要

诸如骨关节炎等伴有骨软骨性关节软骨缺损的肌肉骨骼疾病,对于人类和伴侣动物而言,正成为一个日益严重的问题,这就需要开发新颖且改良的治疗策略。犬间充质干细胞(cMSCs)作为基于细胞的治疗的多能来源具有巨大潜力,并且可为组织移植物的分化和培养奠定基础,以替代受损组织。然而,尚未进行全面分析来表征体外分化的cMSCs的超微结构。本文的主要目标是聚焦于cMSCs并分析其分化能力。为实现这一目标,从三只犬患者中分离出骨髓cMSCs,在单层培养中进行扩增,并就其成骨、成脂和成软骨分化能力进行表征。cMSCs显示出增殖潜力,并且能够进行成骨、成脂和成软骨分化。用成骨诱导培养基处理的cMSCs分化为成骨细胞,产生典型的骨基质成分、β1整合素,并上调成骨特异性转录因子Cbfa-1。用成脂诱导培养基处理的cMSCs呈现典型的脂肪细胞形态,产生脂联素、I型胶原和β1整合素,并上调成脂特异性转录因子PPAR-γ。用软骨诱导培养基处理的cMSCs呈现圆形至椭圆形,产生软骨特异性细胞外基质、β1整合素,并上调软骨特异性转录因子Sox9。这些结果在生化、形态和超微结构水平上证明了cMSCs的多能性,从而突出了它们在基于细胞的组织工程中的潜在治疗价值。

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