首页> 外文期刊>Clinical Orthopaedics and Related Research >Cartilage matrix formation by bovine mesenchymal stem cells in three-dimensional culture is age-dependent.
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Cartilage matrix formation by bovine mesenchymal stem cells in three-dimensional culture is age-dependent.

机译:牛间充质干细胞在三维培养中形成的软骨基质是年龄依赖性的。

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BACKGROUND: Cartilage degeneration is common in the aged, and aged chondrocytes are inferior to juvenile chondrocytes in producing cartilage-specific extracellular matrix. Mesenchymal stem cells (MSCs) are an alternative cell type that can differentiate toward the chondrocyte phenotype. Aging may influence MSC chondrogenesis but remains less well studied, particularly in the bovine system. QUESTIONS/PURPOSES: The objectives of this study were (1) to confirm age-related changes in bovine articular cartilage, establish how age affects chondrogenesis in cultured pellets for (2) chondrocytes and (3) MSCs, and (4) determine age-related changes in the biochemical and biomechanical development of clinically relevant MSC-seeded hydrogels. METHODS: Native bovine articular cartilage from fetal (n = 3 donors), juvenile (n = 3 donors), and adult (n = 3 donors) animals was analyzed for mechanical and biochemical properties (n = 3-5 per donor). Chondrocyte and MSC pellets (n = 3 donors per age) were cultured for 6 weeks before analysis of biochemical content (n = 3 per donor). Bone marrow-derived MSCs of each age were also cultured within hyaluronic acid hydrogels for 3 weeks and analyzed for matrix deposition and mechanical properties (n = 4 per age). RESULTS: Articular cartilage mechanical properties and collagen content increased with age. We observed robust matrix accumulation in three-dimensional pellet culture by fetal chondrocytes with diminished collagen-forming capacity in adult chondrocytes. Chondrogenic induction of MSCs was greater in fetal and juvenile cell pellets. Likewise, fetal and juvenile MSCs in hydrogels imparted greater matrix and mechanical properties. CONCLUSIONS: Donor age and biochemical microenvironment were major determinants of both bovine chondrocyte and MSC functional capacity. CLINICAL RELEVANCE: In vitro model systems should be evaluated in the context of age-related changes and should be benchmarked against human MSC data.
机译:背景:软骨变性在老年人中很常见,并且在生产软骨特异性细胞外基质时,老年人的软骨细胞不及少年软骨细胞。间充质干细胞(MSCs)是一种可以分化为软骨细胞表型的细胞类型。衰老可能会影响MSC的软骨形成,但仍缺乏很好的研究,尤其是在牛系统中。问题/目的:这项研究的目的是(1)确认牛关节软骨中与年龄相关的变化,确定年龄如何影响(2)软骨细胞和(3)MSCs的培养沉淀中的软骨形成,以及(4)确定年龄-临床相关的MSC种子水凝胶的生化和生物力学发展中的相关变化。方法:分析了来自胎儿(n = 3个供体),幼年(n = 3个供体)和成年(n = 3个供体)动物的天然牛关节软骨的机械和生化特性(每个供体n = 3-5)。将软骨细胞和MSC沉淀物(每年龄n = 3个供体)培养6周,然后分析生化含量(每个供体n = 3)。还在透明质酸水凝胶中培养各个年龄的骨髓源MSC 3周,并分析其基质沉积和力学性能(每个年龄n = 4)。结果:随着年龄的增长,关节软骨的机械性能和胶原蛋白含量增加。我们观察到胎儿软骨细胞在三维沉淀培养中的强大基质积累,而成年软骨细胞的胶原蛋白形成能力降低。胎儿和幼稚细胞沉淀物中对MSC的软骨诱导更大。同样,水凝胶中的胎儿和青少年MSC具有更大的基质和机械性能。结论:供体年龄和生化微环境是牛软骨细胞和MSC功能能力的主要决定因素。临床意义:应在与年龄有关的变化的背景下评估体外模型系统,并应以人类MSC数据为基准。

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