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首页> 外文期刊>Current Medicinal Chemistry >Mesenchymal Stem Cells in Cartilage Repair: State of the Art and Methods to monitor Cell Growth, Differentiation and Cartilage Regeneration
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Mesenchymal Stem Cells in Cartilage Repair: State of the Art and Methods to monitor Cell Growth, Differentiation and Cartilage Regeneration

机译:软骨修复中的间充质干细胞:监测细胞生长,分化和软骨再生的最新技术和方法

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Degenerative joint diseases caused by rheumatism, joint dysplasia or traumata are particularly widespread in countries with high life expectation. Although there is no absolutely convincing cure available so far, hyaline cartilage and bone defects resulting from joint destruction can be treated today by appropriate transplantations. Recently, procedures were developed based on autologous chondrocytes from intact joint areas. The chondrocytes are expanded in cell culture and subsequently transplanted into the defect areas of the affected joints. However, these autologous chondrocytes are characterized by low expansion capacity and the synthesis of extracellular matrix of poor functionality and quality. An alternative approach is the use of adult mesenchymal stem cells (MSCs). These cells effectively expand in 2D culture and have the potential to differentiate into various cell types, including chondrocytes. Furthermore, they have the ability to synthesize extracellular matrix with properties mimicking closely the healthy hyaline joint cartilage.nnBeside a more general survey of the architecture of hyaline cartilage, its composition and the pathological processes of joint diseases, we will describe here which advances were achieved recently regarding the development of closed, aseptic bioreactors for the production of autologous grafts for cartilage regeneration based on MSCs. Additionally, a novel mathematical model will be presented that supports the understanding of the growth and differentiation of MSCs. It will be particularly emphasized that such models are helpful to explain the well-known fact that MSCs exhibit improved growth properties under reduced oxygen pressure and limited supply with nutrients.nnFinally, it will be comprehensively shown how different analytical methods can be used to characterize MSCs on different levels. Besides discussing methods for non-invasive monitoring and tracking of the cells and the determination of their elastic properties, mass spectrometric methods to evaluate the lipid compositions of cells will be highlighted.
机译:由风湿病,关节发育不良或创伤引起的退行性关节疾病在期望寿命长的国家中特别普遍。尽管目前尚无绝对令人信服的治疗方法,但如今可以通过适当的移植治疗因关节破坏而引起的透明软骨和骨缺损。最近,基于来自完整关节区域的自体软骨细胞开发了程序。软骨细胞在细胞培养中扩增,然后移植到受影响关节的缺损区域。然而,这些自体软骨细胞的特征在于低的扩增能力和功能和质量较差的细胞外基质的合成。另一种方法是使用成人间充质干细胞(MSC)。这些细胞可在2D培养物中有效扩增,并具有分化成各种细胞类型(包括软骨细胞)的潜力。此外,它们还具有合成细胞外基质的能力,其特性与健康的透明软骨关节软骨非常相似。nn除了对透明软骨的结构,其组成和关节疾病的病理过程进行更全面的调查外,我们还将在此描述取得了哪些进展最近关于开发封闭的无菌生物反应器以生产基于MSC的软骨再生自体移植物的研究。另外,将提出一种新颖的数学模型,该模型支持对MSC的生长和分化的理解。需要特别强调的是,这种模型有助于解释众所周知的事实,即在降低的氧气压力和有限的养分供应下,MSC的生长特性得到改善。最后,将全面展示如何使用不同的分析方法来表征MSC。在不同的水平上。除了讨论用于细胞的非侵入性监测和追踪方法及其弹性性质的确定之外,将着重介绍用于评估细胞脂质成分的质谱方法。

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