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首页> 外文期刊>Tissue engineering, Part A >Serum- and growth-factor-free three-dimensional culture system supports cartilage tissue formation by promoting collagen synthesis via Sox9-Col2a1 interaction
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Serum- and growth-factor-free three-dimensional culture system supports cartilage tissue formation by promoting collagen synthesis via Sox9-Col2a1 interaction

机译:无血清和无生长因子的三维培养系统通过Sox9-Col2a1相互作用促进胶原蛋白合成,从而支持软骨组织的形成

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Objective: One of the factors preventing clinical application of regenerative medicine to degenerative cartilage diseases is a suitable source of cells. Chondrocytes, the only cell type of cartilage, grown in vitro under culture conditions to expand cell numbers lose their phenotype along with the ability to generate hyaline cartilaginous tissue. In this study we determine that a serum- and growth-factor-free three-dimensional (3D) culture system restores the ability of the passaged chondrocytes to form cartilage tissue in vitro, a process that involves sox9. Methods: Bovine articular chondrocytes were passaged twice to allow for cell number expansion (P2) and cultured at high density on 3D collagen-type-II-coated membranes in high glucose content media supplemented with insulin and dexamethasone (SF3D). The cells were characterized after monolayer expansion and following 3D culture by flow cytometry, gene expression, and histology. The early changes in signaling transduction pathways during redifferentiation were characterized. Results: The P2 cells showed a progenitor-like antigen profile of 99% CD44+ and 40% CD105 + and a gene expression profile suggestive of interzone cells. P2 in SF3D expressed chondrogenic genes and accumulated extracellular matrix. Downregulating insulin receptor (IR) with HNMPA-(AM3) or the PI-3/AKT kinase pathway (activated by insulin treatment) with Wortmannin inhibited collagen synthesis. HNMPA-(AM3) reduced expression of Col2, Col11, and IR genes as well as Sox6 and -9. Co-immunoprecipitation and chromatin immunoprecipitation analyses of HNMPA-(AM3)-treated cells showed binding of the coactivators Sox6 and Med12 with Sox9 but reduced Sox9-Col2a1 binding. Conclusions: We describe a novel culture method that allows for increase in the number of chondrocytes and promotes hyaline-like cartilage tissue formation in part by insulin-mediated Sox9-Col2a1 binding. The suitability of the tissue generated via this approach for use in joint repair needs to be examined in vivo.
机译:目的:阻碍再生医学临床应用于退行性软骨疾病的因素之一是合适的细胞来源。软骨细胞是软骨的唯一细胞类型,在培养条件下体外生长以扩大细胞数量,失去了其表型以及生成透明软骨组织的能力。在这项研究中,我们确定无血清和无生长因子的三维(3D)培养系统可恢复传代的软骨细胞在体外形成软骨组织的能力,这一过程涉及sox9。方法:将牛关节软骨细胞传代两次以允许细胞数目扩展(P2),并在补充有胰岛素和地塞米松(SF3D)的高葡萄糖含量培养基中的3D胶原II型膜上高密度培养。单层扩增后,通过流式细胞术,基因表达和组织学进行3D培养,对细胞进行了表征。表征了在再分化过程中信号转导通路的早期变化。结果:P2细胞显示出99%CD44 +和40%CD105 +的祖细胞样抗原谱,并暗示区域间细胞的基因表达谱。 SF3D中的P2表达软骨形成基因并积累细胞外基质。用HMTPA-(AM3)下调胰岛素受体(IR)或用Wortmannin下调PI-3 / AKT激酶途径(通过胰岛素处理激活)可抑制胶原蛋白的合成。 HNMPA-(AM3)减少了Col2,Col11和IR基因以及Sox6和-9的表达。 HNMPA-(AM3)处理的细胞的共免疫沉淀和染色质免疫沉淀分析表明,共激活因子Sox6和Med12与Sox9结合,但减少了Sox9-Col2a1结合。结论:我们描述了一种新颖的培养方法,该方法可以增加软骨细胞的数量,并部分地通过胰岛素介导的Sox9-Col2a1结合促进透明质样软骨组织的形成。通过这种方法产生的组织用于关节修复的适合性需要在体内进行检查。

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