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鸡原代软骨祖细胞的分离和微团培养用于软骨再生。

Isolation and Micromass Culturing of Primary Chicken Chondroprogenitor Cells for Cartilage Regeneration.

机构信息

Department of Anatomy, Histology and Embryology, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.

Department of Biophysics and Cell Biology, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.

出版信息

Curr Protoc. 2023 Jul;3(7):e835. doi: 10.1002/cpz1.835.

Abstract

Much of the skeletal system develops by endochondral ossification, a process that takes place in early fetal life. This makes the early stages of chondrogenesis, i.e., when chondroprogenitor mesenchymal cells differentiate to chondroblasts, challenging to study in vivo. In vitro methods for the study of chondrogenic differentiation have been available for some time. There is currently high interest in developing fine-tuned methodology that would allow chondrogenic cells to rebuild articular cartilage and restore joint functionality. The micromass culture system that relies on embryonic limb bud-derived chondroprogenitor cells is a popular method for the study of the signaling pathways that control the formation and maturation of cartilage. In this protocol, we describe a technique fine-tuned in our laboratory for culturing limb bud-derived mesenchymal cells from early-stage chick embryos in high density (Basic Protocol 1). We also provide a fine-tuned method for high-efficiency transient transfection of cells before plating using electroporation (Basic Protocol 2). In addition, protocols for histochemical detection of cartilage extracellular matrix using dimethyl methylene blue, Alcian blue, and safranin O are also provided (Basic Protocol 3 and Alternate Protocols 1 and 2, respectively). Finally, a step-by-step guide on a cell viability/proliferation assay using MTT reagent is also described (Basic Protocol 4). © 2023 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Micromass culture of chick embryonic limb bud-derived cells Basic Protocol 2: Transfection of cells with siRNA constructs using electroporation prior to micromass culturing Basic Protocol 3: Qualitative and quantitative assessment of cartilage matrix production using dimethyl methylene blue staining and image analysis Alternate Protocol 1: Qualitative assessment of cartilage matrix production using Alcian blue staining Alternate Protocol 2: Qualitative assessment of cartilage matrix production using safranin O staining Basic Protocol 4: Measurement of mitochondrial activity with the MTT assay.

摘要

骨骼系统的大部分都是通过软骨内骨化发育的,这个过程发生在胎儿早期。这使得研究软骨发生的早期阶段,即软骨祖细胞间充质细胞分化为软骨细胞,具有挑战性。目前,已有一段时间可用于研究软骨发生分化的体外方法。目前人们对开发精细的方法学非常感兴趣,这种方法学可以使软骨细胞重建关节软骨并恢复关节功能。依赖于胚胎肢芽来源的软骨祖细胞的微团培养系统是研究控制软骨形成和成熟的信号通路的常用方法。在本方案中,我们描述了在我们实验室中微调的技术,用于在高密度下培养来自早期鸡胚肢芽的间充质细胞(基本方案 1)。我们还提供了一种在铺板前使用电穿孔进行高效瞬时转染细胞的微调方法(基本方案 2)。此外,还提供了使用二甲花青蓝、阿利新蓝和番红 O 进行软骨细胞外基质的组织化学检测的方案(基本方案 3 和备选方案 1 和 2)。最后,还描述了使用 MTT 试剂进行细胞活力/增殖测定的分步指南(基本方案 4)。© 2023 作者。Wiley Periodicals LLC 出版的《当代方案》。基本方案 1:鸡胚肢芽来源细胞的微团培养基本方案 2:在微团培养前用电穿孔转染细胞 siRNA 构建体基本方案 3:使用二甲花青蓝染色和图像分析进行软骨基质产生的定性和定量评估备选方案 1:使用阿利新蓝染色进行软骨基质产生的定性评估备选方案 2:使用番红 O 染色进行软骨基质产生的定性评估基本方案 4:使用 MTT 测定法测量线粒体活性。

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