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三维人类神经干细胞模型模拟硫酸乙酰肝素蛋白聚糖和神经龛。

Three-Dimensional Human Neural Stem Cell Models to Mimic Heparan Sulfate Proteoglycans and the Neural Niche.

机构信息

Genomics Research Centre, Stem Cell and Neurogenesis Group, Centre for Genomics and Personalised Health, School of Biomedical Science, Queensland University of Technology, Kelvin Grove, Queensland, Australia.

出版信息

Semin Thromb Hemost. 2021 Apr;47(3):308-315. doi: 10.1055/s-0041-1724117. Epub 2021 Apr 1.

Abstract

Heparan sulfate proteoglycans (HSPGs) are a diverse family of polysaccharides, consisting of a core protein with glycosaminoglycan (GAG) side chains attached. The heterogeneous GAG side-chain carbohydrates consist of repeating disaccharides, with each side chain possessing a specific sulfation pattern. It is the variable sulfation pattern that allows HSPGs to interact with numerous ligands including growth factors, cytokines, chemokines, morphogens, extracellular matrix (ECM) glycoproteins, collagens, enzymes, and lipases. HSPGs are classified according to their localization within an individual cell, and include the membrane bound syndecans (SDCs) and glypicans (GPCs), with perlecan, agrin, and type-XVIII collagen secreted into the ECM. The stem cell niche is defined as the environment that circumscribes stem cells when they are in their naïve state, and includes the ECM, which provides a complex contribution to various biological processes during development and throughout life. These contributions include facilitating cell adhesion, proliferation, migration, differentiation, specification, and cell survival. In contrast, HSPGs play an anticoagulant role in thrombosis through being present on the luminal surface of cells, while also playing roles in the stimulation and inhibition of angiogenesis, highlighting their varied and systemic roles in cellular control. To fully understand the complexities of cell-cell and cell-matrix interactions, three-dimensional (3D) models such as hydrogels offer researchers exciting opportunities, such as controllable 3D in vitro environments, that more readily mimic the in vivoin situ microenvironment. This review examines our current knowledge of HSPGs in the stem cell niche, human stem cell models, and their role in the development of 3D models that mimic the in vivo neural ECM.

摘要

硫酸乙酰肝素蛋白聚糖 (HSPGs) 是一个多样化的多糖家族,由带有糖胺聚糖 (GAG) 侧链的核心蛋白组成。不均一的 GAG 侧链碳水化合物由重复的二糖组成,每个侧链都具有特定的硫酸化模式。正是这种可变的硫酸化模式使 HSPGs 能够与许多配体相互作用,包括生长因子、细胞因子、趋化因子、形态发生素、细胞外基质 (ECM) 糖蛋白、胶原蛋白、酶和脂肪酶。HSPGs 根据其在单个细胞内的定位进行分类,包括膜结合的 syndecans (SDCs) 和 glypicans (GPCs),以及分泌到 ECM 中的 perlecan、agrin 和 type-XVIII 胶原蛋白。干细胞龛被定义为当干细胞处于原始状态时包围它们的环境,包括 ECM,它在发育过程中和整个生命周期中为各种生物学过程提供了复杂的贡献。这些贡献包括促进细胞黏附、增殖、迁移、分化、特化和细胞存活。相比之下,HSPGs 通过存在于细胞的腔表面在血栓形成中发挥抗凝血作用,同时在刺激和抑制血管生成中发挥作用,突出了它们在细胞控制中的多样化和系统作用。为了充分理解细胞-细胞和细胞-基质相互作用的复杂性,水凝胶等 3D 模型为研究人员提供了令人兴奋的机会,例如可控的 3D 体外环境,更易于模拟体内原位微环境。本综述考察了我们目前对干细胞龛中的 HSPGs、人类干细胞模型及其在模拟体内神经 ECM 的 3D 模型开发中的作用的了解。

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