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    請使用永久網址來引用或連結此文件: https://ir.lib.ncu.edu.tw/handle/987654321/100902


    題名: Design of polymeric materials for culturing human pluripotent stem cells: Progress toward feeder-free and xeno-free culturing
    作者: 樋口亞紺;Higuchi, Akon;Ling, Qing-Dong;Kumar, S. Suresh;Munusamy, Murugan;Alarfajj, Abdullah A.;Umezawa, Akihiro;Wu, Gwo-Jang
    貢獻者: 工學院化學工程與材料工程學系
    關鍵詞: Applied sciences;Biological and medical sciences;Biomaterial;Biomaterials;Biotechnology;Cell culture;Culture;Electrochemical machining;Embryonic stem cells;Eukaryotic cell cultures;Exact sciences and technology;Extracellular matrix;Fundamental and applied biological sciences. Psychology;General aspects;Human;Hydrogel;Methods. Procedures. Technologies;Microcapsule;Microcarrier;Organic polymers;Physicochemistry of polymers;Properties and characterization;Recombinant;Special properties (catalyst, reagent or carrier);Stem cells;Surgical implants;Three dimensional
    日期: 2014-01-01
    上傳時間: 2026-04-21 14:17:52 (UTC+8)
    出版者: Elsevier Ltd.;Kidlington: Elsevier Ltd
    摘要: 摘要: This review describes recent developments regarding the use of natural and synthetic polymers to support the propagation of human pluripotent stem cells (hPSCs), human embryonic stem cells (hESCs), and induced pluripotent stem cells (hiPSCs) while maintaining pluripotency in feeder-free and xeno-free cultures. The development of methods for culturing these cells without using mouse embryonic fibroblasts (MEFs) as a feeder layer will enable more reproducible culture conditions and reduce the risk of xenogenic contaminants, thus increasing the potential clinical applications of differentiated hPSCs. Human or recombinant fibronectin, laminin-511, and vitronectin, which are components of the extracellular matrix (ECM), have been used instead of Matrigel for the feeder-free growth of undifferentiated hPSCs. Successful hPSC cultures have been described for the following conditions: on oligopeptide-immobilized surfaces derived from vitronectin, on microcarriers prepared from synthetic polymers, and encapsulated within three-dimensional (3D) hydrogels composed of alginate and other hydrophilic natural polymers. Recently, synthetic biomaterials that allow hPSCs to maintain pluripotency by secreting endogenous ECM components have been designed. The combination of human ECM proteins or cell adhesion molecules (e.g., oligopeptides and poly-d-lysine) and synthetic biomaterials with well-designed surfaces and/or structures (e.g., scaffolds, hydrogels, microcarriers, microcapsules, or microfibers) in the presence of a chemically defined medium containing recombinant growth factors would offer a xeno-free alternative to feeder cells for culturing hPSCs and maintaining their pluripotency.
    出版者: Kidlington: Elsevier Ltd
    出版日期: 2014-07-01
    出處: Progress in Polymer Science, 2014-07, Vol.39 (7), p.1348-1374
    版權: 2014 Elsevier Ltd
    版權: 2015 INIST-CNRS
    識別號: ISSN: 0079-6700
    識別號: EISSN: 1873-1619
    識別號: DOI: 10.1016/j.progpolymsci.2014.01.002
    識別號: CODEN: PRPSB8
    顯示於類別:[化學工程與材料工程學系 ] 期刊論文

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