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首页> 外文期刊>Journal of biomedical materials research, Part A >Extracellular matrix particle–glycosaminoglycan composite hydrogels for regenerative medicine applications
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Extracellular matrix particle–glycosaminoglycan composite hydrogels for regenerative medicine applications

机译:细胞外基质颗粒 - 糖胺聚糖复合水凝胶进行再生药物应用

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Abstract Tissue extracellular matrix (ECM) is a complex material made up of fibrous proteins and ground substance (glycosaminoglycans, GAGs) that are secreted by cells. ECM contains important biological cues that modulate cell behaviors, and it also serves as a structural scaffold to which cells can adhere. For clinical applications, where immune rejection is a constraint, ECM can be processed using decellularization methods intended to remove cells and donor antigens from tissue or organs, while preserving native biological cues essential for cell growth and differentiation. In this study, a decellularized ECM‐based composite hydrogel was formulated by using modified GAGs that covalently bind tissue particles. These GAG–ECM composite hydrogels combine the advantages of solid decellularized ECM scaffolds and pepsin‐digested ECM hydrogels by facilitating ECM hydrogel formation without a disruptive enzymatic digestion process. Additionally, engineered hydrogels can contain more than one type of ECM (from bone, fat, liver, lung, spleen, cartilage, or brain), at various concentrations. These hydrogels demonstrated tunable gelation kinetics and mechanical properties, offering the possibility of numerous in vivo and in vitro applications with different property requirements. Retained bioactivity of ECM particles crosslinked into this hydrogel platform was confirmed by the variable response of stem cells to different types of ECM particles with respect to osteogenic differentiation in vitro , and bone regeneration in vivo . ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 147–159, 2018.
机译:摘要组织细胞外基质(ECM)是由细胞分泌的纤维蛋白质和地面物质(糖胺聚糖,GAG)组成的复杂材料。 ECM包含调节细胞行为的重要生物学线索,它还用作细胞可以粘附的结构支架。对于临床应用,如果免疫排斥是约束,可以使用旨在从组织或器官移除细胞和供体抗原的脱细胞化方法来处理ECM,同时保留对细胞生长和分化必需的天然生物学提示。在该研究中,通过使用共价结合组织颗粒的改性的Gag来配制脱细胞基于ECM的复合水凝胶。这些GAG-ECM复合水凝胶通过促进ECM水凝胶形成而没有破坏性酶消化方法,将固体脱细胞化的ECM支架和胃蛋白酶消化的ECM水凝胶结合在一起。此外,工程化水凝胶可含有多种类型的ECM(来自骨,脂肪,肝,肺,脾,软骨或脑),在各种浓度下。这些水凝胶显示可调谐胶凝动力学和机械性能,提供了许多体内和体外应用的可能性,具有不同的性能要求。通过干细胞对不同类型的ECM颗粒的可变响应和体内骨再生,通过干细胞对不同类型的ECM颗粒的可变响应来确认ECM颗粒的保留生物活性。还2017年Wiley期刊,Inc。J生物保罗A部分:106A:147-159,2018。

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