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Multiscale characterization of a chimeric biomimetic polypeptide for stem cell culture

机译:用于干细胞培养的嵌合仿生多肽的多尺度表征

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Mesenchymal stem cells have attracted great interest in the field of tissue engineering and regenerative medicine because of their multipotentiality and relative ease of isolation from adult tissues. The medical application of this cellular system requires the inclusion in a growth and delivery scaffold that is crucial for the clinical effectiveness of the therapy. In particular, the ideal scaffolding material should have the needed porosity and mechanical strength to allow a good integration with the surrounding tissues, but it should also assure high biocompatibility and full resorbability. For such a purpose, protein-inspired biomaterials and, in particular, elastomeric-derived polypeptides are playing a major role, in which they are expected to fulfil many of the biological and mechanical requirements. A specific chimeric protein, designed starting from elastin, resilin and collagen sequences, was characterized over different length scales. Single-molecule mechanics, aggregation properties and compatibility with human mesenchymal stem cells were tested, showing that the engineered compound is a good candidate as a stem cell scaffold to be used in tissue engineering applications.
机译:间充质干细胞由于其多能性和从成人组织中分离的相对容易性,在组织工程和再生医学领域引起了极大的兴趣。这种细胞系统的医学应用需要包括对于治疗的临床有效性至关重要的生长和输送支架。尤其是,理想的脚手架材料应具有所需的孔隙率和机械强度,以使其与周围组织良好融合,但也应确保高度的生物相容性和充分的吸收性。为此目的,受蛋白质启发的生物材料,尤其是弹性体衍生的多肽起着主要作用,其中它们有望满足许多生物学和机械要求。从弹性蛋白,弹性蛋白和胶原蛋白序列开始设计的特定嵌合蛋白在不同的长度范围内进行了表征。测试了单分子力学,聚集特性以及与人间充质干细胞的相容性,表明该工程化合物是用于组织工程应用的干细胞支架的良好候选者。

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