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大分子拥挤效应通过加速功能性且真正三维的细胞组装微组织的发育,变革了再生医学。

Macromolecular crowding transforms regenerative medicine by enabling the accelerated development of functional and truly three-dimensional cell assembled micro tissues.

作者信息

De Pieri Andrea, Korntner Stefanie H, Capella-Monsonis Hector, Tsiapalis Dimitrios, Kostjuk Sergei V, Churbanov Semyon, Timashev Peter, Gorelov Alexander, Rochev Yuri, Zeugolis Dimitrios I

机构信息

Regenerative, Modular & Developmental Engineering Laboratory (REMODEL), Biomedical Sciences Building, National University of Ireland Galway (NUI Galway), Galway, Ireland; Science Foundation Ireland (SFI) Centre for Research in Medical Devices (CÚRAM), Biomedical Sciences Building, National University of Ireland Galway (NUI Galway), Galway, Ireland; Proxy Biomedical Ltd., Spiddal, Galway, Ireland.

Regenerative, Modular & Developmental Engineering Laboratory (REMODEL), Biomedical Sciences Building, National University of Ireland Galway (NUI Galway), Galway, Ireland; Science Foundation Ireland (SFI) Centre for Research in Medical Devices (CÚRAM), Biomedical Sciences Building, National University of Ireland Galway (NUI Galway), Galway, Ireland.

出版信息

Biomaterials. 2022 Aug;287:121674. doi: 10.1016/j.biomaterials.2022.121674. Epub 2022 Jul 9.

Abstract

Scaffold-free in vitro organogenesis exploits the innate ability of cells to synthesise and deposit their own extracellular matrix to fabricate tissue-like assemblies. Unfortunately, cell-assembled tissue engineered concepts require prolonged ex vivo culture periods of very high cell numbers for the development of a borderline three-dimensional implantable device, which are associated with phenotypic drift and high manufacturing costs, thus, hindering their clinical translation and commercialisation. Herein, we report the accelerated (10 days) development of a truly three-dimensional (338.1 ± 42.9 μm) scaffold-free tissue equivalent that promotes fast wound healing and induces formation of neotissue composed of mature collagen fibres, using human adipose derived stem cells seeded at only 50,000 cells/cm on an poly (N-isopropylacrylamide-co-N-tert-butylacrylamide (PNIPAM86-NTBA14) temperature-responsive electrospun scaffold and grown under macromolecular crowding conditions (50 μg/ml carrageenan). Our data pave the path for a new era in scaffold-free regenerative medicine.

摘要

无支架体外器官发生利用细胞合成和沉积自身细胞外基质以制造组织样组件的固有能力。不幸的是,细胞组装的组织工程概念需要对非常高数量的细胞进行长时间的体外培养,以开发出勉强可植入的三维装置,这与表型漂移和高制造成本相关,因此阻碍了它们的临床转化和商业化。在此,我们报告了一种真正的三维(338.1±42.9μm)无支架组织等效物的加速(10天)开发,该组织等效物促进快速伤口愈合并诱导由成熟胶原纤维组成的新组织形成,使用仅以50,000个细胞/cm接种在聚(N-异丙基丙烯酰胺-co-N-叔丁基丙烯酰胺(PNIPAM86-NTBA14)温度响应电纺支架上并在大分子拥挤条件(50μg/ml角叉菜胶)下生长的人脂肪来源干细胞。我们的数据为无支架再生医学的新时代铺平了道路。

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