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二维培养的真皮成纤维细胞的再生潜能与成纤维细胞衍生的组织球体的生物学特性的相关性。

Correlation of the regenerative potential of dermal fibroblasts in 2D culture with the biological properties of fibroblast-derived tissue spheroids.

机构信息

Center for Biomedical Engineering, National University of Science and Technology "MISIS", Moscow, Russia.

Human Stem Cells Institute, Moscow, Russia.

出版信息

Cell Tissue Res. 2022 Dec;390(3):453-464. doi: 10.1007/s00441-022-03690-1. Epub 2022 Sep 21.

Abstract

In situ 3D bioprinting is a new emerging therapeutic modality for treating human skin diseases. The tissue spheroids have been previously suggested as a powerful tool in rapidly expanding bioprinting technology. It has been demonstrated that the regenerative potential of human dermal fibroblasts could be quantitatively evaluated in 2D cell culture and confirmed after implantation in vivo. However, the development of unbiassed quantitative criteria of the regenerative potential of 3D tissue spheroids in vitro before their in situ bioprinting remains to be investigated. Here it has been demonstrated for the first time that specific correlations exist between the regenerative potential of human dermal fibroblasts cultured in vitro as 2D cell monolayer with biological properties of 3D tissue spheroids fabricated from these fibroblasts. In vitro assessment of biological properties included diameter, spreading and fusion kinetics, and biomechanical properties of 3D tissue spheroids. This comprehensive characterization could be used to predict tissue spheroids' regenerative potential in vivo.

摘要

原位 3D 生物打印是一种治疗人类皮肤疾病的新兴治疗方法。组织球状体以前被认为是快速扩展的生物打印技术的有力工具。已经证明,人类真皮成纤维细胞的再生潜力可以在 2D 细胞培养中进行定量评估,并在体内植入后得到证实。然而,在原位生物打印之前,开发用于体外 3D 组织球状体再生潜力的无偏定量标准仍然需要研究。本文首次证明,体外培养的 2D 细胞单层中的人真皮成纤维细胞的再生潜力与由这些成纤维细胞制成的 3D 组织球状体的生物学特性之间存在特定的相关性。体外评估的生物学特性包括 3D 组织球状体的直径、扩展和融合动力学以及生物力学特性。这种全面的特征描述可用于预测组织球状体在体内的再生潜力。

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