Boraldi Federica, Lofaro Francesco Demetrio, Bonacorsi Susanna, Mazzilli Alessia, Garcia-Fernandez Maria, Quaglino Daniela
Department of Life Science, University of Modena and Reggio Emilia, 41125 Modena, Italy.
Department of Human Physiology, Institute of Biomedical Investigation (IBIMA), University of Málaga, 29010 Málaga, Spain.
Biomedicines. 2024 Jul 17;12(7):1586. doi: 10.3390/biomedicines12071586.
Fibroblasts are typical mesenchymal cells widely distributed throughout the human body where they (1) synthesise and maintain the extracellular matrix, ensuring the structural role of soft connective tissues; (2) secrete cytokines and growth factors; (3) communicate with each other and with other cell types, acting as signalling source for stem cell niches; and (4) are involved in tissue remodelling, wound healing, fibrosis, and cancer. This review focuses on the developmental heterogeneity of dermal fibroblasts, on their ability to sense changes in biomechanical properties of the surrounding extracellular matrix, and on their role in aging, in skin repair, in pathologic conditions and in tumour development. Moreover, we describe the use of fibroblasts in different models (e.g., in vivo animal models and in vitro systems from 2D to 6D cultures) for tissue bioengineering and the informative potential of high-throughput assays for the study of fibroblasts under different disease contexts for personalized healthcare and regenerative medicine applications.
成纤维细胞是典型的间充质细胞,广泛分布于人体各处,它们(1)合成并维持细胞外基质,确保软结缔组织的结构作用;(2)分泌细胞因子和生长因子;(3)相互之间以及与其他细胞类型进行通讯,充当干细胞微环境的信号源;(4)参与组织重塑、伤口愈合、纤维化和癌症。本综述重点关注真皮成纤维细胞的发育异质性、它们感知周围细胞外基质生物力学特性变化的能力,以及它们在衰老、皮肤修复、病理状况和肿瘤发展中的作用。此外,我们描述了成纤维细胞在不同模型(例如体内动物模型和从二维到六维培养的体外系统)中用于组织生物工程的情况,以及高通量检测在不同疾病背景下研究成纤维细胞以用于个性化医疗保健和再生医学应用的信息潜力。