Ascensión Alex M, Araúzo-Bravo Marcos J, Izeta Ander
Tissue Engineering Group, Biodonostia Health Research Institute, 20014 Donostia-San Sebastián, Spain.
Computational Biology and Systems Biomedicine Group, Biodonostia Health Research Institute, 20014 Donostia-San Sebastián, Spain.
Life (Basel). 2022 Jan 4;12(1):67. doi: 10.3390/life12010067.
Skin is a complex and heterogeneous organ at the cellular level. This complexity is beginning to be understood through the application of single-cell genomics and computational tools. A large number of datasets that shed light on how the different human skin cell types interact in homeostasis-and what ceases to work in diverse dermatological diseases-have been generated and are publicly available. However, translation of these novel aspects to the clinic is lacking. This review aims to summarize the state-of-the-art of skin biology using single-cell technologies, with a special focus on skin pathologies and the translation of mechanistic findings to the clinic. The main implications of this review are to summarize the benefits and limitations of single-cell analysis and thus help translate the emerging insights from these novel techniques to the bedside.
在细胞水平上,皮肤是一个复杂且异质性的器官。通过单细胞基因组学和计算工具的应用,这种复杂性正逐渐被人们所理解。大量揭示不同人类皮肤细胞类型在稳态中如何相互作用以及在各种皮肤病中哪些环节出现问题的数据集已经产生并可公开获取。然而,这些新发现尚未转化应用于临床。本综述旨在总结利用单细胞技术的皮肤生物学研究现状,特别关注皮肤病理学以及将机制研究结果转化应用于临床的情况。本综述的主要意义在于总结单细胞分析的优势和局限性,从而有助于将这些新技术带来的新见解转化应用于临床实践。