Department of Respiratory and Critical Care Medicine, Research Laboratory of the Respiratory System Diseases, 1st Affiliated Hospital, Fujian Medical University, Fuzhou, Fujian 350005, China.
Department of Laboratory Medicine, School of Medical Technology and Engineering, Fujian Medical University, Fuzhou, Fujian 350004, China.
Oxid Med Cell Longev. 2022 Jan 29;2022:4107433. doi: 10.1155/2022/4107433. eCollection 2022.
Stem cells have the ability of self-replication and multidirectional differentiation, but the mechanism of how stem cells "maintain" this ability and how to "decide" to give up this state and differentiate into cells with specific functions is still unknown. The Nobel Prize in physiology and medicine in 2021 was awarded to "temperature and tactile receptor," which made the pain receptor TRPV1-calcitonin gene-related peptide (CGRP) pathway active again. The activation and blocking technology of CGRP has been applied to many clinical diseases. CGRP gene has complex structure and transcription process, with multiple methylation and other modification sites. It has been considered as a research hotspot and difficulty since its discovery. Drug manipulation of TRPV1 and inhibition of CGRP might improve metabolism and prolong longevity. However, whether the TRPV1-neuropeptide-CGRP pathway is directly or indirectly involved in stem cell self-replication and multidirectional differentiation is unclear. Recent studies have found that CGRP is closely related to the migration and differentiation of tumor stem cells, which may be realized by turning off or turning on the CGRP gene expression in stem cells and activating a variety of ways to regulate stem cell niches. In this study, we reviewed the advances in researches concentrated on the biological effects of CGRP as a new endogenous switching of cell stemness.
干细胞具有自我复制和多向分化的能力,但干细胞如何“维持”这种能力以及如何“决定”放弃这种状态并分化为具有特定功能的细胞的机制尚不清楚。2021 年诺贝尔生理学或医学奖授予了“温度和触觉感受器”,这再次使疼痛感受器 TRPV1-降钙素基因相关肽(CGRP)途径活跃。CGRP 的激活和阻断技术已应用于许多临床疾病。CGRP 基因具有复杂的结构和转录过程,具有多个甲基化和其他修饰位点。自发现以来,它一直被认为是研究的热点和难点。TRPV1 药物操作和 CGRP 抑制可能改善代谢并延长寿命。然而,TRPV1-神经肽-CGRP 途径是否直接或间接地参与干细胞的自我复制和多向分化尚不清楚。最近的研究发现,CGRP 与肿瘤干细胞的迁移和分化密切相关,这可能是通过关闭或开启干细胞中的 CGRP 基因表达并激活各种调节干细胞龛的方式来实现的。在这项研究中,我们回顾了集中研究 CGRP 作为一种新的细胞干性内源性开关的生物学作用的研究进展。