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[来自成纤维细胞生长因子家族的非经典激素]

[Non-classical hormones from the fibroblast growth factor family].

作者信息

Gronskaia S A, Rusyaeva N V, Belaya Zh E, Melnichenko G A

机构信息

Endocrinology Research Centre.

出版信息

Probl Endokrinol (Mosk). 2024 Nov 4;70(5):23-33. doi: 10.14341/probl13441.

Abstract

Fibroblast growth factors (FGFs) are a group of signaling molecules named for their ability to promote the growth and proliferation of fibroblasts and various other cell types. Typically, FGFs exert their effects locally by binding to receptors within the tissues where they are synthesized. However, certain members of this family, such as FGF 19, FGF 21, and FGF 23, diverge from this pattern. Following synthesis, these FGFs enter the bloodstream and act on distant organs and tissues by binding to their receptors and associated cofactors, thereby classified as non-classical hormones within the FGF family.The biological functions of FGFs are diverse and contingent upon the specific receptors and cofactors involved in their signaling pathways. For instance, FGF 19 and FGF 21 play crucial roles in regulating glucose and lipid metabolism, whereas FGF 23 primarily influences phosphorus metabolism. Given their varied roles, FGFs present promising targets for therapeutic interventions and drug development.This review aims to consolidate current understanding of FGF family hormones, elucidating their biological impacts and exploring their potential applications as therapeutic targets.

摘要

成纤维细胞生长因子(FGFs)是一类信号分子,因其能够促进成纤维细胞及多种其他细胞类型的生长和增殖而得名。通常情况下,FGFs通过与它们合成部位的组织内的受体结合来发挥局部作用。然而,该家族的某些成员,如FGF 19、FGF 21和FGF 23,却偏离了这种模式。合成后,这些FGFs进入血液循环,通过与它们的受体及相关辅助因子结合作用于远处的器官和组织,因此被归类为FGF家族中的非经典激素。FGFs的生物学功能多种多样,取决于其信号通路中涉及的特定受体和辅助因子。例如,FGF 19和FGF 21在调节葡萄糖和脂质代谢中起关键作用,而FGF 23主要影响磷代谢。鉴于其作用多样,FGFs为治疗干预和药物开发提供了有前景的靶点。本综述旨在巩固目前对FGF家族激素的认识,阐明它们的生物学影响,并探索它们作为治疗靶点的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87c3/11610634/0dfbe0897d05/problendo-70-13441-g001.jpg

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