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内星状细胞的放射状形态和增殖受成纤维细胞生长因子受体 1 和高脂肪饮食的影响。

Tanycyte radial morphology and proliferation are influenced by fibroblast growth factor receptor 1 and high-fat diet.

机构信息

Department of Biology, University of Louisiana at Lafayette, Lafayette, Louisianafs, USA.

出版信息

Eur J Neurosci. 2024 Sep;60(5):5000-5018. doi: 10.1111/ejn.16473. Epub 2024 Aug 1.

Abstract

Fibroblast growth factor receptor 1 (FGFR1) is a widely expressed, membrane-bound receptor that transduces extracellular signals from FGF ligands and cadherins, resulting in intracellular signals influencing cellular growth, proliferation, calcium, and transcription. FGF21 and FGF2 stimulate the proliferation of tanycytes, specialized radial astrocytes along the ventricle of the hypothalamus, and influence metabolism. Tanycytes are in a privileged position between the cerebrospinal fluid, the blood supply in the median eminence, and neurons within nuclei in the hypothalamus. The effect of FGFR1 signaling upon tanycyte morphology and metabolism was examined in adult mice with conditional deletion of the Fgfr1 gene using the Fgfr1; Nestin-Cre+ line. Loss of Fgfr1 resulted in shorter β tanycytes along the medial eminence. Control Fgfr1 littermates and Fgfr1, Nestin-Cre+ (Fgfr1 cKO) knockout mice were placed on a 1-month long high-fat diet (HFD) or a normal-fat diet (NFD), to investigate differences in body homeostasis and tanycyte morphology under an obesity inducing diet. We found that FGFR1 is a vital contributor to tanycyte morphology and quantity and that it promotes stem cell maintenance in the hypothalamus and hippocampal dentate gyrus. The Fgfr1 cKO mice developed impaired tolerance to a glucose challenge test on a HFD without gaining more weight than control mice. The combination of HFD and loss of Fgfr1 gene resulted in altered β and α tanycyte morphology, and reduced stem cell numbers along the third ventricle of the hypothalamus and hippocampus.

摘要

成纤维细胞生长因子受体 1(FGFR1)是一种广泛表达的膜结合受体,可将 FGF 配体和钙粘蛋白的细胞外信号转导至细胞内,从而影响细胞生长、增殖、钙和转录的信号。FGF21 和 FGF2 刺激室管膜下区特化的放射状星形胶质细胞(tanycyte)的增殖,并影响代谢。Tanycyte 位于脑脊液、正中隆起的血液供应和下丘脑核内神经元之间的有利位置。通过使用 Fgfr1;Nestin-Cre+ 系对成年小鼠进行条件性 Fgfr1 基因缺失,研究了 FGFR1 信号对 tanycyte 形态和代谢的影响。Fgfr1 缺失导致沿正中隆起的 β tanycyte 变短。对照 Fgfr1 同窝仔鼠和 Fgfr1,Nestin-Cre+(Fgfr1 cKO)敲除小鼠接受 1 个月的高脂肪饮食(HFD)或正常脂肪饮食(NFD),以研究肥胖诱导饮食下体内平衡和 tanycyte 形态的差异。我们发现 FGFR1 是 tanycyte 形态和数量的重要贡献者,它促进下丘脑和海马齿状回中的干细胞维持。Fgfr1 cKO 小鼠在 HFD 上进行葡萄糖挑战测试时,耐受性受损,而体重增加并不比对照小鼠多。HFD 和 Fgfr1 基因缺失的组合导致 β 和 α tanycyte 形态改变,以及下丘脑和海马第三脑室的干细胞数量减少。

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