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Piezo1机械敏感通道的激活抑制甲状腺眼病中的脂肪生成。

Stimulation of Piezo1 Mechanosensitive Channels Inhibits Adipogenesis in Thyroid Eye Disease.

作者信息

Galgoczi Erika, Orsos Istvan, Molnar Zsanett, Ujhelyi Bernadett, Steiber Zita, Szabo Laszlo, Dienes Beatrix, Csernoch Laszlo, Nagy Endre V, Katko Monika

机构信息

Division of Endocrinology, Department of Internal Medicine, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary.

Department of Ophthalmology, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary.

出版信息

J Clin Endocrinol Metab. 2025 Aug 7;110(9):2584-2594. doi: 10.1210/clinem/dgae899.

Abstract

CONTEXT

Increased orbital tissue volume due to matrix expansion, orbital fibroblast (OF) proliferation, and adipocyte differentiation are the hallmarks of thyroid eye disease (TED). Their combination with the presence of hyaluronan-bound excess water in the constrains of the bony orbit results in increased intraorbital pressure. High intraorbital pressure, along with changes in the mechanical properties of orbital tissues, may lead to the activation of mechanosensitive receptors. The expression and role of the Piezo1 mechanoreceptor has not been investigated in TED.

OBJECTIVE

We aimed to verify the expression of Piezo1 in OFs, and to study the effect of in vitro Piezo1 activation by its synthetic agonist Yoda1 on adipocyte differentiation.

METHODS

OF cultures established using orbital connective tissues from patients with TED and controls were studied in the presence or absence of adipogenic stimuli. Piezo1 expression was confirmed by Western Blot and immunofluorescent imaging, and its function was verified by intracellular Ca2+ measurement. Adipogenic differentiation was characterized using Oil Red O staining for lipid accumulation, real-time polymerase chain reaction for gene and Western blot for protein expressions indicative in adipogenesis.

RESULTS

OFs express functional Piezo1 channels. Differentiation into adipocytes is inherent to TED OFs. Piezo1 activation by Yoda1 inhibits the expressions of early (CEBPβ, CEBPδ) and main (PPARγ, CEBPα) transcription factors, and the terminal marker FABP4 during adipogenesis, resulting in markedly lower intracytoplasmic lipid accumulation.

CONCLUSION

Piezo1 channels are expressed and functional in OFs. Modeling orbital pressure by in vitro Piezo1 activation reduces de novo adipogenesis of OFs derived from TED orbits.

摘要

背景

基质扩张、眶成纤维细胞(OF)增殖和脂肪细胞分化导致的眶组织体积增加是甲状腺眼病(TED)的特征。它们与透明质酸结合的过量水分在骨性眼眶的限制下共同导致眶内压升高。高眶内压,连同眶组织力学性能的变化,可能导致机械敏感受体的激活。Piezo1机械感受器在TED中的表达和作用尚未得到研究。

目的

我们旨在验证Piezo1在OF中的表达,并研究其合成激动剂Yoda1对体外Piezo1激活对脂肪细胞分化的影响。

方法

使用来自TED患者和对照的眼眶结缔组织建立的OF培养物在有或没有成脂刺激的情况下进行研究。通过蛋白质印迹和免疫荧光成像确认Piezo1表达,并通过细胞内Ca2+测量验证其功能。使用油红O染色检测脂质积累、实时聚合酶链反应检测基因表达以及蛋白质印迹检测成脂过程中指示性蛋白质表达来表征成脂分化。

结果

OF表达功能性Piezo1通道。向脂肪细胞的分化是TED来源的OF所固有的。Yoda1激活Piezo1可抑制成脂过程中早期(CEBPβ、CEBPδ)和主要(PPARγ、CEBPα)转录因子以及终末标志物FABP4的表达,导致胞浆内脂质积累明显降低。

结论

Piezo1通道在OF中表达且具有功能。通过体外激活Piezo1模拟眼眶压力可减少TED眼眶来源的OF的新生脂肪生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f335/12342356/d6d4a014af4c/dgae899f1.jpg

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