Suppr超能文献

甜菜碱改善高糖浓度诱导的小鼠颗粒细胞类固醇生成和细胞凋亡功能障碍。

Betaine ameliorates impaired steroidogenesis and apoptosis in mice granulosa cells induced by high glucose concentration.

机构信息

Department of Basic Sciences, Division of Biochemistry and Molecular Biology, Faculty of Veterinary Medicine, Shahid Chamran University of Ahvaz , Ahvaz, Iran.

Department of Basic Sciences, Faculty of Veterinary Medicine, Shahid Chamran University of Ahvaz , Ahvaz, Iran.

出版信息

Syst Biol Reprod Med. 2020 Dec;66(6):400-409. doi: 10.1080/19396368.2020.1811423. Epub 2020 Sep 27.

Abstract

Betaine is a bioactive peptide whose beneficial effects on diabetes complications have been considered, previously. The present study aimed to investigate the possible protective effects of betaine against hyperglycemia-induced steroidogenesis impairment and apoptosis in mice granulosa cells. Ovarian granulosa cells were isolated from C57/BL6 mice and cultured in steroidogenesis medium (SM) containing 30 ng/ml FSH and 0.5 µM testosterone. The cells were cultured in SM containing low (5 mM) or high (30 mM) glucose concentrations for 24 h in the presence or absence of betaine (5 mM). At the end of the experiment, estradiol and progesterone were measured by ELISA in the culture medium. Expression of apoptosis and steroidogenesis associated genes and caspase-3 activity were determined by qRT-PCR and colorimetric assays, respectively. Exposure of mice granulosa cells to high glucose concentration inhibited the steroidogenesis by decreasing estradiol and progesterone secretion and downregulation of steroidogenesis-related genes including , and . Betaine treatment could ameliorate the steroidogenesis impairment at molecular and biochemical levels. High glucose concentration also enhanced apoptosis in mice granulosa cells that were characterized by elevation of caspase-3 activity, upregulation of gene and downregulation of gene. Betaine treatment could attenuate the apoptotic-related changes induced by high glucose concentration in granulosa cells. According to the results of the present study, betaine could ameliorate the adverse effects of hyperglycemia on the physiological function of ovarian granulosa cells. The results highlight the potential role of betaine for the intervention of ovarian dysfunction in diabetic patients. : AABA: Betaine-α-aminobutyric acid; AGEs: Advanced glycation end products; Associated X; bcl2: B-cell lymphoma 2; AMPK: AMP-activated protein kinase; BHMT: Betaine homocysteine methyltransferase; C/EBP: CCAAT-enhancer-binding proteins; Cyp11a1: Cholesterol side-chain cleavage cytochrome P450; : Cytochrome P450 aromatase; DM: Diabetes mellitus; E2: Estradiol; ERS: Endoplasmic reticulum stress; GCs: Granulosa cells; GLUT: Glucose transporter; FSH: Follicle-stimulating hormone; 3βHSD: 3β-hydroxysteroid dehydrogenase; IL-1β: interleukin-1ß; LH: Luteinizing hormone; MDCK: Madin-Darby Canine Kidney cell; MT: Methionine synthase, MTT: 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide; NLRP3: NLR Family Pyrin Domain Containing 3; NF-κB: Nuclear factor κB; P4: Progesterone; ROS: Reactive oxygen species; SGLT: Sodium dependent glucose transporter; SLC7A6: Solute Carrier Family 7 Member 6; StAR: Steroidogenic acute regulatory protein; STZ: Streptozotocin; Tumor necrosis factor α: TNF-α; TXNIP: Thioredoxin interacting protein.

摘要

甜菜碱是一种具有生物活性的肽,其对糖尿病并发症的有益作用此前已被研究。本研究旨在探讨甜菜碱对高糖诱导的小鼠颗粒细胞类固醇生成障碍和细胞凋亡的可能保护作用。从 C57/BL6 小鼠中分离卵巢颗粒细胞,并在含有 30ng/ml FSH 和 0.5µM 睾酮的类固醇生成培养基 (SM) 中培养。将细胞在含有低 (5mM) 或高 (30mM) 葡萄糖浓度的 SM 中培养 24 小时,存在或不存在甜菜碱 (5mM)。实验结束时,通过 ELISA 法测定培养基中的雌二醇和孕酮。通过 qRT-PCR 和比色测定法分别测定凋亡和类固醇生成相关基因的表达和 caspase-3 活性。

高葡萄糖浓度抑制类固醇生成,降低雌二醇和孕酮分泌,并下调类固醇生成相关基因,包括 、 和 ,从而抑制小鼠颗粒细胞的类固醇生成。甜菜碱处理可在分子和生化水平上改善类固醇生成障碍。高葡萄糖浓度还增强了小鼠颗粒细胞的凋亡,表现为 caspase-3 活性升高、 基因上调和 基因下调。甜菜碱处理可减轻高葡萄糖浓度诱导的颗粒细胞中与凋亡相关的变化。

根据本研究的结果,甜菜碱可改善高血糖对卵巢颗粒细胞生理功能的不良影响。结果强调了甜菜碱在干预糖尿病患者卵巢功能障碍方面的潜在作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验