NEFA公司
卵泡液
内科学
内分泌学
生物
卵泡发生
卵泡期
卵母细胞
窦卵泡
毛囊
卵泡
卵子发生
男科
脂肪酸
胚胎发生
胰岛素
胚胎
医学
生物化学
细胞生物学
作者
Sara Valckx,Veerle Van Hoeck,M. Álvarez,V. Maillo,Angela Patricia López‐Cardona,Alfonso Gutiérrez‐Adán,Mario Berth,R. Cortvrindt,P.E.J. Bols,Jo Leroy
标识
DOI:10.1016/j.fertnstert.2014.08.018
摘要
To study how long-term elevated non-esterified fatty acid (NEFA) concentrations, typical in metabolic disorders such as obesity or type 2 diabetes, affect murine follicular development, follicle quality, and subsequent oocyte developmental competence in vitro.Experimental study.In vitro culture setting.Female and male 13-day old, B6CBAF1 mice of proven fertility were sacrificed for harvesting ovaries and epididymal sperm, respectively.Early secondary murine follicles were cultured in vitro in the presence of NEFAs until the antral stage (12 days). Treatments consisted of one or a mixture of NEFAs (stearic acid [SA], palmitic acid [PA], oleic acid [OA]) in physiological (basal) or pathological (high SA, high OA, high NEFA) concentrations.Follicular development; follicle and oocyte diameters; secretion of progesterone, estradiol, and inhibin B; and luteinized granulosa cell gene expression patterns were investigated. Oocytes from NEFA-exposed follicles were fertilized in vitro, and presumptive zygotes were cultured until the blastocyst stage.Exposure to high SA reduced follicle diameters and day-12 antrum formation. Elevated NEFA concentrations changed luteinized granulosa cell messenger-ribonucleic acid abundance of genes related to energy/fatty acid/steroid metabolism, apoptosis, and oxidative stress. High NEFA and high SA treatments increased progesterone synthesis, compared with high OA follicles. Oocyte developmental competence was substantially reduced in oocytes retrieved from high OA-, high SA-, and high NEFA-exposed follicles compared with basal-treated follicles.This study showed, for the first time, that lipolysis-linked, elevated NEFA concentrations can potentially impair fertility, by altering follicular physiology and reducing oocyte developmental competence.
科研通智能强力驱动
Strongly Powered by AbleSci AI