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双亲高脂高糖饮食摄入对雄性后代生殖健康的炎症和氧化参数进行编程。

Parental High-Fat High-Sugar Diet Intake Programming Inflammatory and Oxidative Parameters of Reproductive Health in Male Offspring.

作者信息

Sertorio Marcela Nascimento, César Helena, de Souza Esther Alves, Mennitti Laís Vales, Santamarina Aline Boveto, De Souza Mesquita Leonardo Mendes, Jucá Andréa, Casagrande Breno Picin, Estadella Debora, Aguiar Odair, Pisani Luciana Pellegrini

机构信息

Biosciences Department, Institute of Health and Society, Federal University of São Paulo, Santos, Brazil.

Multidisciplinary Laboratory of Food and Health, School of Applied Sciences (FCA), University of Campinas, Limeira, Brazil.

出版信息

Front Cell Dev Biol. 2022 Jun 27;10:867127. doi: 10.3389/fcell.2022.867127. eCollection 2022.

Abstract

Parental nutrition can impact the health of future generations, programming the offspring for the development of diseases. The developing germ cells of the offspring could be damaged by the maternal or the paternal environment. The germ cells in development and their function could be affected by nutritional adversity and therefore, harm the health of subsequent generations. The paternal or maternal intake of high-fat diets has been shown to affect the reproductive health of male offspring, leading to imbalance in hypothalamic-pituitary-gonadal axis, testicular oxidative stress, low testosterone production, and changes in sperm count, viability, motility, and morphology. There is a need for studies that address the combined effects of diets with a high-fat and high-sugar (H) content by both progenitors on male reproduction. In this context, our study evaluated epigenetic parameters and the inflammatory response that could be associated to oxidative stress in testis and epididymis of adult offspring. 90 days-old male rats were divided according to the combination of the parental diet: CD (control paternal and maternal diet), HP (H paternal diet and control maternal diet), HM (H maternal diet and control paternal diet) and HPM (H paternal and maternal diet).We evaluated serum levels of testosterone and FSH; testicular gene expression of steroidogenic enzymes and and epigenetic markers , , , and ; testicular and epididymal levels of TNF-α, IL-6, IL-10, and IL-1β; testicular and epididymal activity of SOD, CAT, and GST; the oxidative markers MDA and CP; the daily sperm production, sperm transit time, and sperm morphology. Testicular epigenetic parameter, inflammatory response, oxidative balance, and daily sperm production of the offspring were affected by the maternal diet; paternal diet influenced serum testosterone levels, and lower daily sperm production was exacerbated by the interaction effect of both parental intake of high-fat high-sugar diet in the testis. There was isolated maternal and paternal effect in the antioxidant enzyme activity in the cauda epididymis, and an interaction effect of both parents in protein oxidative marker. Maternal effect could also be observed in cytokine production of cauda epididymis, and no morphological effects were observed in the sperm. The potential programming effects of isolated or combined intake of a high-fat high-sugar diet by the progenitors could be observed at a molecular level in the reproductive health of male offspring in early adulthood.

摘要

亲代营养会影响后代的健康,为后代的疾病发展进行编程。后代发育中的生殖细胞可能会受到母本或父本环境的损害。发育中的生殖细胞及其功能可能会受到营养逆境的影响,从而损害后代的健康。已表明父本或母本摄入高脂饮食会影响雄性后代的生殖健康,导致下丘脑 - 垂体 - 性腺轴失衡、睾丸氧化应激、睾酮分泌减少以及精子数量、活力、运动能力和形态的变化。需要开展研究来探讨双亲摄入高脂高糖(H)饮食对雄性生殖的综合影响。在此背景下,我们的研究评估了成年后代睾丸和附睾中与氧化应激相关的表观遗传参数和炎症反应。将90日龄雄性大鼠根据亲代饮食组合进行分组:CD(父本和母本均为对照饮食)、HP(父本为H饮食,母本为对照饮食)、HM(母本为H饮食,父本为对照饮食)和HPM(父本和母本均为H饮食)。我们评估了睾酮和促卵泡生成素的血清水平;类固醇生成酶以及表观遗传标记、、、和的睾丸基因表达;睾丸和附睾中肿瘤坏死因子 -α、白细胞介素 -6、白细胞介素 -10和白细胞介素 -1β的水平;睾丸和附睾中超氧化物歧化酶、过氧化氢酶和谷胱甘肽 -S-转移酶的活性;氧化标记物丙二醛和羰基蛋白;每日精子生成量、精子通过时间和精子形态。后代的睾丸表观遗传参数、炎症反应、氧化平衡和每日精子生成量受母本饮食影响;父本饮食影响血清睾酮水平,且双亲摄入高脂高糖饮食在睾丸中的相互作用效应会加剧每日精子生成量的降低。在附睾尾部的抗氧化酶活性方面存在母本和父本的单独效应,在蛋白质氧化标记物方面存在双亲的相互作用效应。在附睾尾部的细胞因子产生方面也可观察到母本效应,在精子中未观察到形态学效应。在成年早期雄性后代的生殖健康中,可在分子水平观察到亲代单独或联合摄入高脂高糖饮食的潜在编程效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb07/9271829/0ae937b8c8b6/fcell-10-867127-g001.jpg

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