Neonatal overnutritional programming impairs the hypophagia and neuron activation induced by acute lipopolysaccharide in adult male rats

吞咽不足 后脑区 内分泌学 内科学 下丘脑 孤束 脂多糖 弓状核 脑干 外侧下丘脑 c-Fos公司 营养过剩 弧(几何) 生物 医学 中枢神经系统 基因表达 营养不良 几何学 基因 生物化学 数学
作者
Ana Luiza Machado Wunderlich,Larissa Rugila S. Stopa,Andressa Busetti Martins,Camila F. de Souza,Érica de Oliveira Monteiro,Danielly D Aguiar,Rhauany Pelisson Guergolette,Polyana Keiko Shishido,Cássia Thaïs Bussamra Vieira Zaia,Ernane Torres Uchôa
出处
期刊:Nutritional Neuroscience [Taylor & Francis]
卷期号:27 (7): 734-744 被引量:2
标识
DOI:10.1080/1028415x.2023.2250967
摘要

Nutritional status during critical windows in early development can challenge metabolic functions and physiological responses to immune stress in adulthood, such as the systemic inflammation induced by lipopolysaccharide (LPS). The aim of this study was to investigate the long-term effects of post-natal over- and undernutrition on the anorexigenic effect of LPS and its association with neuronal activation in the brainstem and hypothalamus of male rats. Animals were raised in litters of 3 (small - SL), 10 (normal - NL), or 16 (large - LL) pups per dam. On post-natal day 60, male rats were treated with LPS (500 µg/Kg) or vehicle for the evaluation of food intake and c-Fos expression in the area postrema (AP), nucleus of solitary tract (NTS), and paraventricular (PVN), arcuate (ARC), ventromedial (VMH), and dorsomedial (DMH) nuclei of the hypothalamus. SL, NL, and LL animals showed a decreased food consumption after LPS treatment. In under- and normonourished animals, peripheral LPS induced an increase in neuronal activation in the brainstem, PaV, PaMP, and ARC and a decrease in the number of c-Fos-ir neurons in the DMH. Overnourished rats showed a reduced hypophagic response, lower neuron activation in the NTS and PaMP, and no response in the DMH induced by LPS. These results indicate that early nutritional programming displays different responses to LPS, by means of neonatal overnutrition decreasing LPS-mediated anorexigenic effect and neuronal activation in the NTS and hypothalamic nuclei.

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