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Leptin as a Metabolic and Energy Homeostatic Hormone in Dairy Animals: A Review

机译:瘦素作为乳制品中的代谢和能量稳态激素:综述

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Leptin, a 16-kDa protein secreted from white adipocytes is involved in the regulation of feed intake, energy expenditure and whole-body energy balance in animals. The gene encoding leptin identified by positional cloning and in the mutation leading tothe profound obese phenotype of the ob/ob mouse. Exogenous administration of leptin to ob/ob mice significantly improved the reproductive and endocrine status, reduced feed intake and weight loss. The expression and secretion of leptin is highly correlated with body fat mass and adipocyte size. Cortisol and insulin are the potent stimulators of leptin expression, which is attenuated by (3-adrenergic agonists, cAMP and thiazolidinediones. Leptin circulates mainly in bound form with serum, which may regulate its half life and biological activity. Many of leptin’s effects on feed intake and energy expenditure are thought to be mediated centrally via neurotransmitters such as neuropeptide Y. Its peripheral effects include the regulation of insulin secretion by pancreatic beta cells and its action, besides energy metabolism in adipocytes and skeletal muscle. Leptin is thought to be a metabolic signal, which regulates effect of nutrition on reproductive functions. Leptin also plays a major role in haematopoiesis and in the anorexia accompanying an acute cytokine challenge. The profound effects of leptin on regulating energy balance make it a prime candidate for drug therapies for animals. However, the role of the leptin axis appears to be complex as leptin interacts with pathways in the central nervous system and through direct peripheral mechanisms. In this review, various aspects like the tissues in which leptin is synthesized, the mechanisms, which mediate leptin synthesis, the structure of leptin and understanding the role of leptin in the periphery etc., have been dealt with.
机译:瘦素是白脂肪细胞分泌的一种16 kDa的蛋白质,它参与调节动物的采食量,能量消耗和全身能量平衡。通过定位克隆和导致ob / ob小鼠肥胖表型的突变鉴定出编码瘦素的基因。向ob / ob小鼠外源施用瘦素可显着改善生殖和内分泌状态,减少采食量和体重减轻。瘦素的表达和分泌与体脂量和脂肪细胞大小高度相关。皮质醇和胰岛素是瘦素表达的有效刺激剂,其被(3-肾上腺素能激动剂,cAMP和噻唑烷二酮减弱)。瘦素主要与血清结合循环,可能调节其半衰期和生物学活性。许多瘦素对饲料的影响胰岛素的摄入和能量消耗被认为是通过神经递质(例如神经肽Y)来集中调节的,其外围作用包括胰腺β细胞对胰岛素分泌的调节及其作用,以及脂肪细胞和骨骼肌中的能量代谢。瘦素在血细胞生成和伴随急性细胞因子攻击的厌食症中也起着重要作用,瘦素对调节能量平衡的深远影响使其成为动物药物治疗的主要候选药物。 ,瘦素轴的作用似乎很复杂,因为瘦素与通路相互作用n中枢神经系统并通过直接的外周机制。在这篇综述中,已经研究了各个方面,例如合成瘦素的组织,介导瘦素合成的机制,瘦素的结构以及了解瘦素在外周中的作用等。

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