Citrulline counteracts overweight- and aging-related effects on adiponectin and leptin gene expression in rat white adipose tissue

Nolwenn Joffin , Anne-Marie Jaubert , Sylvie Durant , Robert Barouki , Claude Forest , Philippe Noirez
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引用次数: 12

Abstract

We recently demonstrated that citrulline (CIT) reduced the expression of inflammatory genes in cultured explants from retroperitoneal (RET) white adipose tissue (WAT) from young (2–4 months) but not old (25 months) rats. Here we show that in RET WAT from old rats and high-fat-diet-fed (HFD) young rats, the basal expression of the leptin gene was increased (275–345%) whereas that of the adiponectin gene was decreased (48–60%), when compared to those from control-diet-fed (CD) young rats. We show also that in RET WAT from old rats, a diet supplemented with CIT for 3 months reduced macrophage (F4/80, CD68) and inflammation (interleukin-6, tumor necrosis factor-α) marker genes 23–97%. CIT supplementation lowered leptin mRNA 62% and increased adiponectin mRNA 232%. In cultured explants of RET WAT from 4 month-old CD, 4 month-old HFD and 25-month-old CD rats, the exposure to 2.5 mmol/L CIT for 24 h up-regulated adiponectin gene expression 151%, 362% and 216% respectively. In contrast, leptin gene expression was down-regulated 66% selectively in CIT-treated explants from 25-month-old CD rats. These results further support the proposed beneficial effect of CIT to counteract the deleterious effects of aging and overweight on the metabolic, inflammatory and endocrine functions of WAT.

Abstract Image

Abstract Image

瓜氨酸抵消超重和衰老对大鼠白色脂肪组织中脂联素和瘦素基因表达的影响
我们最近证明瓜氨酸(CIT)降低了幼年(2-4个月)大鼠腹膜后(RET)白色脂肪组织(WAT)培养的外植体中炎症基因的表达,而不是老年(25个月)大鼠。本研究表明,与对照组大鼠相比,老龄大鼠和高脂饮食喂养(HFD)的年轻大鼠的RET WAT中,瘦素基因的基础表达增加(275-345%),而脂联素基因的基础表达减少(48-60%)。我们还发现,在老年大鼠的RET WAT中,添加CIT 3个月后,巨噬细胞(F4/80, CD68)和炎症(白细胞介素-6,肿瘤坏死因子-α)标记基因减少了23-97%。添加CIT可使瘦素mRNA降低62%,脂联素mRNA升高232%。在4月龄CD大鼠、4月龄HFD大鼠和25月龄CD大鼠的RET WAT外植体中,2.5 mmol/L CIT暴露24 h,脂联素基因表达分别上调151%、362%和216%。相比之下,25月龄CD大鼠经cit处理的外植体瘦素基因表达选择性下调66%。这些结果进一步支持了CIT在抵消衰老和超重对WAT代谢、炎症和内分泌功能的有害影响方面的有益作用。
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