首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Recycling of carbon into lipids synthesized de novo is a quantitatively important pathway of alpha-(U-13C)linolenate utilization in the developing rat brain.
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Recycling of carbon into lipids synthesized de novo is a quantitatively important pathway of alpha-(U-13C)linolenate utilization in the developing rat brain.

机译:将碳再循环到从头合成的脂质中是发育中的大鼠大脑中α-(U-13C)亚麻酸利用的定量重要途径。

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Docosahexaenoate is important for normal neural development. It can be derived from alpha-linolenate, but carbon from alpha-linolenate is also recycled into de novo lipid synthesis. The objective of this study was to quantify the amount of alpha-linolenate used to produce docosahexaenoate versus lipids synthesized de novo that accumulate in the brain of the developing rat. A physiological dose of carbon-13-labeled alpha-linolenate was injected into the stomachs of mother-reared 6-day-old rat pups. Total lipids of brain, liver, and gut were extracted from rats killed 3 h to 30 days after dosing. Carbon-13 enrichment was determined by isotope ratio mass spectrometry. Carbon-13-enriched alpha-linolenate was not detected in the brain at any time point, and its levels in liver and gut exceeded detection limits at most time points, so tracer mass was quantified mainly for three end products--docosahexaenoate, palmitate, and cholesterol. Carbon-13-enriched cholesterol, palmitate, docosalphahexaenoate, and water-soluble metabolites were detected in brain, liver, and gut Enrichment (in micrograms of carbon-13 per organ) in brain cholesterol exceeded that in brain docosahexaenoate by four- to 16-fold over the duration of the study. Enrichment in brain palmitate exceeded that in brain docosahexaenoate by three- to 30-fold over the first 8 days of the study. These results indicate that carbon from alpha-linolenate is not exclusively conserved for synthesis of longer n-3 polyunsaturates but is a readily accessible carbon source for de novo lipogenesis during early brain development in the suckling rat. Owing to a high rate of beta-oxidation and carbon recycling, dependence on alpha-linolenate as the sole source of docosahexaenoate may incur a potential risk of providing insufficient docosahexaenoate for the developing brain.
机译:二十二碳六烯酸酯对于正常的神经发育很重要。它可以衍生自α-亚麻酸,但来自α-亚麻酸的碳也可以循环到新的脂质合成中。这项研究的目的是量化用于生产二十二碳六烯酸酯的α-亚麻酸相对于从头合成的脂质在发育中的大鼠大脑中积累的量。将生理剂量的碳13标记的α-亚油酸酯注射到母亲饲养的6天大的幼仔的胃中。从给药后3小时至30天处死的大鼠中提取脑,肝和肠的总脂质。碳13富集通过同位素比质谱法确定。在任何时间点都未在大脑中检测到富含碳13的α-亚油酸酯,并且在大多数时间点其肝脏和肠道中的碳含量都超过了检测极限,因此示踪剂质量主要针对三种终产物进行了定量:十二碳六烯酸酯,棕榈酸酯,和胆固醇。在大脑,肝脏和肠道中检测到了富含碳13的胆固醇,棕榈酸酯,二十二碳六烯酸酯和水溶性代谢产物,脑胆固醇的富集(每个器官碳13毫克微克)超过了二十二碳六烯酸酯的含量。在研究期间进行折叠。在研究的前8天中,脑棕榈酸酯的富集超出了二十二碳六烯酸酯的富集3到30倍。这些结果表明,来自α-亚麻酸的碳并非仅被保留用于更长的n-3多不饱和酸酯的合成,而是在乳鼠早期大脑发育过程中从头产生脂肪的容易获得的碳源。由于β-氧化和碳循环的速率很高,因此依赖α-亚麻酸作为二十二碳六烯酸酯的唯一来源可能会导致潜在的风险,即无法为发育中的大脑提供足够的二十二碳六烯酸酯。

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