饮食中的omega-3脂肪酸和二十二碳六烯酸在视网膜和突触的杆状光感受器细胞中的积累。

N G Bazan, B L Scott
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引用次数: 0

摘要

二十二碳六烯酸(DHA)是omega-3脂肪酸家族的主要生物合成产物,独特地集中在视网膜和突触膜上。在围产期,当突触发生和光感受器的生物发生发生时,大量DHA的需求可能首先由胎盘满足,然后由母乳满足。亚麻酸(LLA)是DHA的前体,是新生小鼠胃内容物中最普遍的omega-3系列脂肪酸。在这项研究中,我们研究了放射性标记的LLA和DHA在发育中的产后小鼠腹腔注射的命运。结果表明,放射性标记的LLA被肝脏吸收,并合成了DHA;注射后72小时,约90%的标签转化为DHA。由于血浆中放射性标记的DHA的积累具有时间依赖性,而大脑和视网膜对LLA的早期摄取可以忽略不计,因此我们假设肝脏可能分泌含有DHA的脂蛋白,并且这一过程受到神经组织的调节。
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Dietary omega-3 fatty acids and accumulation of docosahexaenoic acid in rod photoreceptor cells of the retina and at synapses.

Docosahexaenoic acid (DHA), the major biosynthetic product of the omega-3 family of fatty acids, is uniquely concentrated in the retina and synaptic membranes. In the perinatal period of life, when the bulk of synaptogenesis and photoreceptor biogenesis takes place, large requirements of DHA may be met first by the placenta and then by maternal milk. Linolenic acid (LLA), the precursor of DHA, is the most prevalent fatty acid of the omega-3 series in the stomach contents of newborn mice. In this study we have investigated the fate of radiolabeled LLA and DHA injected intraperitoneally in developing postnatal mouse. Our results show that radiolabeled LLA was taken up by the liver and DHA was synthesized; at 72 hrs post-injection about 90% of the label had been converted to DHA. Since there was a time-dependent buildup of radiolabeled DHA in blood plasma with negligible early uptake of LLA by the brain and retina, we hypothesize that the liver may secrete lipoproteins containing DHA and that this process is regulated by the nervous tissue.

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