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在维生素A边缘性缺乏条件下饲养的新生大鼠中,补充维生素A可使视黄酯的流动从外周器官转向中枢器官。

Vitamin A supplementation redirects the flow of retinyl esters from peripheral to central organs of neonatal rats raised under vitamin A-marginal conditions.

作者信息

Hodges Joanna K, Tan Libo, Green Michael H, Ross A Catharine

机构信息

Department of Nutritional Sciences, The Pennsylvania State University, University Park, PA.

Department of Nutritional Sciences, The Pennsylvania State University, University Park, PA

出版信息

Am J Clin Nutr. 2017 May;105(5):1110-1121. doi: 10.3945/ajcn.116.149039. Epub 2017 Mar 15.

Abstract

Vitamin A (VA; retinol) supplementation is used to reduce child mortality in countries with high rates of malnutrition. Existing research suggests that neonates (<1 mo old) may have a limited capacity to store VA in organs other than the liver; however, knowledge about VA distribution and kinetics in individual, nonhepatic organs is limited. We examined retinol uptake and turnover in nonhepatic organs, including skin, brain, and adipose tissue, in neonatal rats without and after VA supplementation. Sprague-Dawley neonatal rats ( = 104) were nursed by mothers fed a VA-marginal diet (0.35 mg retinol/kg diet) and treated on postnatal day 4 with an oral dose of either VA (6 μg retinyl palmitate/g body weight) or canola oil (control), both containing 1.8 μCi of [H]retinol. Subsequently, pups ( = 4 · group · time) were killed at 13 different times from 30 min to 24 d after dosing. The fractional and absolute transfer of chylomicron retinyl esters (CM-REs), retinol bound to retinol-binding protein (RBP-ROH), and total retinol were estimated in WinSAAM software. VA supplementation redirected the flow of CM-REs from peripheral to central organs and accumulated mainly in the liver. The RBP-ROH released from the liver was acquired mainly by the peripheral tissues but not retained efficiently, causing repeated recycling of retinol between plasma and tissues (541 compared with 5 times in the supplemented group and control group, respectively) and its rapid turnover in all organs, except the brain and white adipose tissue. Retinol stores in the liver lasted for ∼2 wk before being gradually transferred to other organs. VA supplementation administered in a single high dose during the first month after birth is readily acquired but not retained efficiently in peripheral tissues of neonatal rats, suggesting that a more frequent, lower-dose supplementation may be necessary to maintain steady VA concentrations in rapidly developing neonatal tissues.

摘要

在营养不良率高的国家,补充维生素A(VA;视黄醇)可降低儿童死亡率。现有研究表明,新生儿(<1月龄)在肝脏以外的器官中储存VA的能力可能有限;然而,关于VA在个体非肝脏器官中的分布和动力学的知识有限。我们研究了补充VA前后新生大鼠非肝脏器官(包括皮肤、大脑和脂肪组织)中的视黄醇摄取和周转情况。将104只斯普拉格-道利新生大鼠由喂食VA边缘饮食(0.35毫克视黄醇/千克饮食)的母鼠哺育,并在出生后第4天口服给予VA(6微克棕榈酸视黄酯/克体重)或菜籽油(对照组),二者均含有1.8微居里的[H]视黄醇。随后,在给药后30分钟至24天的13个不同时间点处死幼崽(每组每次4只)。在WinSAAM软件中估计乳糜微粒视黄酯(CM-REs)、与视黄醇结合蛋白结合的视黄醇(RBP-ROH)和总视黄醇的分数和绝对转移量。补充VA使CM-REs的流动从外周器官转向中心器官,并主要在肝脏中积累。从肝脏释放的RBP-ROH主要被外周组织摄取,但未有效保留,导致视黄醇在血浆和组织之间反复循环(补充组和对照组分别为541次和5次),并且在除大脑和白色脂肪组织外的所有器官中其周转迅速。肝脏中的视黄醇储备持续约2周,然后逐渐转移到其他器官。出生后第一个月单次高剂量给予VA很容易被新生大鼠的外周组织摄取,但未有效保留,这表明可能需要更频繁、低剂量的补充以在快速发育的新生组织中维持稳定的VA浓度。

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