Rozanov A Ia, Iakubik E Iu
Biokhimiia. 1985 Sep;50(9):1399-405.
Leucocytes adsorb by two orders of magnitude more labeled nicotinic acid ([14C]Na) than erythrocytes (as calculated on a per cell basis). The dynamics of binding of labeled vitamin by leucocytes is biphasic with the formation of predominantly [14C]nicotinic coenzymes already at very short time intervals after their injection to rats. Simultaneous injections of thiamine, riboflavin, lipoate and pantotenate increased the level of total labeled nicotinate metabolites in the blood and leucocytes 2.1- and 4.1-fold, respectively. The metabolism of subcutaneously injected [14C]NA was predominantly localized in the digestive system with a markedly pronounced two-phase dynamics of changes of the level of total labeled metabolites in the liver and small intestine concomitant with their secretion together with digestive juices. The functionally coupled vitamins injected simultaneously sharply increased the incorporation of the total label into liver tissues (up to 45% of the injected dose against 33% in the control) and the increase in the level of [14C]pyridine nucleotides. Similar effects were observed upon accumulation of labeled metabolites of [14C]NA in small intestine membranes. The increase in the maximal accumulation of nicotinate under effects of other group B vitamins in brain, heart and spleen tissues correlated with the dynamics, of their accumulation in the blood. In the postmaximal period in cardiac muscle and brain tissues, the second increase in the [14C]NA binding correlated with the dynamics of its accumulation in the digestive system.(ABSTRACT TRUNCATED AT 250 WORDS)
白细胞对标记烟酸([14C]Na)的吸附量比红细胞多两个数量级(以每个细胞计算)。白细胞结合标记维生素的动力学是双相的,在给大鼠注射后很短时间内就主要形成了[14C]烟酰辅酶。同时注射硫胺素、核黄素、硫辛酸和泛酸盐,分别使血液和白细胞中总标记烟酸代谢物水平提高了2.1倍和4.1倍。皮下注射[14C]NA的代谢主要集中在消化系统,肝脏和小肠中总标记代谢物水平变化呈现明显的双相动力学,且与它们随消化液分泌有关。同时注射功能偶联的维生素显著增加了肝脏组织中总标记物的掺入量(高达注射剂量的45%,而对照组为33%)以及[14C]吡啶核苷酸水平的升高。在小肠膜中[14C]NA标记代谢物积累时也观察到类似效果。其他B族维生素作用下,脑、心脏和脾脏组织中烟酸最大积累量的增加与其在血液中的积累动力学相关。在心肌和脑组织的最大积累期之后,[14C]NA结合的第二次增加与其在消化系统中的积累动力学相关。(摘要截断于250字)