Hernell O, Bläckberg L, Chen Q, Sternby B, Nilsson A
Department of Pediatrics, University of Umeå, Sweden.
J Pediatr Gastroenterol Nutr. 1993 May;16(4):426-31. doi: 10.1097/00005176-199305000-00014.
Long-chain polyunsaturated (LCP) fatty acids derived from linoleic (18:2 n-6) and alpha-linolenic (18:3 n-3) acids are considered essential nutrients in preterm infants. The efficiency by which such fatty acids are released as absorbable products from triacylglycerol was explored in vitro using rat chylomicron triacylglycerol as substrate. When incubated with purified human pancreatic colipase-dependent lipase and colipase, arachidonic acid (20:4 n-6) was released less efficiently than linoleic acid from such triacylglycerol. This difference was not seen when purified human milk bile salt-stimulated lipase (BSSL) was incubated with the triacylglycerol substrate, and it was almost abolished when colipase-dependent lipase (with colipase) and BSSL acted simultaneously, as they do in breast-fed infants. There was no difference in arachidonic acid and eicosapentaenoic acid (20:5 n-3) release rates with either colipase-dependent lipase or BSSL, albeit the release was more rapid with the milk enzyme than with colipase-dependent lipase. Again, the most efficient release as absorbable free fatty acids was achieved when the two lipases operated together. The relative resistance to hydrolysis of arachidonic acid and eicosapentaenoic acid by colipase-dependent lipase was best explained by the localization of the first double bond to the delta-5 position of the respective fatty acid. The results obtained suggest that BSSL is of importance for the efficient use of human milk LCP fatty acids.
源自亚油酸(18:2 n-6)和α-亚麻酸(18:3 n-3)的长链多不饱和(LCP)脂肪酸被认为是早产儿的必需营养素。利用大鼠乳糜微粒三酰甘油作为底物,在体外探究了此类脂肪酸从三酰甘油中释放为可吸收产物的效率。当与纯化的人胰脂肪酶依赖性脂肪酶和辅脂酶一起孵育时,从这种三酰甘油中释放花生四烯酸(20:4 n-6)的效率低于亚油酸。当纯化的人乳胆汁盐刺激脂肪酶(BSSL)与三酰甘油底物一起孵育时,未观察到这种差异,并且当脂肪酶依赖性脂肪酶(与辅脂酶一起)和BSSL同时作用时,这种差异几乎消失,就像它们在母乳喂养的婴儿中那样。无论是脂肪酶依赖性脂肪酶还是BSSL,花生四烯酸和二十碳五烯酸(20:5 n-3)的释放速率均无差异,尽管乳酶的释放比脂肪酶依赖性脂肪酶更快。同样,当两种脂肪酶一起作用时,作为可吸收游离脂肪酸的释放效率最高。花生四烯酸和二十碳五烯酸对脂肪酶依赖性脂肪酶水解的相对抗性,最好用各自脂肪酸的第一个双键位于δ-5位置来解释。所获得的结果表明,BSSL对于有效利用人乳LCP脂肪酸很重要。