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大中性氨基酸补充作为苯丙酮尿症成人的苯丙氨酸限制饮食替代:来自成年 Pah-enu2 小鼠的证据。

Large neutral amino acid supplementation as an alternative to the phenylalanine-restricted diet in adults with phenylketonuria: evidence from adult Pah-enu2 mice.

机构信息

University of Groningen, University Medical Center Groningen, Beatrix Children's Hospital, Groningen, the Netherlands.

University of Groningen, Groningen Institute for Evolutionary Life Sciences (GELIFES), Department of Molecular Neurobiology, Groningen, the Netherlands.

出版信息

J Nutr Biochem. 2018 Mar;53:20-27. doi: 10.1016/j.jnutbio.2017.09.020. Epub 2017 Oct 12.

Abstract

Phenylketonuria treatment mainly consists of a phenylalanine-restricted diet but still results in suboptimal neuropsychological outcome, which is at least partly based on cerebral monoamine deficiencies, while, after childhood, treatment compliance decreases. Supplementation of large neutral amino acids (LNAAs) was previously demonstrated in young phenylketonuria mice to target all three biochemical disturbances underlying brain dysfunction in phenylketonuria. However, both its potential in adult phenylketonuria and the comparison with the phenylalanine-restricted diet remain to be established. To this purpose, several LNAA supplements were compared with a severe phenylalanine-restricted diet with respect to brain monoamine and amino acid concentrations in adult C57Bl/6 Pah-enu2 mice. Adult phenylketonuria mice received a phenylalanine-restricted diet, unrestricted diet supplemented with several combinations of LNAAs or AIN-93M control diet for 6 weeks. In addition, adult wild-type mice on AIN-93M diet served as controls. The severe phenylalanine-restricted diet in adult phenylketonuria mice significantly reduced plasma and brain phenylalanine and restored brain monoamine concentrations, while brain concentrations of most nonphenylalanine LNAAs remained subnormal. Supplementation of eight LNAAs was similarly effective as the severe phenylalanine-restricted diet to restore brain monoamines, while brain and plasma phenylalanine concentrations remained markedly elevated. These results provide biochemical support for the effectiveness of the severe phenylalanine-restricted diet and showed the possibilities of LNAA supplementation being equally effective to restore brain monoamines in adult phenylketonuria mice. Therefore, LNAA supplementation is a promising alternative treatment to phenylalanine restriction in adult phenylketonuria patients to further optimize neuropsychological functioning.

摘要

苯丙酮尿症的治疗主要包括限制苯丙氨酸的饮食,但仍会导致神经心理结局不理想,这至少部分是基于脑单胺缺乏,而在儿童期后,治疗依从性下降。先前在年轻的苯丙酮尿症小鼠中已证明补充大中性氨基酸(LNAAs)可靶向苯丙酮尿症脑功能障碍的所有三种生化异常。然而,其在成年苯丙酮尿症中的潜力及其与限制苯丙氨酸饮食的比较仍有待确定。为此,我们比较了几种 LNAAs 补充剂与严重限制苯丙氨酸饮食对成年 C57Bl/6 Pah-enu2 小鼠大脑单胺和氨基酸浓度的影响。成年苯丙酮尿症小鼠接受限制苯丙氨酸饮食、无限制饮食补充几种 LNAAs 组合或 AIN-93M 对照饮食 6 周。此外,成年野生型小鼠接受 AIN-93M 饮食作为对照。成年苯丙酮尿症小鼠的严重限制苯丙氨酸饮食显著降低了血浆和大脑中的苯丙氨酸,并恢复了大脑单胺浓度,而大多数非苯丙氨酸 LNAAs 的大脑浓度仍低于正常水平。补充八种 LNAAs 与严重限制苯丙氨酸饮食同样有效地恢复大脑单胺,而大脑和血浆中的苯丙氨酸浓度仍明显升高。这些结果为严重限制苯丙氨酸饮食的有效性提供了生化支持,并显示了 LNAAs 补充同样有效地恢复成年苯丙酮尿症小鼠大脑单胺的可能性。因此,LNAAs 补充是成年苯丙酮尿症患者限制苯丙氨酸治疗的一种有前途的替代方法,以进一步优化神经心理功能。

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