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高鸟氨酸血症、高氨血症、同型瓜氨酸尿症综合征:一种可通过补充鸟氨酸纠正的鸟氨酸转运缺陷。

The hyperornithinemia, hyperammonemia, homocitrullinuria syndrome: an ornithine transport defect remediable with ornithine supplements.

作者信息

Gordon B A, Gatfield D P, Haust M D

机构信息

Department of Biochemistry, Children's Psychiatric Research Institute, London, Ontario.

出版信息

Clin Invest Med. 1987 Jul;10(4):329-36.

PMID:3652557
Abstract

The primary defect in patients presenting with a history of protein intolerance, mental retardation, and epilepsy of variable degree, with the unique triad of hyperornithinemia, hyperammonemia, and homocitrullinuria (the HHH syndrome) has been postulated to be a defect in translocation of ornithine into the mitochondria. In a 12-year-old boy with the HHH syndrome, the hyperammonemia observed following a protein load was prevented when the same load was given orally with a 1 mmol/kg of ornithine-HCl. At a dosage level of 0.5 to 1.0 mmol/kg/day of ornithine HCl, administered in 3 divided doses with meals, the patient's protein tolerance improved. As pretreatment hyperammonemia reverted to normal levels, the patient was able to cope with increased dietary protein and his growth accelerated. During the 2-year interval of the study, the ornithine HCl supplements were withdrawn on 2 occasions, and within a week the hyperammonemia recurred. Whereas cultured fibroblasts from the HHH patient were capable of oxidizing U-14C-glutamate to 14CO2 as rapidly as normal cells. 1-14C-ornithine or 5-14C-ornithine were oxidized at only 1/28 or 1/49 of the normal rate. Ultrastructural studies of the HHH cultured fibroblast mitochondria revealed distinctive alterations in size and shape; unusually long, branching, and "curling," HHH mitochondria also showed accelerated regressive changes.

摘要

有蛋白质不耐受、不同程度智力发育迟缓及癫痫病史,伴有高鸟氨酸血症、高氨血症和同型瓜氨酸尿症这一独特三联征(HHH综合征)的患者,其主要缺陷被推测为鸟氨酸向线粒体转运存在缺陷。在一名患有HHH综合征的12岁男孩中,当给予相同蛋白质负荷并同时口服1 mmol/kg盐酸鸟氨酸时,可预防蛋白质负荷后出现的高氨血症。以0.5至1.0 mmol/kg/天的剂量水平,分3次随餐服用盐酸鸟氨酸,患者的蛋白质耐受性得到改善。随着预处理的高氨血症恢复至正常水平,患者能够耐受增加的膳食蛋白质,其生长加速。在研究的2年期间,有2次停用了盐酸鸟氨酸补充剂,一周内高氨血症复发。虽然HHH患者的培养成纤维细胞能够像正常细胞一样快速地将U-14C-谷氨酸氧化为14CO2,但1-14C-鸟氨酸或5-14C-鸟氨酸的氧化速度仅为正常速度的1/28或1/49。对HHH培养的成纤维细胞线粒体的超微结构研究显示,其大小和形状有明显改变;HHH线粒体异常长、呈分支状且“卷曲”,还显示出加速的退行性变化。

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