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口服苯丙氨酸治疗线粒体苯丙氨酸-tRNA 合成酶缺乏症(FARS2)。

Treatment of Mitochondrial Phenylalanyl-tRNa-Synthetase Deficiency (FARS2) with Oral Phenylalanine.

机构信息

University Children's Hospital, Paracelsus Medical University (PMU) Salzburg, Salzburg, Austria.

Moedling Hospital, Moedling, Austria.

出版信息

Neuropediatrics. 2023 Oct;54(5):351-355. doi: 10.1055/a-2008-4230. Epub 2023 Jan 5.

Abstract

OBJECTIVE

By loading transfer RNAs with their cognate amino acids, aminoacyl-tRNA synthetases (ARS) are essential for protein translation. Both cytosolic ARS1-deficiencies and mitochondrial ARS2 deficiencies can cause severe diseases. Amino acid supplementation has shown to positively influence the clinical course of four individuals with cytosolic ARS1 deficiencies. We hypothesize that this intervention could also benefit individuals with mitochondrial ARS2 deficiencies.

METHODS

This study was designed as a N-of-1 trial. Daily oral L-phenylalanine supplementation was used in a 3-year-old girl with FARS2 deficiency. A period without supplementation was implemented to discriminate the effects of treatment from age-related developments and continuing physiotherapy. Treatment effects were measured through a physiotherapeutic testing battery, including movement assessment battery for children, dynamic gait index, gross motor function measure 66, and quality of life questionnaires.

RESULTS

The individual showed clear improvement in all areas tested, especially in gross motor skills, movement abilities, and postural stability. In the period without supplementation, she lost newly acquired motor skills but regained these upon restarting supplementation. No adverse effects and good tolerance of treatment were observed.

INTERPRETATION AND CONCLUSION

Our positive results encourage further studies both on L-phenylalanine for other individuals with FARS2 deficiency and the exploration of this treatment rationale for other ARS2 deficiencies. Additionally, treatment costs were relatively low at 1.10 €/day.

摘要

目的

通过将转移 RNA 加载其对应的氨基酸,氨酰-tRNA 合成酶 (ARS) 对于蛋白质翻译是必不可少的。细胞质 ARS1 缺陷和线粒体 ARS2 缺陷都可能导致严重的疾病。氨基酸补充已被证明对 4 名细胞质 ARS1 缺陷患者的临床病程有积极影响。我们假设这种干预也可能有益于线粒体 ARS2 缺陷患者。

方法

本研究设计为 N-of-1 试验。使用每日口服 L-苯丙氨酸补充剂治疗 FARS2 缺陷的 3 岁女孩。不进行补充的时期用于区分治疗效果与年龄相关的发展和持续物理治疗的效果。通过物理治疗测试电池来测量治疗效果,包括儿童运动评估电池、动态步态指数、粗大运动功能测量 66 和生活质量问卷。

结果

个体在所有测试的领域都表现出明显的改善,特别是在粗大运动技能、运动能力和姿势稳定性方面。在没有补充的时期,她失去了新获得的运动技能,但在重新开始补充后又恢复了这些技能。未观察到不良反应和良好的治疗耐受性。

解释和结论

我们的积极结果鼓励对其他 FARS2 缺陷患者的 L-苯丙氨酸以及对其他 ARS2 缺陷患者的这种治疗原理的进一步研究。此外,治疗成本相对较低,每天 1.10 欧元。

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