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长期低苯丙氨酸和/或特定营养素组合的饮食干预可改善苯丙酮尿症(PKU)患者大脑功能的某些方面。

Long-term dietary intervention with low Phe and/or a specific nutrient combination improve certain aspects of brain functioning in phenylketonuria (PKU).

机构信息

Molecular Neurobiology, GELIFES, University of Groningen, Groningen, The Netherlands.

Division of Metabolic Diseases, Beatrix Children's Hospital, University Medical Center of Groningen, University of Groningen, Groningen, The Netherlands.

出版信息

PLoS One. 2019 Mar 15;14(3):e0213391. doi: 10.1371/journal.pone.0213391. eCollection 2019.

Abstract

INTRODUCTION

In phenylketonuria (PKU), a gene mutation in the phenylalanine metabolic pathway causes accumulation of phenylalanine (Phe) in blood and brain. Although early introduction of a Phe-restricted diet can prevent severe symptoms from developing, patients who are diagnosed and treated early still experience deficits in cognitive functioning indicating shortcomings of current treatment. In the search for new and/or additional treatment strategies, a specific nutrient combination (SNC) was postulated to improve brain function in PKU. In this study, a long-term dietary intervention with a low-Phe diet, a specific combination of nutrients designed to improve brain function, or both concepts together was investigated in male and female BTBR PKU and WT mice.

MATERIAL & METHODS: 48 homozygous wild-types (WT, +/+) and 96 PKU BTBRPah2 (-/-) male and female mice received dietary interventions from postnatal day 31 till 10 months of age and were distributed in the following six groups: high Phe diet (WT C-HP, PKU C-HP), high Phe plus specific nutrient combination (WT SNC-HP, PKU SNC-HP), PKU low-Phe diet (PKU C-LP), and PKU low-Phe diet plus specific nutrient combination (PKU SNC- LP). Memory and motor function were tested at time points 3, 6, and 9 months after treatment initiation in the open field (OF), novel object recognition test (NOR), spatial object recognition test (SOR), and the balance beam (BB). At the end of the experiments, brain neurotransmitter concentrations were determined.

RESULTS

In the NOR, we found that PKU mice, despite being subjected to high Phe conditions, could master the task on all three time points when supplemented with SNC. Under low Phe conditions, PKU mice on control diet could master the NOR at all three time points, while PKU mice on the SNC supplemented diet could master the task at time points 6 and 9 months. SNC supplementation did not consistently influence the performance in the OF, SOR or BB in PKU mice. The low Phe diet was able to normalize concentrations of norepinephrine and serotonin; however, these neurotransmitters were not influenced by SNC supplementation.

CONCLUSION

This study demonstrates that both a long-lasting low Phe diet, the diet enriched with SNC, as well as the combined diet was able to ameliorate some, but not all of these PKU-induced abnormalities. Specifically, this study is the first long-term intervention study in BTBR PKU mice that shows that SNC supplementation can specifically improve novel object recognition.

摘要

简介

在苯丙酮尿症(PKU)中,苯丙氨酸代谢途径中的基因突变导致血液和大脑中苯丙氨酸(Phe)的积累。尽管早期引入限制苯丙氨酸的饮食可以防止严重症状的发展,但早期诊断和治疗的患者仍存在认知功能缺陷,表明目前的治疗存在不足。在寻找新的和/或额外的治疗策略时,有人假设特定的营养组合(SNC)可以改善 PKU 中的大脑功能。在这项研究中,我们研究了低苯丙氨酸饮食、旨在改善大脑功能的特定营养组合或两者结合的长期饮食干预对雄性和雌性 BTBR PKU 和 WT 小鼠的影响。

材料与方法

48 只纯合野生型(WT,+/+)和 96 只 PKU BTBRPah2(-/-)雄性和雌性小鼠从出生后第 31 天至 10 个月接受饮食干预,并分为以下六组:高苯丙氨酸饮食(WT C-HP,PKU C-HP)、高苯丙氨酸加特定营养组合(WT SNC-HP,PKU SNC-HP)、PKU 低苯丙氨酸饮食(PKU C-LP)和 PKU 低苯丙氨酸饮食加特定营养组合(PKU SNC-LP)。在治疗开始后 3、6 和 9 个月,使用旷场(OF)、新物体识别测试(NOR)、空间物体识别测试(SOR)和平衡木(BB)测试记忆和运动功能。在实验结束时,测定脑神经递质浓度。

结果

在 NOR 中,我们发现 PKU 小鼠尽管处于高苯丙氨酸条件下,但在补充 SNC 时可以在所有三个时间点上掌握任务。在低苯丙氨酸条件下,接受对照饮食的 PKU 小鼠可以在所有三个时间点上掌握 NOR,而接受 SNC 补充饮食的 PKU 小鼠可以在 6 个月和 9 个月时掌握任务。SNC 补充剂并未一致影响 PKU 小鼠在 OF、SOR 或 BB 中的表现。低苯丙氨酸饮食能够使去甲肾上腺素和血清素的浓度正常化;然而,SNC 补充剂对这些神经递质没有影响。

结论

这项研究表明,长期低苯丙氨酸饮食、富含 SNC 的饮食以及联合饮食都能够改善一些,但不是所有的 PKU 引起的异常。具体而言,这项研究是首例在 BTBR PKU 小鼠中进行的长期干预研究,表明 SNC 补充剂可以特异性改善新物体识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/036b/6420157/9489c6d458fe/pone.0213391.g001.jpg

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