Ginkgo biloba for Tardive Dyskinesia and Plasma MnSOD Activity: Association with MnSOD Ala-9Val Variant: A Randomized, Double-blind Trial.

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-01-01 DOI:10.2174/1570159X22666240530095721
Dongmei Wang, Yang Tian, Jiajing Chen, Rongrong Zhu, Jiaxin Li, Huixia Zhou, Dachun Chen, Li Wang, Thomas R Kosten, Xiang-Yang Zhang
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Abstract

Background: Excessive free radicals are implicated in the pathophysiology of tardive dyskinesia (TD), and Ginkgo biloba extract (EGb761) scavenges free radicals, thereby enhancing antioxidant enzymes such as mitochondrial manganese superoxide dismutase (MnSOD). This study examined whether EGb761 treatment would improve TD symptoms and increase MnSOD activity, particularly in TD patients with specific MnSOD Val-9Ala genotype.

Methods: An EGb761 (240 mg/day) 12-week double-blind clinical trial with 157 TD patients was randomized. The severity of TD was measured by the Abnormal Involuntary Movement Scale (AIMS) and plasma MnSOD activity was assayed before and after 12 weeks of treatment. Further, in an expanded sample, we compared MnSOD activity in 159 TD, 227 non-TD and 280 healthy controls, as well as the allele frequencies and genotypes for the MnSOD Ala-9Val polymorphism in 352 TD, 486 non-TD and 1150 healthy controls.

Results: EGb761 significantly reduced TD symptoms and increased MnSOD activity in TD patients compared to placebo (both p < 0.01). Moreover, we found an interaction between genotype and treatment response (p < 0.001). Furthermore, in the EGb761 group, patients carrying the Ala allele displayed a significantly lower AIMS total score than patients with the Val/Val genotype. In addition, MnSOD activity was significantly lower at baseline in TD patients compared with healthy controls or non-TD patients.

Conclusion: EGb761 treatment enhanced low MnSOD activity in TD patients and produced greater improvement in TD symptoms in patients with the Ala allele of the MnSOD Ala-9Val polymorphism.

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银杏叶治疗迟发性运动障碍和血浆 MnSOD 活性:与 MnSOD Ala-9Val 变异的关系
背景:过多的自由基与迟发性运动障碍(TD)的病理生理学有关,而银杏叶提取物(EGb761)能清除自由基,从而增强线粒体锰超氧化物歧化酶(MnSOD)等抗氧化酶的活性。本研究探讨了 EGb761 治疗是否能改善 TD 症状并提高 MnSOD 活性,尤其是对具有特定 MnSOD Val-9Ala 基因型的 TD 患者:随机对 157 名 TD 患者进行了为期 12 周的 EGb761(240 毫克/天)双盲临床试验。通过异常不自主运动量表(AIMS)测量 TD 的严重程度,并在治疗 12 周前后检测血浆 MnSOD 活性。此外,在扩大样本中,我们比较了 159 名 TD、227 名非 TD 和 280 名健康对照者的 MnSOD 活性,以及 352 名 TD、486 名非 TD 和 1150 名健康对照者的 MnSOD Ala-9Val 多态性的等位基因频率和基因型:与安慰剂相比,EGb761能明显减轻TD患者的TD症状,提高MnSOD活性(两者的p均为0.01)。此外,我们还发现基因型与治疗反应之间存在交互作用(p < 0.001)。此外,在 EGb761 组中,携带 Ala 等位基因的患者的 AIMS 总分明显低于 Val/Val 基因型患者。此外,与健康对照组或非 TD 患者相比,TD 患者的 MnSOD 活性在基线时明显较低:结论:EGb761治疗可增强TD患者体内较低的MnSOD活性,并对MnSOD Ala-9Val多态性的Ala等位基因患者的TD症状产生更大的改善作用。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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