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亚甲基四氢叶酸还原酶:同型半胱氨酸与叶酸在心血管病理生物学中作用的整合。

Methoxistasis: integrating the roles of homocysteine and folic acid in cardiovascular pathobiology.

机构信息

Department of Medicine, VA Boston Healthcare System, Boston, MA 02132, USA.

出版信息

Nutrients. 2013 Aug 15;5(8):3235-56. doi: 10.3390/nu5083235.

Abstract

Over the last four decades, abnormalities in the methionine-homocysteine cycle and associated folate metabolism have garnered great interest due to the reported link between hyperhomocysteinemia and human pathology, especially atherothrombotic cardiovascular disease. However, clinical trials of B-vitamin supplementation including high doses of folic acid have not demonstrated any benefit in preventing or treating cardiovascular disease. In addition to the fact that these clinical trials may have been shorter in duration than appropriate for modulating chronic disease states, it is likely that reduction of the blood homocysteine level may be an oversimplified approach to a complex biologic perturbation. The methionine-homocysteine cycle and folate metabolism regulate redox and methylation reactions and are, in turn, regulated by redox and methylation status. Under normal conditions, a normal redox-methylation balance, or "methoxistasis", exists, coordinated by the methionine-homocysteine cycle. An abnormal homocysteine level seen in pathologic states may reflect a disturbance of methoxistasis. We propose that future research should be targeted at estimating the deviation from methoxistasis and how best to restore it. This approach could lead to significant advances in preventing and treating cardiovascular diseases, including heart failure.

摘要

在过去的四十年中,由于高同型半胱氨酸血症与人类病理学之间的关联,特别是与动脉粥样硬化性心血管疾病之间的关联,蛋氨酸-同型半胱氨酸循环和相关叶酸代谢的异常引起了极大的关注。然而,包括高剂量叶酸在内的 B 族维生素补充剂的临床试验并未显示出任何预防或治疗心血管疾病的益处。除了这些临床试验的持续时间可能短于调节慢性疾病状态所需的时间之外,降低血液同型半胱氨酸水平可能是一种过于简单的方法,无法解决复杂的生物学紊乱问题。蛋氨酸-同型半胱氨酸循环和叶酸代谢调节氧化还原和甲基化反应,反过来又受到氧化还原和甲基化状态的调节。在正常情况下,存在正常的氧化还原-甲基化平衡,或“甲氧基稳定”,由蛋氨酸-同型半胱氨酸循环协调。在病理状态下观察到的异常同型半胱氨酸水平可能反映了甲氧基稳定的紊乱。我们建议,未来的研究应针对估计偏离甲氧基稳定的程度以及如何最好地恢复它。这种方法可能会在预防和治疗心血管疾病方面取得重大进展,包括心力衰竭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a32b/3775251/02991052c486/nutrients-05-03235-g001.jpg

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