γ-谷氨酰转移酶与心血管疾病
Gamma-glutamyl transferase and cardiovascular disease.
作者信息
Ndrepepa Gjin, Kastrati Adnan
机构信息
Department of Adult Cardiology, Deutsches Herzzentrum München, Technische Universität, Munich, Germany.
Department of Adult Cardiology, Deutsches Herzzentrum München, Technische Universität, Munich, Germany;; DZHK (German Centre for Cardiovascular Research), Partner Site Munich Heart Alliance, Munich, Germany.
出版信息
Ann Transl Med. 2016 Dec;4(24):481. doi: 10.21037/atm.2016.12.27.
Gamma-glutamyl transferase (GGT) is an enzyme located on the external surface of cellular membranes. GGT contributes in maintaining the physiological concentrations of cytoplasmic glutathione and cellular defense against oxidative stress via cleavage of extracellular glutathione and increased availability of amino acids for its intracellular synthesis. Increased GGT activity is a marker of antioxidant inadequacy and increased oxidative stress. Ample evidence suggests that elevated GGT activity is associated with increased risk of cardiovascular disease (CVD) such as coronary heart disease (CHD), stroke, arterial hypertension, heart failure, cardiac arrhythmias and all-cause and CVD-related mortality. The evidence is weaker for an association between elevated GGT activity and acute ischemic events and myocardial infarction. The risk for CVD or CVD-related mortality mediated by GGT may be explained by the close correlation of GGT with conventional CVD risk factors and various comorbidities, particularly non-alcoholic fatty liver disease, alcohol consumption, oxidative stress, metabolic syndrome, insulin resistance and systemic inflammation. The finding of GGT activity in atherosclerotic plaques and correlation of intra-plaque GGT activity with histological indexes of plaque instability may suggest a participation of GGT in the pathophysiology of CVD, particularly atherosclerosis. However, whether GGT has a direct role in the pathophysiology of CVD or it is an epiphenomenon of coexisting CVD risk factors or comorbidities remains unknown and Hill's criteria of causality relationship between GGT and CVD are not fulfilled. The exploration whether GGT provides prognostic information on top of the information provided by known cardiovascular risk factors regarding the CVD or CVD-related outcome and exploration of molecular mechanisms of GGT involvement in the pathophysiology of CVD and eventual use of interventions to reduce circulating GGT activity remain a duty of future studies.
γ-谷氨酰转移酶(GGT)是一种位于细胞膜外表面的酶。GGT通过裂解细胞外谷胱甘肽并增加其细胞内合成所需氨基酸的可用性,有助于维持细胞质谷胱甘肽的生理浓度并保护细胞免受氧化应激。GGT活性增加是抗氧化不足和氧化应激增加的标志。大量证据表明,GGT活性升高与心血管疾病(CVD)风险增加相关,如冠心病(CHD)、中风、动脉高血压、心力衰竭、心律失常以及全因死亡率和CVD相关死亡率。GGT活性升高与急性缺血事件和心肌梗死之间的关联证据较弱。GGT介导的CVD或CVD相关死亡率风险可能由GGT与传统CVD危险因素及各种合并症(尤其是非酒精性脂肪性肝病、饮酒、氧化应激、代谢综合征、胰岛素抵抗和全身炎症)的密切相关性来解释。在动脉粥样硬化斑块中发现GGT活性以及斑块内GGT活性与斑块不稳定性组织学指标的相关性,可能提示GGT参与了CVD的病理生理学过程,尤其是动脉粥样硬化。然而,GGT在CVD病理生理学中是否具有直接作用,或者它是共存的CVD危险因素或合并症的一种附带现象,仍然未知,并且GGT与CVD之间因果关系的希尔标准也未得到满足。探究GGT是否能在已知心血管危险因素所提供信息的基础上,为CVD或CVD相关结局提供预后信息,以及探究GGT参与CVD病理生理学的分子机制,并最终采用干预措施降低循环GGT活性,仍是未来研究的任务。
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