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用酶学指标评估心肌梗死

Evaluation of myocardial infarction with enzymatic indices.

作者信息

Ahumada G, Roberts R, Sobel B E

出版信息

Prog Cardiovasc Dis. 1976 Mar-Apr;18(5):405-20. doi: 10.1016/0033-0620(76)90004-9.

Abstract

The severity of myocardial damage appears to be a common denominator contributing to electrophysiologic derangements, impaired ventricular function, and prognosis after myocardial infarction. Physiologically based models of processes affecting appearance and disappearance of CPK from the circulation may improve predictions and estimates of infarct size. Elevation of serum MB CPK isoenzyme activity appears to be a highly sensitive and specific indicator of myocardial injury. Despite the limitations discussed, recently developed enzymatic methods for detection, projection, and quantification of infarct dize have demonstrated that the extent of myocardial injury may be limited in selected patients by appropriate therapeutic measures. Further investigation may help to define the intervals between the onset of infarction and implementation of therapeutic maneuvers during which myocardial protection is possible, and may help to identify and differentiate inter ventions which salvage myocardium, those which improve cardiac performance without altering infarct size, and those which augment cardiac injury despite improving hemodynamics. Thus, in conjunction with electrophysiologic, radioisotopic, and hemodynamic techniques, enzymatic estimates and projection of infarct size should facilitate increased understanding of factors influencing the evolution of infarction and hasten development of effective therapeutic interventions designed to reduce myocardial damage.

摘要

心肌损伤的严重程度似乎是导致心肌梗死后电生理紊乱、心室功能受损及预后不良的一个共同因素。基于生理学的模型,即影响肌酸磷酸激酶(CPK)在循环中出现和消失过程的模型,可能会改善对梗死面积的预测和估计。血清MB CPK同工酶活性升高似乎是心肌损伤的一个高度敏感且特异的指标。尽管存在上述局限性,但最近开发的用于检测、预测和量化梗死面积的酶学方法已表明,在部分患者中,适当的治疗措施可能会限制心肌损伤的程度。进一步的研究可能有助于确定梗死发作与实施有可能保护心肌的治疗手段之间的时间间隔,并可能有助于识别和区分挽救心肌的干预措施、不改变梗死面积但改善心脏功能的干预措施,以及尽管改善了血流动力学但却加重心肌损伤的干预措施。因此,结合电生理、放射性同位素和血流动力学技术,酶学估计和梗死面积预测应有助于加深对影响梗死演变因素的理解,并加速旨在减少心肌损伤的有效治疗干预措施的开发。

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