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体外氩激光照射动脉粥样硬化斑块、钙化心脏瓣膜和心肌后释放的光产物的鉴定。

Identification of photoproducts liberated by in vitro argon laser irradiation of atherosclerotic plaque, calcified cardiac valves and myocardium.

作者信息

Isner J M, Clarke R H, Donaldson R F, Aharon A

出版信息

Am J Cardiol. 1985 Apr 15;55(9):1192-6. doi: 10.1016/0002-9149(85)90661-7.

Abstract

To determine how laser light effects alterations in cardiovascular tissue, photoproducts liberated as the result of argon laser irradiation of atherosclerotic plaque, myocardium and calcified aortic valve leaflets were analyzed by gas chromatography, gas chromatography-mass spectrometry and absorbance spectroscopy. The products formed in gas phase are those expected when proteins and porphyrins are pyrolyzed--light hydrocarbon fragments, carbon monoxide and water vapor. The laser-generated products dissolved in solution are those expected when a protein chain or porphyrin ring is degraded in a thermal reaction, namely protein fragments and nitrogen heterocyclic ring fragments. These photoproducts are those typical of combustion or thermal degradation, and indicate that the fundamental nature of laser irradiation of coronary plaque, myocardium and calcified valve leaflets is thermal rather than photochemical. Thermal degradation of myocardium is more extensive than thermal degradation of atherosclerotic arteries or calcified valves because the red hue of myoglobin-containing myocardium enhances the absorption of the blue-green argon laser light. In contrast, the yellow-white hue of both atherosclerotic plaque and calcified aortic valve leaflets allows less complete absorbance of the argon laser light, leading to a lesser amount of converted heat and, therefore, less complete thermal degradation.

摘要

为了确定激光如何影响心血管组织的变化,通过气相色谱法、气相色谱 - 质谱法和吸光光谱法分析了氩激光照射动脉粥样硬化斑块、心肌和钙化主动脉瓣小叶后释放的光产物。气相中形成的产物是蛋白质和卟啉热解时预期产生的产物——轻质烃类碎片、一氧化碳和水蒸气。溶解在溶液中的激光产生的产物是蛋白质链或卟啉环在热反应中降解时预期产生的产物,即蛋白质碎片和氮杂环碎片。这些光产物是燃烧或热降解的典型产物,表明激光照射冠状动脉斑块、心肌和钙化瓣膜小叶的基本性质是热效应而非光化学效应。心肌的热降解比动脉粥样硬化动脉或钙化瓣膜的热降解更广泛,因为含肌红蛋白的心肌的红色调增强了对蓝绿色氩激光的吸收。相比之下,动脉粥样硬化斑块和钙化主动脉瓣小叶的黄白色调使得氩激光的吸收不太完全,导致转化的热量较少,因此热降解也不太完全。

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