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真菌黑色素的辐射防护特性取决于其化学成分、稳定自由基的存在以及空间排列。

The radioprotective properties of fungal melanin are a function of its chemical composition, stable radical presence and spatial arrangement.

作者信息

Dadachova Ekaterina, Bryan Ruth A, Howell Robertha C, Schweitzer Andrew D, Aisen Philip, Nosanchuk Joshua D, Casadevall Arturo

机构信息

Department of Nuclear Medicine, Albert Einstein College of Medicine, Bronx, NY, USA.

出版信息

Pigment Cell Melanoma Res. 2008 Apr;21(2):192-9. doi: 10.1111/j.1755-148X.2007.00430.x.

Abstract

Melanized microorganisms are often found in environments with very high background radiation levels such as in nuclear reactor cooling pools and the destroyed reactor in Chernobyl. These findings and the laboratory observations of the resistance of melanized fungi to ionizing radiation suggest a role for this pigment in radioprotection. We hypothesized that the radioprotective properties of melanin in microorganisms result from a combination of physical shielding and quenching of cytotoxic free radicals. We have investigated the radioprotective properties of melanin by subjecting the human pathogenic fungi Cryptococcus neoformans and Histoplasma capsulatum in their melanized and non-melanized forms to sublethal and lethal doses of radiation of up to 8 kGy. The contribution of chemical composition, free radical presence, spatial arrangement, and Compton scattering to the radioprotective properties of melanin was investigated by high-performance liquid chromatography, electron spin resonance, transmission electron microscopy, and autoradiographic techniques. Melanin protected fungi against ionizing radiation and its radioprotective properties were a function of its chemical composition, free radical quenching, and spherical spatial arrangement.

摘要

黑化微生物经常出现在背景辐射水平非常高的环境中,比如核反应堆冷却池以及切尔诺贝利被摧毁的反应堆中。这些发现以及对黑化真菌抗电离辐射能力的实验室观察结果表明,这种色素在辐射防护中发挥着作用。我们推测,微生物中黑色素的辐射防护特性源于物理屏蔽和细胞毒性自由基淬灭的共同作用。我们通过将人类致病真菌新型隐球菌和荚膜组织胞浆菌的黑化和非黑化形式暴露于高达8千戈瑞的亚致死和致死剂量辐射下,研究了黑色素的辐射防护特性。通过高效液相色谱法、电子自旋共振、透射电子显微镜和放射自显影技术,研究了化学成分、自由基存在、空间排列和康普顿散射对黑色素辐射防护特性的影响。黑色素保护真菌免受电离辐射,其辐射防护特性是其化学成分、自由基淬灭和球形空间排列的函数。

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