Department of Biophysics, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.
Institute for Melanin Chemistry, Fujita Health University, Toyoake, Aichi 470-1192, Japan.
Int J Mol Sci. 2021 Apr 24;22(9):4465. doi: 10.3390/ijms22094465.
Photoreactivity of melanin has become a major focus of research due to the postulated involvement of the pigment in UVA-induced melanoma. However, most of the hitherto studies were carried out using synthetic melanin models. Thus, photoreactivity of natural melanins is yet to be systematically analyzed. Here, we examined the photoreactive properties of natural melanins isolated from hair samples obtained from donors of different skin phototypes (I, II, III, and V). X-band and W-band electron paramagnetic resonance (EPR) spectroscopy was used to examine the paramagnetic properties of the pigments. Alkaline hydrogen peroxide degradation and hydroiodic acid hydrolysis were used to determine the chemical composition of the melanins. EPR oximetry and spin trapping were used to examine the oxygen photoconsumption and photo-induced formation of superoxide anion, and time-resolved near infrared phosphorescence was employed to determine the singlet oxygen photogeneration by the melanins. The efficiency of superoxide and singlet oxygen photogeneration was related to the chemical composition of the studied melanins. Melanins from blond and chestnut hair (phototypes II and III) exhibited highest photoreactivity of all examined pigments. Moreover, melanins of these phototypes showed highest quantum efficiency of singlet oxygen photogeneration at 332 nm and 365 nm supporting the postulate of the pigment contribution in UVA-induced melanoma.
由于黑色素在 UVA 诱导的黑色素瘤中被假定有参与作用,因此其光反应性已成为研究的重点。然而,到目前为止,大多数研究都是使用合成黑色素模型进行的。因此,天然黑色素的光反应性尚未得到系统分析。在这里,我们研究了从不同皮肤光型(I、II、III 和 V)供体获得的毛发样本中分离出的天然黑色素的光反应特性。X 波段和 W 波段电子顺磁共振(EPR)光谱用于检查颜料的顺磁性质。碱性过氧化氢降解和氢碘酸水解用于确定黑色素的化学成分。EPR 血氧测定法和自旋捕获法用于检查氧的光消耗和超氧阴离子的光诱导形成,时间分辨近红外磷光用于确定黑色素的 singlet oxygen 光生成。超氧和 singlet oxygen 光生成的效率与所研究黑色素的化学成分有关。金发和栗色头发(光型 II 和 III)中的黑色素表现出所有检查颜料中最高的光反应性。此外,这些光型的黑色素在 332nm 和 365nm 处显示出最高的 singlet oxygen 光生成量子效率,支持了色素在 UVA 诱导的黑色素瘤中作用的假设。