Menichetti Arianna, Mordini Dario, Montalti Marco
Department of Chemistry "Giacomo Ciamician", University of Bologna, Via Selmi 2, 40126, Bologna, Italy.
Chemistry. 2024 Dec 13;30(70):e202400461. doi: 10.1002/chem.202400461. Epub 2024 Oct 31.
Melanin is responsible, in Nature, for photoprotection, for this reason it is expected to be poorly photoreactive. However, the photo-reactivity of melanin and related materials is well documented. Here we discuss some relevant recent examples to demonstrate that, indeed, the actual mechanism of interaction of melanin with light is complex and still not completely understood. Photochemical and photothermal processes are involved, giving a contribution that strongly depends on light wavelength and intensity. Moreover, some interesting experiments demonstrated that photochemical reactivity of melanin related compounds is likely to be indirect, in the sense that the effect of light is to increase the number of radical species rather than creating photoreactive excited state. These suggestions open-up new perspectives in the interpretation of the role of melanin in photoprotection and in the design of new melanin based photoactive materials for energy conversion, environmental remediation, and nanomedicine. Further complication is given by the role of atmospheric oxygen and humidity in the photoinduced processes. Beside this complexity of behavior makes it difficult a systematic understanding of the interaction of melanin with light, it surely strongly contributes to make the properties of melanin and related materials unique.
在自然界中,黑色素负责光保护,因此预计其光反应性较差。然而,黑色素及相关物质的光反应性已有充分记载。在此,我们讨论一些近期的相关实例,以证明黑色素与光相互作用的实际机制确实复杂且仍未被完全理解。光化学和光热过程都参与其中,其贡献程度强烈依赖于光的波长和强度。此外,一些有趣的实验表明,黑色素相关化合物的光化学反应性可能是间接的,即光的作用是增加自由基种类的数量,而非产生光反应性激发态。这些观点为解释黑色素在光保护中的作用以及设计基于黑色素的新型光活性材料以用于能量转换、环境修复和纳米医学开辟了新的视角。大气中的氧气和湿度在光诱导过程中的作用进一步增加了复杂性。除了这种行为的复杂性使得难以系统地理解黑色素与光的相互作用外,它无疑极大地促成了黑色素及相关材料特性的独特性。