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首页> 外文期刊>Journal of mass spectrometry: JMS >Exploring the frontiers of synthetic eumelanin polymers by high-resolution matrix-assisted laser/desorption ionization mass spectrometry
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Exploring the frontiers of synthetic eumelanin polymers by high-resolution matrix-assisted laser/desorption ionization mass spectrometry

机译:高分辨率基质辅助激光/解吸电离质谱技术探索合成双聚木聚糖聚合物的前沿领域

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New trends in material science and nanotechnologies have spurred growing interest in eumelanins black insoluble biopolymers derived by tyrosinase-catalysed oxidation of tyrosine via 5,6-dihydroxyindole (DHI) and its 2-carboxylic acid (DHICA). Efficient antioxidant and photoprotective actions, associated with peculiar optoelectronic properties, are recognised as prominent functions of eumelanin macromolecules within the human and mammalian pigmentary system, making them unique candidates for the realisation of innovative bio-inspired functional soft materials, with structure-based physical-chemical properties. An unprecedented breakthrough into the mechanism of synthetic eumelanin buildup has derived from a detailed investigation of the oxidative polymerization of DHI and its N-methyl derivative (NMDHI) by linear and reflectron matrix-assisted laser/desorption ionization mass spectrometry. Regular collections of oligomers of increasing masses, spanning the entire m/z ranges up to 5000 Da (>30-mer) and 8000 Da (> 50-mer) for the two building blocks, respectively, were disclosed. It is the first time that the in vitro polymerisation of dihydroxyindoles to form synthetic eumelanins is explored up to its high mass limits, giving at the same time information on the polymerisation mode, whether it follows a stepwise pattern (being this the conclusion in our case) or a staking sequencing of small-sized entities. It also highlighted the influence of the N-methyl substituent on the polymerization process; this opens the way to the production of N-functionalized, synthetic eumelanin-inspired soft materials, for possible future technological applications.
机译:材料科学和纳米技术的新趋势激发了人们对由丁氨酸酶催化的酪氨酸经5,6-二羟基吲哚(DHI)及其2-羧酸(DHICA)氧化而生成的Eumelanins黑色不溶生物聚合物的兴趣。高效的抗氧化剂和光防护作用以及独特的光电性能,被认为是人和哺乳动物色素系统中的双美金大分子的显着功能,使其成为实现创新的,具有生物启发性的功能性软材料的独特候选者,并具有基于结构的物理化学结构。化学性质。通过线性和反射电子束辅助激光/解吸电离质谱对DHI及其N-甲基衍生物(NMDHI)的氧化聚合进行了详细的研究,从而为合成Eumelanin形成机理提供了前所未有的突破。公开了质量增加的低聚物的规则集合,跨越两个模块的整个m / z范围分别高达5000 Da(> 30-mer)和8000 Da(> 50-mer)。这是首次探索二羟基吲哚在体外的聚合反应,以形成合成的油棕素,达到了其最高质量极限,同时提供了有关聚合模式的信息,是否遵循逐步模式(在我们的案例中就是这样的结论) )或对小型实体进行放样排序。它还强调了N-甲基取代基对聚合过程的影响。这为生产可能用于未来技术应用的N-官能化,合成的Eumelanin合成软材料开辟了道路。

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