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Fluorescent silk cocoon creating fluorescent diatom using a Water glass-fluorophore ferry

机译:荧光丝茧使用水玻璃-荧光团轮渡产生荧光硅藻

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摘要

Fluorophores are ubiquitous in nature. Naturally occurring fluorophores are exceptionally stable and have high quantum yield. Several natural systems have acquired fluorescent signature due to the presence of these fluorophores. Systematic attempt to harvest these fluorophores from natural systems could reap rich commercial benefit to bio-imaging industry. Silk cocoon biomaterial is one such example of natural system, which has acquired a fluorescent signature. The objective of this study is to develop simple, rapid, commercially viable technique to isolate silk cocoon membrane fluorophores and exploring the possibility of using them as fluorescent dye in bio-imaging. Here, we report an innovative water glass (Na2SiO3) based strategy to isolate the silk cocoon fluorophores. Isolated fluorophore is majorly quercetin derivatives and exhibited remarkable photo- and heat stability. Fluorescence and mass spectrometric analysis confirmed presence of a quercetin derivative. We further used this fluorophore to successfully label the silicate shell of diatom species Nitzschia palea.
机译:荧光团在自然界无处不在。天然存在的荧光团非常稳定并且具有高量子产率。由于这些荧光团的存在,几种天然系统已经获得了荧光标记。从自然系统中收集这些荧光团的系统性尝试可能会为生物成像行业带来丰厚的商业收益。蚕茧生物材料就是自然系统的一个例子,它具有荧光特征。这项研究的目的是开发一种简单,快速,商业上可行的技术来分离蚕茧膜荧光团,并探索在生物成像中将其用作荧光染料的可能性。在这里,我们报告了一种创新的基于水玻璃(Na2SiO3)的策略,用于分离丝茧荧光团。分离的荧光团主要是槲皮素衍生物,并表现出显着的光稳定性和热稳定性。荧光和质谱分析证实了槲皮素衍生物的存在。我们进一步使用该荧光团成功地标记了硅藻物种尼兹菌的硅酸盐壳。

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