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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Ultra-radiant photoluminescence of glutathione rigidified reduced carbon quantum dots (r-CQDs) derived from ice-biryani for in vitro and in vivo bioimaging applications
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Ultra-radiant photoluminescence of glutathione rigidified reduced carbon quantum dots (r-CQDs) derived from ice-biryani for in vitro and in vivo bioimaging applications

机译:谷胱甘肽的超辐射光致发光率衍生自Ice-Biryani的含量减少的碳量子点(R-CQDS),用于体外和体内生物分析应用

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摘要

Fabrication of beneficial materials from food waste is an extremely challenging task in the current research scenario. In this study, we report the facile synthesis of fluorescent carbon quantum dots (CQDs) using ice-biryani (processed white rice waste) as a precursor and its application in bioimaging was evaluated using in vitro and in vivo models. CQDs was synthesized from carbonized ice-biryani by means of nitric acid treatment. To improve the quantum yield (QY) of as synthesized CQDs, we adopted two-step surface modification processes i.e., (i) preparation of reduced-state CQDs (r-CQDs) via borohydride reduction method followed by (ii) rigidifying with a tripeptide i.e., glutathione (r-CQDs-GS).The effective interactions of oxygen rich r-CQDs and GS stabilization has enhanced the QY from (bare CQDs) 5.46 % to (r-CQDs-GS) 41 %. The resultant r-CQDs-GS was found to be an average particle size of similar to 2-5 nm with pH tuned emission between pH 1-10. The biocompatibility of r-CQDs-GS was tested using A549 cells and it was observed that almost 90 % cell viability and normal morphology was retained even after treated with concentrations up to 100 mu g/ml. The synergetic effect of r-CQDs rigidified with glutathione have resulted in an efficient in vitro/in vivo bioimaging applications.
机译:在当前的研究情景中,食品废物的有益材料的制造是一个极其具有挑战性的任务。在这项研究中,我们报告了使用冰淇淋(加工白米废物)作为前体的荧光碳量子点(CQDS)的容易合成,并且在体外和体内模型中评估其在生物模拟中的应用。通过硝酸处理从碳化的冰 - Biryani合成CQDS。为了改善作为合成的CQDS的量子产率(QY),我们采用了两步表面改性方法,即(I)通过硼氢化物还原方法制备降低状态CQDS(R-CQDS),然后用三肽致力于致力于(ii)即,谷胱甘肽(R-CQDS-GS)。富含富氢的R-CQDS和GS稳定化的有效相互作用增强了(裸CQDS)5.46%至(R-CQDS-GS)41%的QY。发现所得的R-CQDS-GS是与2-5nm的平均粒度,PH 1-10之间的pH调节发射相似。使用A549细胞测试R-CQDS-GS的生物相容性,观察到甚至在用高达100μg/ ml的浓度处理后,即使在处理过的浓度后,也保留了几乎90%的细胞活力和正常形态。 R-CQDS致谷胱甘肽刚性的r-CQDS的协同作用导致体外/体内生物分析应用有效。

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