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室温下合成氧化铋纳米粒子的黑色素-伽马射线辅助剂,用于增强抗菌和光催化活性。

Melanin-gamma rays assistants for bismuth oxide nanoparticles synthesis at room temperature for enhancing antimicrobial, and photocatalytic activity.

机构信息

Drug Radiation Research Department, National Center for Radiation Research and Technology (NCRRT), Atomic Energy Authority, Cairo, Egypt.

Drug Radiation Research Department, National Center for Radiation Research and Technology (NCRRT), Atomic Energy Authority, Cairo, Egypt.

出版信息

J Photochem Photobiol B. 2017 Aug;173:120-139. doi: 10.1016/j.jphotobiol.2017.05.030. Epub 2017 May 23.

Abstract

Melanin pigment has been deemed as a natural photoprotector with strong hydrophobicity. It allured considerable compatibility with many applications in medicine, food, and nanotechnology. Penicillium chrysogenium has been devoted to the green synthesis of melanin whereby optimizing its culture and environmental conditions. The impacts of alternative economic L-tyrosine natural sources (unprecedented alternate origins) and gamma radiation were pledged for the potential growing of the pigment. Herein, notable increases in melanin yield (6.4mg/ml; much higher than nonoptimized one by 40 folds) was obtained by optimizing the culture, and environmental requirements [potato starch (3.0%), yeast extract (5.0%), copper sulfate (0.2mM), 0.25% L-tyrosine, 0.1% L-glycine, and 0.1% Tween 20 at pH5.0, and 30°C for 7.0days using 180.0rpm shaking speed]. The addition of banana's peel (2.0%) has been led to increase the melanin production up to (8.3mg/ml; much higher than optimized one by 1.29 folds). It stimulated the induced enzymes, (i.e., tyrosinase) because it contained significant amounts of L-tyrosine, dopamine, and L-DOPA as resources for melanin biosynthesis. Then irradiated P. chrysogenium (2.5kGy) induced the pigment yield to 10.3mg/ml; much higher than optimized one by (1.61 folds). On the other hand, we tailored a methodology involved the product of melanin and gamma rays (25.0kGy) to an eco-friendly synthesis of Bismuth oxide nanoparticles (BiONPs) at the room temperature. Melanin under such alkaline condition functioning as simultaneously hydrolyzes, photoprotection of the Bi seeds, and stabilizer against the uncontrolled growth and the free radicals attack. Whereas the gamma irradiation induced the room temperature condensation reaction to occur, a novel mechanism proposal was discussed. BiONPs were characterized by UV-Vis., DLS, XRD, SEM, EDX, and FTIR. DLS and XRD calculations with TEM analysis exhibited the mean diameter of BiONPs was 29.82nm. Moreover, the as-prepared BiONPs presented a unique antimicrobial activity against some oral, standard ATCC, and multidrug resistant microbes with ultralow concentrations (0.8μg/ml). Also, the photocatalytic degradation of Tartrazine dye (TZ), under the UV-Light irradiation, reached 85.0% in 140.0min. Thereby, owing to its unique characteristics such as cost-effective and scalability method with long-term stabilization, nontoxic nature, excellent chemical inertness, biocompatibility and active properties of BiONPs can find possible purposes in the medical, dental, and cosmetic approaches.

摘要

黑色素被认为是一种具有强疏水性的天然光保护剂。它与医学、食品和纳米技术中的许多应用具有相当大的兼容性。青霉属被用于黑色素的绿色合成,通过优化其培养和环境条件。替代经济 L-酪氨酸天然来源(前所未有的替代来源)和伽马辐射的影响被承诺用于潜在的色素生长。在此,通过优化培养和环境要求[马铃薯淀粉(3.0%)、酵母提取物(5.0%)、硫酸铜(0.2mM)、0.25%L-酪氨酸、0.1%L-甘氨酸和 0.1%吐温 20,在 pH5.0 下,在 30°C 下以 180.0rpm 摇床速度培养 7.0 天],黑色素产量显著增加(6.4mg/ml;比非优化的增加了 40 倍)。香蕉皮(2.0%)的添加可将黑色素产量提高到 8.3mg/ml(比优化的增加了 1.29 倍)。它刺激了诱导酶(即酪氨酸酶)的产生,因为它含有大量的 L-酪氨酸、多巴胺和 L-DOPA,作为黑色素生物合成的资源。然后,辐照青霉属(2.5kGy)可将色素产量诱导至 10.3mg/ml;比优化的增加了(1.61 倍)。另一方面,我们设计了一种方法,涉及黑色素和伽马射线(25.0kGy)的产物,在室温下进行环保的氧化铋纳米粒子(BiONPs)合成。在这种碱性条件下,黑色素同时起水解作用、保护 Bi 种子免受光保护,并防止不受控制的生长和自由基攻击。而伽马辐照诱导室温下缩合反应发生,提出了一种新的机制。BiONPs 通过 UV-Vis.、DLS、XRD、SEM、EDX 和 FTIR 进行了表征。DLS 和 XRD 计算与 TEM 分析显示,BiONPs 的平均直径为 29.82nm。此外,所制备的 BiONPs 对一些口腔、标准 ATCC 和多药耐药微生物表现出独特的抗菌活性,浓度低至 0.8μg/ml。此外,在 UV 光照射下,食用柠檬黄染料(TZ)的光催化降解在 140.0 分钟内达到 85.0%。因此,由于其独特的特性,如具有成本效益和可扩展性的方法、长期稳定性、无毒性质、优异的化学惰性、生物相容性和 BiONPs 的活性,它可以在医学、牙科和美容方面找到可能的用途。

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