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超小金-银合金纳米颗粒:蛋白质导向合成、生物相容性及X射线计算机断层扫描成像

Ultrasmall Au-Ag Alloy Nanoparticles: Protein-Directed Synthesis, Biocompatibility, and X-ray Computed Tomography Imaging.

作者信息

Chu Zhongyun, Chen Lina, Wang Xiaoshuang, Yang Qingye, Zhao Qi, Huang Chusen, Huang Yuankui, Yang Da-Peng, Jia Nengqin

机构信息

The Education Ministry Key Laboratory of Resource Chemistry, Shanghai Key Laboratory of Rare Earth Functional Materials, Department of Chemistry, Shanghai Normal University, 100 Guilin Road, Shanghai 200234, China.

Jingzhou Central Hospital, The Second Clinical Medical College, Yangtze University, 60 Jingzhong Road, Jingzhou District, Jingzhou City, Hubei Province 434020, China.

出版信息

ACS Biomater Sci Eng. 2019 Feb 11;5(2):1005-1015. doi: 10.1021/acsbiomaterials.8b01176. Epub 2019 Jan 14.

Abstract

The ultrasmall sizes of nanoparticles have attracted significant attention for potential applications in the fields of catalysis and nanomedicine. Herein, we reported on the green preparation and X-ray computed tomography (CT) imaging of ultrasmall bimetallic bovine serum albumin-directed gold-silver (Au-Ag@BSA) nanoparticles (2-4 nm) using BSA as a stabilizing and template-directed agent. Further, the effects of synthesis conditions were systematically explored to prepare products by adjusting the different molar ratios of Au/Ag. The resulting Au-Ag@BSA nanoparticles exhibited the spherical shape, well-dispersed ability, as well as long-term room-temperature stability. The cytotoxicity effects of Au-Ag@BSA nanoparticles on A549 and MCF-7 cells were compared with those of individual Ag nanoparticles, and the results indicated a lower cytotoxicity effect by Au-Ag@BSA nanoparticles. Furthermore, the toxicity of Au-Ag@BSA nanoparticles was investigated in the early stage zebrafish embryos. The results indicate that there are not any obvious changes of survival and hatching percentages at multiple growth stages (4-120 hpf) even with a high level of Au-Ag@BSA nanoparticles (up to 80 mM), revealing good biocompatibility. Interestingly, a rational design of the Au/Ag molar ratio (3:2) surprisingly possessed enhanced CT performance compared to the performance of the Au nanoparticles and iohexol. Accordingly, this study highlights a new prospect in the green preparation of ultrasmall alloy nanomaterials with good biocompatibility and will be of great interest in developing CT contrast agent, catalyst, as well as drug delivery carrier.

摘要

纳米颗粒的超小尺寸因其在催化和纳米医学领域的潜在应用而备受关注。在此,我们报道了以牛血清白蛋白(BSA)作为稳定剂和模板导向剂,绿色制备超小双金属牛血清白蛋白导向的金-银(Au-Ag@BSA)纳米颗粒(2-4纳米)及其X射线计算机断层扫描(CT)成像。此外,通过调整Au/Ag的不同摩尔比,系统地探索了合成条件对产物制备的影响。所得的Au-Ag@BSA纳米颗粒呈现球形,具有良好的分散能力以及在室温下的长期稳定性。将Au-Ag@BSA纳米颗粒对A549和MCF-7细胞的细胞毒性作用与单个银纳米颗粒的细胞毒性作用进行了比较,结果表明Au-Ag@BSA纳米颗粒的细胞毒性作用较低。此外,还在斑马鱼胚胎早期研究了Au-Ag@BSA纳米颗粒的毒性。结果表明,即使在高浓度的Au-Ag@BSA纳米颗粒(高达80 mM)存在下,多个生长阶段(4-120小时胚胎期)的存活和孵化率也没有任何明显变化,这表明其具有良好的生物相容性。有趣的是,与金纳米颗粒和碘海醇相比,Au/Ag摩尔比为3:2的合理设计令人惊讶地具有增强的CT性能。因此,本研究突出了绿色制备具有良好生物相容性的超小合金纳米材料的新前景,对于开发CT造影剂、催化剂以及药物递送载体具有重要意义。

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