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In situ green synthesis of antimicrobial carboxymethyl chitosan–nanosilver hybrids with controlled silver release

机译:可控银释放的抗菌羧甲基壳聚糖-纳米银杂种的原位绿色合成

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摘要

In order to fabricate antimicrobial carboxymethyl chitosan–nanosilver (CMC-Ag) hybrids with controlled silver release, this study demonstrated comparable formation via three synthetic protocols: 1) carboxymethyl chitosan (CMC) and glucose (adding glucose after AgNO3), 2) CMC and glucose (adding glucose before AgNO3), and 3) CMC only. Under principles of green chemistry, the synthesis was conducted in an aqueous medium exposed to microwave irradiation for 10 minutes with nontoxic chemicals. The structure and formation mechanisms of the three CMC-Ag hybrids were explored using X-ray diffraction, ultraviolet-visible spectroscopy, transmission electron microscopy, and Fourier-transform infrared analyses. Additionally, antimicrobial activity and in vitro silver release of the three synthesized hybrids were investigated in detail. The results revealed that a large number of stable, uniform, and small silver nanoparticles (AgNPs) were synthesized in situ on CMC chains via protocol 1. AgNPs were well dispersed with narrow size distribution in the range of 6–20 nm, with mean diameter only 12.22±2.57 nm. The addition of glucose resulted in greater AgNP synthesis. The order of addition of glucose and AgNO3 significantly affected particle size and size distribution of AgNPs. Compared to CMC alone and commercially available AgNPs, the antimicrobial activities of three hybrids were significantly improved. Of the three hybrids, CMC-Ag1 synthesized via protocol 1 exhibited better antimicrobial activity than CMC-Ag2 and CMC-Ag3, and showed more effective inhibition of Staphylococcus aureus than Escherichia coli. Due to strong coordination and electrostatic interactions between CMC and silver and good steric protection provided by CMC, CMC-Ag1 displayed stable and continuous silver release and better performance in retaining silver for prolonged periods than CMC-Ag2 and CMC-Ag3.
机译:为了制造具有受控银释放的抗菌羧甲基壳聚糖-纳米银(CMC-Ag)杂种,该研究通过三种合成方案证明了可比的形成:1)羧甲基壳聚糖(CMC)和葡萄糖(在AgNO3后添加葡萄糖),2)CMC和葡萄糖(在AgNO3之前添加葡萄糖)和3)仅CMC。根据绿色化学原理,合成是在水介质中用无毒化学品暴露于微波辐照10分钟后进行的。使用X射线衍射,紫外可见光谱,透射电子显微镜和傅里叶变换红外分析法研究了这三种CMC-Ag杂种的结构和形成机理。此外,详细研究了三种合成杂种的抗菌活性和体外银释放。结果表明,通过协议1在CMC链上原位合成了大量稳定,均匀且小的银纳米颗粒(AgNPs)。AgNPs分散良好,粒径分布在6-20 nm范围内,平均直径较窄仅12.22±2.57 nm。葡萄糖的添加导致更大的AgNP合成。葡萄糖和AgNO3的添加顺序显着影响了AgNPs的粒径和粒径分布。与单独的CMC和市售的AgNPs相比,三种杂种的抗菌活性均得到显着提高。在这三个杂种中,通过方案1合成的CMC-Ag1表现出比CMC-Ag2和CMC-Ag3更好的抗菌活性,并且比大肠杆菌更有效地抑制了金黄色葡萄球菌。由于CMC与银之间的强配位和静电相互作用以及CMC提供的良好的空间保护作用,CMC-Ag1表现出稳定且连续的银释放,并且与CMC-Ag2和CMC-Ag3相比,具有更长的保留银的性能。

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