School of Food and Biological Engineering, Hefei University of Technology, Hefei, Anhui 230009, P. R. China.
J Mater Chem B. 2020 Apr 21;8(15):3010-3015. doi: 10.1039/d0tb00161a. Epub 2020 Mar 23.
The famous chromogenic reaction between starch and iodine has been widely used for chemical analysis since its first discovery in the year of 1814 while it is seldom utilized in biomedical applications. Inspired by their high iodine content and strong optical absorbance in the near infrared (NIR) region, monodisperse amylose-iodine nanoparticles (AM-I NPs), synthesized by simple mixing of amylose NPs and KI-I solutions, were explored as a new class of high-performance antibacterial agent. Benefiting from the broad-spectrum antibacterial property of iodine and photothermal effect of the amylose-iodine complex, the obtained AM-I NPs exhibited an excellent photothermal-enhanced sterilization effect for both Gram-negative Escherichia coli (E. coli) and Gram-positive methicillin-resistant Staphylococcus aureus (MRSA). For instance, upon incubation with AM-I NP suspensions (30 μg mL) plus NIR laser irradiation (808 nm, 1.33 W cm, 5 min), the relative survival rates of E. coli and MRSA were only 1.2% and 1.7%, respectively. In addition, the AM-I NPs depicted better biocompatibility in vitro than that of KI-I solution, indicating their safety for potential biomedical applications in vivo. This proof-of-concept study revealed the antibacterial applications of a traditional starch-iodine complex and is expected to provide insights into the design and development of efficient broad-spectrum antibacterial agents.
自 1814 年首次发现淀粉与碘之间的著名显色反应以来,它已被广泛应用于化学分析领域,但在生物医学应用中却很少使用。受其高碘含量和近红外(NIR)区域强吸光度的启发,通过简单混合直链淀粉 NPs 和 KI-I 溶液合成的单分散直链淀粉-碘纳米颗粒(AM-I NPs)被探索作为一类新型高性能抗菌剂。得益于碘的广谱抗菌性能和直链淀粉-碘复合物的光热效应,所获得的 AM-I NPs 对革兰氏阴性大肠杆菌(E. coli)和革兰氏阳性耐甲氧西林金黄色葡萄球菌(MRSA)均表现出优异的光热增强杀菌效果。例如,在用 AM-I NP 悬浮液(30μgmL)孵育后加近红外激光照射(808nm,1.33Wcm,5min),大肠杆菌和 MRSA 的相对存活率分别仅为 1.2%和 1.7%。此外,与 KI-I 溶液相比,AM-I NPs 在体外表现出更好的生物相容性,表明其在体内潜在的生物医学应用中的安全性。这项概念验证研究揭示了传统淀粉-碘复合物的抗菌应用,并有望为高效广谱抗菌剂的设计和开发提供思路。