Bera Smritilekha, Mondal Dhananjoy
School of Chemical Sciences, Central University of Gujarat, Gandhinagar 382030, India.
ACS Omega. 2022 Feb 6;7(6):4724-4734. doi: 10.1021/acsomega.1c04399. eCollection 2022 Feb 15.
The widespread use of broad-spectrum aminoglycoside antibiotics is restricted from various clinical applications due to the emergence of bacterial resistance and the adverse effects such as ototoxicity and nephrotoxicity. The intensive applicability of nanoparticles in modern medicinal chemistry has gained the interest of researchers for modification of aminoglycosides as nanoconjugates either via covalent conjugation or physical interactions to alleviate their undesirable effects and bacterial resistance. In this context, various carbohydrates, polymers, lipids, silver, gold, and silica-attached aminoglycoside nanoparticles have been reported with improvements in physicochemical properties, bioavailability, and biocompatibility in physiological medium. Overall, this review encompassed the synthesis of nanostructured aminoglycosides and their applications in the development of new antibacterial therapeutics.
由于细菌耐药性的出现以及耳毒性和肾毒性等不良反应,广谱氨基糖苷类抗生素在各种临床应用中的广泛使用受到限制。纳米颗粒在现代药物化学中的广泛应用引起了研究人员的兴趣,他们通过共价结合或物理相互作用将氨基糖苷修饰为纳米共轭物,以减轻其不良影响和细菌耐药性。在这种背景下,已经报道了各种碳水化合物、聚合物、脂质、银、金和二氧化硅附着的氨基糖苷纳米颗粒,它们在生理介质中的物理化学性质、生物利用度和生物相容性都有所改善。总体而言,本综述涵盖了纳米结构氨基糖苷的合成及其在新型抗菌治疗药物开发中的应用。