Institute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi VO 31, St. Petersburg 199004, Russian Federation.
Institute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi VO 31, St. Petersburg 199004, Russian Federation; Institute of Chemistry, St. Petersburg State University, Universitetskii 26, St. Petersburg, Petrodvorets, 198504, Russian Federation.
Int J Biol Macromol. 2022 Aug 31;215:243-252. doi: 10.1016/j.ijbiomac.2022.06.080. Epub 2022 Jun 17.
The development of nanotechnology-based antibiotic delivery systems (nanoantibiotics) is an important challenge in the effort to combat microbial multidrug resistance. These systems have improved biopharmaceutical characteristics by increasing local bioavailability and reducing systemic toxicity and the number and frequency of drug side effects. Conjugation of low -molecular -weight antibacterial agents with natural polysaccharides is an effective strategy for developing optimal targeted delivery systems with programmed release and reduced cytotoxicity. This study describes the synthesis of conjugates of colistin (CT) and hyaluronic acid (HA) using carbodiimide chemistry to conjugate the amino groups of CT with the carboxyl groups of HA. The obtained polysaccharide carriers had a degree of substitution (DS) with CT molecules of 3-10 %, and the CT content was 129-377 μg/mg. The size of the fabricated particles was 300-600 nm; in addition, there were conjugates in the form of single macromolecules (30-50 nm). The ζ-potential of developed systems was about -20 mV. In vitro release studies at pH 7.4 and pH 5.2 showed slow hydrolysis of amide bonds, with a CT release of 1-5 % after 24 h. The conjugates retained antimicrobial activity depending on the DS: at DS 8 %, the minimum inhibitory concentration (MIC) of the conjugate corresponded to the MIC of free CT. The resulting systems also reduced CT nephrotoxicity by 20-50 %. These new conjugates of CT with HA are promising for the development of nanodrugs for safe and effective antimicrobial therapy.
基于纳米技术的抗生素递药系统(纳米抗生素)的开发是应对微生物多重耐药性挑战的重要方向。这些系统通过提高局部生物利用度、降低系统毒性以及减少药物副作用的数量和频率,改善了生物制药特性。将低分子量抗菌剂与天然多糖缀合是开发具有编程释放和降低细胞毒性的最佳靶向递药系统的有效策略。本研究描述了使用碳二亚胺化学将黏菌素(CT)与透明质酸(HA)的氨基与羧基缀合,合成 CT 和 HA 的缀合物。所得多糖载体的取代度(DS)为 CT 分子的 3-10%,CT 含量为 129-377μg/mg。所制备颗粒的粒径为 300-600nm;此外,还有以单大分子形式存在的缀合物(30-50nm)。开发系统的 ζ-电位约为-20mV。在 pH 7.4 和 pH 5.2 下的体外释放研究表明酰胺键缓慢水解,24 小时后 CT 释放 1-5%。缀合物保留了抗菌活性,这取决于 DS:在 DS 8%时,缀合物的最小抑菌浓度(MIC)相当于游离 CT 的 MIC。所得系统还使 CT 的肾毒性降低了 20-50%。CT 与 HA 的这些新缀合物有望用于开发安全有效的抗菌治疗纳米药物。