Li Shuo, Shi Li, Ye Ting, Huang Biao, Qin Yuan, Xie Yongkang, Ren Xiaoyuan, Zhao Xueqin
Zhejiang Provincial Key Laboratory of Silkworm Bioreactor and Biomedicine, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Polymers (Basel). 2023 Feb 21;15(5):1077. doi: 10.3390/polym15051077.
Antibiotic abuse in the conventional treatment of microbial infections, such as inflammatory bowel disease, induces cumulative toxicity and antimicrobial resistance which requires the development of new antibiotics or novel strategies for infection control. Crosslinker-free polysaccharide-lysozyme microspheres were constructed via an electrostatic layer-by-layer self-assembly technique by adjusting the assembly behaviors of carboxymethyl starch (CMS) on lysozyme and subsequently outer cationic chitosan (CS) deposition. The relative enzymatic activity and in vitro release profile of lysozyme under simulated gastric and intestinal fluids were investigated. The highest loading efficiency of the optimized CS/CMS-lysozyme micro-gels reached 84.9% by tailoring CMS/CS content. The mild particle preparation procedure retained relative activity of 107.4% compared with free lysozyme, and successfully enhanced the antibacterial activity against due to the superposition effect of CS and lysozyme. Additionally, the particle system showed no toxicity to human cells. In vitro digestibility testified that almost 70% was recorded in the simulated intestinal fluid within 6 h. Results demonstrated that the cross-linker-free CS/CMS-lysozyme microspheres could be a promising antibacterial additive for enteric infection treatment due to its highest effective dose (573.08 μg/mL) and fast release at the intestinal tract.
在传统的微生物感染治疗中,如炎症性肠病,抗生素滥用会导致累积毒性和抗菌耐药性,这就需要开发新的抗生素或新的感染控制策略。通过静电层层自组装技术,通过调节羧甲基淀粉(CMS)在溶菌酶上的组装行为,随后进行外层阳离子壳聚糖(CS)沉积,构建了无交联剂的多糖-溶菌酶微球。研究了溶菌酶在模拟胃液和肠液中的相对酶活性和体外释放曲线。通过调整CMS/CS含量,优化后的CS/CMS-溶菌酶微凝胶的最高负载效率达到84.9%。与游离溶菌酶相比,温和的颗粒制备过程保留了107.4%的相对活性,并且由于CS和溶菌酶的叠加效应,成功增强了对……的抗菌活性。此外,该颗粒系统对人体细胞无毒。体外消化试验表明,在6小时内,模拟肠液中的消化率几乎达到70%。结果表明,无交联剂的CS/CMS-溶菌酶微球因其最高有效剂量(573.08μg/mL)和在肠道的快速释放,可能是一种有前途的肠道感染治疗抗菌添加剂。