Ganesan Anusiya, Rengarajan Jaiganesh
Department of Biotechnology, School of Bioengineering, Faculty of Engineering and Technology, SRM Institute of Science and Technology (SRM IST), Chengalpattu District, Kattankulathur, Tamil Nadu 603 203 India.
3 Biotech. 2024 Oct;14(10):223. doi: 10.1007/s13205-024-04073-9. Epub 2024 Sep 6.
The emerging field of green synthesis within nanobiotechnology presents significant environmental and economic advantages compared to conventional methodologies. This study investigates the synthesis and application of chitosan nanoparticles (ChNPs) using (CF) leaf extract as a sustainable, and bio-based approach. Characterization of CF-ChNPs confirmed effective bioconversion and also demonstrated significant antimicrobial activity. Notably, CF-ChNPs demonstrated a remarkable antimicrobial effect against , with a zone of inhibition of 17 ± 0.2 mm surpassing the impact on other organisms tested. The CF-ChNPs exhibited an initial burst release of 28 ± 0.28% after 2 h, gradually achieving a controlled release of 76.3 ± 0.43% within 24 h. In addition, CF-ChNPs exhibited an antioxidant activity of 43.1 ± 0.48% and showed excellent antibiofilm activity against in comparison to other organisms. The cell viability assay results have confirmed that CF-ChNPs do not have any negative impact on the viability of L929 fibroblasts, further highlighting their potential as versatile nanomaterials for treating microbial infections and other therapeutic applications.
与传统方法相比,纳米生物技术中新兴的绿色合成领域具有显著的环境和经济优势。本研究探索了使用(CF)叶提取物作为一种可持续的、基于生物的方法来合成和应用壳聚糖纳米颗粒(ChNPs)。CF-ChNPs的表征证实了有效的生物转化,并且还显示出显著的抗菌活性。值得注意的是,CF-ChNPs对 表现出显著的抗菌效果,抑菌圈为17±0.2毫米,超过了对其他测试生物体的影响。CF-ChNPs在2小时后初始突发释放率为28±0.28%,在24小时内逐渐实现76.3±0.43%的控释。此外,CF-ChNPs表现出43.1±0.48%的抗氧化活性,与其他生物体相比,对 表现出优异的抗生物膜活性。细胞活力测定结果证实,CF-ChNPs对L929成纤维细胞的活力没有任何负面影响,进一步突出了它们作为治疗微生物感染和其他治疗应用的多功能纳米材料的潜力。