Siddhardha Busi, Pandey Uday, Kaviyarasu K, Pala Rajasekharreddy, Syed Asad, Bahkali Ali H, Elgorban Abdallah M
Department of Microbiology, School of Life Sciences, Pondicherry University, Puducherry 605014, India.
Nanosciences African network (NANOAFNET), Materials Research Group (MRG), iThemba LABS-National Research Foundation (NRF), Old Faure Road, 7129, P O Box 722, Somerset West, Western Cape Province, South Africa.
Pathogens. 2020 Feb 12;9(2):115. doi: 10.3390/pathogens9020115.
The application of nanotechnology in medicine is gaining popularity due to its ability to increase the bioavailability and biosorption of numerous drugs. Chrysin, a flavone constituent of is well-reported for its biological properties. However, its therapeutic potential has not been fully exploited due to its poor solubility and bioavailability. In the present study, chrysin was encapsulated into chitosan nanoparticles using TPP as a linker. The nanoparticles were characterized and investigated for their anti-biofilm activity against . At sub-Minimum Inhibitory Concentration, the nanoparticles exhibited enhanced anti-biofilm efficacy against as compared to its bulk counterparts, chrysin and chitosan. The decrease in the cell surface hydrophobicity and exopolysaccharide production indicated the inhibitory effect of the nanoparticles on the initial stages of biofilm development. The growth curve analysis revealed that at a sub-MIC, the nanoparticles did not exert a bactericidal effect against . The findings indicated the anti-biofilm activity of the chrysin-loaded chitosan nanoparticles and their potential application in combating infections associated with .
由于纳米技术能够提高多种药物的生物利用度和生物吸附性,其在医学领域的应用越来越受到欢迎。白杨素是一种黄酮类成分,因其生物学特性而有大量报道。然而,由于其溶解度和生物利用度较差,其治疗潜力尚未得到充分开发。在本研究中,使用TPP作为连接剂将白杨素包裹在壳聚糖纳米颗粒中。对纳米颗粒进行了表征,并研究了它们对……的抗生物膜活性。在亚最低抑菌浓度下,与白杨素和壳聚糖的本体对应物相比,纳米颗粒对……表现出增强的抗生物膜功效。细胞表面疏水性和胞外多糖产生的降低表明纳米颗粒对生物膜形成初始阶段的抑制作用。生长曲线分析表明,在亚最低抑菌浓度下,纳米颗粒对……没有杀菌作用。研究结果表明了负载白杨素的壳聚糖纳米颗粒的抗生物膜活性及其在对抗与……相关感染中的潜在应用。