Chopra Meenu, Bernela Manju, Kaur Pawan, Manuja Anju, Kumar Balvinder, Thakur Rajesh
Int J Biol Macromol. 2015 Jan;72:827-33. doi: 10.1016/j.ijbiomac.2014.09.037.
Zinc oxide nanoparticles (ZnO nps) are known to be effective against a wide array of microorganisms. At nanoscale, they have higher toxicity and they need to be rendered less toxic and more biocompatible. To achieve this, ZnO nps were incorporated in nanohydrogel particles made out of sodium alginate/gum acacia and cross-linker glutaraldehyde in order to ensure their gradual and sustained release instead of burst release, and hence lowering their toxicity. The particles synthesized were in the nano-range, i.e., 70-100 nm size and their in vitro release studies indicated that release of upto 68% of ZnO nps was prolonged to over 2 weeks following the Higuchi model. Cytotoxicity studies on vero cell line (African green monkey kidney cell line) revealed that toxicity of ZnO nps-loaded nanohydrogels was substantially lower as compared to ZnO nps. At the same time, it demonstrated desired level of antibiotic activity against Pseudomonas aeruginosa, an antibiotic resistant microbial model. In conclusion, this work led to successful preparation of novel formulation of ZnO incorporated in nanohydrogels that are not only safer but also retain adequate antibacterial activity due to their ability for gradual and sustained release of the active constituent.
已知氧化锌纳米颗粒(ZnO nps)对多种微生物有效。在纳米尺度下,它们具有更高的毒性,需要降低毒性并提高生物相容性。为实现这一点,将ZnO nps掺入由海藻酸钠/阿拉伯胶和交联剂戊二醛制成的纳米水凝胶颗粒中,以确保其逐渐和持续释放而非突发释放,从而降低其毒性。合成的颗粒处于纳米范围,即尺寸为70 - 100纳米,其体外释放研究表明,按照Higuchi模型,高达68%的ZnO nps释放可延长至超过2周。对非洲绿猴肾细胞系(vero细胞系)的细胞毒性研究表明,与ZnO nps相比,负载ZnO nps的纳米水凝胶的毒性显著更低。同时,它对耐药微生物模型铜绿假单胞菌表现出所需水平的抗菌活性。总之,这项工作成功制备了掺入纳米水凝胶中的新型ZnO制剂,该制剂不仅更安全,而且由于其能够逐渐和持续释放活性成分而保留了足够的抗菌活性。