Faculty of Biotechnology, Al-Qasim Green University, Babylon 51013, Iraq.
Department of Basic Sciences, College of Nursing, University of Misan, Maysan 62001, Iraq.
Molecules. 2020 Oct 17;25(20):4770. doi: 10.3390/molecules25204770.
This paper describes the preparation, characterization, and evaluation of honey/tripolyphosphate (TPP)/chitosan (HTCs) nanofibers loaded with capsaicin derived from the natural extract of hot pepper (.) and loaded with gold nanoparticles (AuNPs) as biocompatible antimicrobial nanofibrous wound bandages in topical skin treatments. The capsaicin and AuNPs were packed within HTCs in HTCs-capsaicin, HTCs-AuNP, and HTCs-AuNPs/capsaicin nanofibrous mats. In vitro antibacterial testing against and was conducted in comparison with difloxacin and chloramphenicol antibiotics. Cell viability and proliferation of the developed nanofibers were evaluated using an MTT assay. Finally, in vivo study of the wound-closure process was performed on New Zealand white rabbits. The results indicate that HTCs-capsaicin and HTCs-AuNPs are suitable in inhibiting bacterial growth compared with HTCs and HTCs-capsaicin/AuNP nanofibers and antibiotics ( < 0.01). The MTT assay demonstrates that the nanofibrous mats increased cell proliferation compared with the untreated control ( < 0.01). In vivo results show that the developed mats enhanced the wound-closure rate more effectively than the control samples. The novel nanofibrous wound dressings provide a relatively rapid and efficacious wound-healing ability, making the obtained nanofibers promising candidates for the development of improved bandage materials.
本文描述了载有辣椒素的蜂蜜/三聚磷酸酯(TPP)/壳聚糖(HTCs)纳米纤维的制备、表征和评价,辣椒素来源于天然辣椒提取物。纳米纤维中还载有金纳米颗粒(AuNPs),可作为生物相容的抗菌纳米纤维状伤口绷带,用于局部皮肤治疗。将辣椒素和 AuNPs 包装在 HTCs 中,制备出 HTCs-capsaicin、HTCs-AuNP 和 HTCs-AuNPs/capsaicin 纳米纤维垫。体外抗菌试验针对 和 进行,与 difloxacin 和氯霉素抗生素进行了比较。采用 MTT 法评估了开发的纳米纤维的细胞活力和增殖。最后,在新西兰白兔上进行了伤口闭合过程的体内研究。结果表明,与 HTCs 和 HTCs-capsaicin/AuNP 纳米纤维和抗生素相比,HTCs-capsaicin 和 HTCs-AuNPs 更适合抑制细菌生长(<0.01)。MTT 试验表明,纳米纤维垫与未处理的对照组相比,能更有效地促进细胞增殖(<0.01)。体内结果表明,与对照组相比,开发的垫更有效地提高了伤口闭合率。新型纳米纤维伤口敷料提供了相对快速和有效的伤口愈合能力,使获得的纳米纤维成为开发改良绷带材料的有前途的候选物。