Scandorieiro Sara, Kimura Angela Hitomi, de Camargo Larissa Ciappina, Gonçalves Marcelly Chue, da Silva João Vinícius Honório, Risso Wagner Ezequiel, de Andrade Fábio Goulart, Zaia Cássia Thaïs Bussamra Vieira, Lonni Audrey Alesandra Stinghen Garcia, Dos Reis Martinez Claudia Bueno, Durán Nelson, Nakazato Gerson, Kobayashi Renata Katsuko Takayama
Laboratory of Basic and Applied Bacteriology, Department of Microbiology, Center of Biological Sciences, State University of Londrina, Londrina 86057-970, Brazil.
Laboratory of Innovation and Cosmeceutical Technology, Department of Pharmaceutical Sciences, Center of Health Sciences, University Hospital of Londrina, Londrina 86038-350, Brazil.
Microorganisms. 2023 Jul 15;11(7):1815. doi: 10.3390/microorganisms11071815.
Wound infections are feared complications due to their potential to increase healthcare costs and cause mortality since multidrug-resistant bacteria reduce treatment options. This study reports the development of a carbomer hydrogel containing biogenic silver nanoparticles (bioAgNPs) and its effectiveness in wound treatment. This hydrogel showed in vitro bactericidal activity after 2 h, according to the time-kill assay. It also reduced bacterial contamination in rat wounds without impairing their healing since the hydrogel hydrophilic groups provided hydration for the injured skin. The high number of inflammatory cells in the first days of the skin lesion and the greater degree of neovascularization one week after wound onset showed that the healing process occurred normally. Furthermore, the hydrogel-containing bioAgNPs did not cause toxic silver accumulation in the organs and blood of the rats. This study developed a bioAgNP hydrogel for the treatment of wounds; it has a potent antimicrobial action without interfering with cicatrization or causing silver bioaccumulation. This formulation is effective against bacteria that commonly cause wound infections, such as and , and for which new antimicrobials are urgently needed, according to the World Health Organization's warning.
伤口感染令人担忧,因为多药耐药细菌减少了治疗选择,其有可能增加医疗成本并导致死亡。本研究报告了一种含有生物源银纳米颗粒(bioAgNPs)的卡波姆水凝胶的研发及其在伤口治疗中的有效性。根据时间杀灭试验,这种水凝胶在2小时后显示出体外杀菌活性。它还减少了大鼠伤口中的细菌污染,同时不影响伤口愈合,因为水凝胶的亲水基团为受损皮肤提供了水合作用。皮肤损伤初期大量的炎症细胞以及伤口出现一周后更高程度的新血管形成表明愈合过程正常进行。此外,含有bioAgNPs的水凝胶不会在大鼠的器官和血液中导致有毒的银积累。本研究开发了一种用于伤口治疗的bioAgNP水凝胶;它具有强大的抗菌作用,不会干扰瘢痕形成或导致银生物积累。根据世界卫生组织的警告,这种制剂对常见引起伤口感染的细菌(如……和……)有效,而对于这些细菌,迫切需要新的抗菌药物。