Bacterial cellulose membrane incorporated with silver nanoparticles for wound healing in animal model

化学 伤口愈合 体内 血管生成 一氧化氮 生物化学 银纳米粒子 氧化应激 细菌纤维素 光毒性 药理学 生物物理学 纤维素 体外 免疫学 材料科学 生物 纳米颗粒 癌症研究 纳米技术 有机化学 生物技术
作者
Lauriene Luiza de Souza Munhoz,Miriã Tonus O. Alves,Beatriz Candido Alves,Maria Gabriela F.S. Nascimento,Rafael Miguel Sábio,Karyn F. Manieri,Hernane da Silva Barud,Marcelo Augusto Marretto Esquisatto,Andréa Aparecida de Aro,Laura de Roch Casagrande,Paulo César Lock Silveira,Gláucia Maria Tech dos Santos,Thiago Antônio Moretti de Andrade,Guilherme Ferreira Caetano
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier BV]
卷期号:654: 47-54 被引量:10
标识
DOI:10.1016/j.bbrc.2023.02.058
摘要

The bacterial cellulose membrane (CM) is a promising biomaterial due to its easy applicability and moist environment. Moreover, nanoscale silver compounds (AgNO3) are synthesized and incorporated into CMs to provide these biomaterials with antimicrobial activity for wound healing. This study aimed to evaluate the cell viability of CM incorporated with nanoscale silver compounds, determine the minimum inhibitory concentration (MIC) for Escherichia coli and Staphylococcus aureus, and its use on in vivo skin lesions. Wistar rats were divided according to treatment: untreated, CM (cellulose membrane), and AgCM (CM incorporated with silver nanoparticles). The euthanasia was performed on the 2nd, 7th, 14th, and 21st days to assess inflammation (myeloperoxidase-neutrophils, N-acetylglucosaminidase-macrophage, IL-1β, IL-10), oxidative stress (NO-nitric oxide, DCF-H2O2), oxidative damage (carbonyl: membrane's damage; sulfhydryl: membrane's integrity), antioxidants (superoxide dismutase; glutathione), angiogenesis, tissue formation (collagen, TGF-β1, smooth muscle α-actin, small decorin, and biglycan proteoglycans). The use of AgCM did not show toxicity, but antibacterial effect in vitro. Moreover, in vivo, AgCM provided balanced oxidative action, modulated the inflammatory profile due to the reduction of IL-1β level and increase in IL-10 level, in addition to increased angiogenesis and collagen formation. The results suggest the use of silver nanoparticles (AgCM) enhanced the CM properties by providing antibacterial properties, modulation the inflammatory phase, and consequently promotes the healing of skin lesions, which can be used clinically to treat injuries.
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