Bonete JÉssica M, Silva Guilherme D, Guidelli Éder J, GonÇalves Pablo J, Almeida Luciane M, Baffa Oswaldo, Kinoshita Angela
PRPPG, Universidade do Sagrado Coração/USC, Rua Irmã Arminda, 10-50, Bauru, 17011-160 SP, Brazil.
Universidade de São Paulo/FFCLRP, Departamento de Física, Av. Bandeirantes, 3900, 14049-900 Ribeirão Preto, SP, Brazil.
An Acad Bras Cienc. 2020 Nov 16;92(4):e20191584. doi: 10.1590/0001-3765202020191584. eCollection 2020.
In this work, the natural latex extracted from Harconia speciosa was incorporated with silver nanoparticles (AgNP) to compose a functional biomaterial associating the intrinsic angiogenic activity of the latex and the antimicrobial activity of AgNP. Tissue reaction after subcutaneous implantation in dorsum of rats of membranes without AgNP and with 0.05%, 0.4% AgNP was compared at 3, 7 and 25 days. No statistically significant difference in the tissue response of the different biomaterials was observed, indicating that AgNP did not interfere with the inflammatory reaction (p > 0.05) or with the angiogenic activity of latex. Biomembranes were also tested against bacterial biofilm formation by Staphylococcus aureus and the antimicrobial activity of the new biomaterial can be found with bacteria crenation (0.05% AgNP) and no biofilm deposition (0.4% AgNP). Therefore, this biomaterial has interesting properties for the tissue repair process and may be feasible for future applications as dressing.
在这项工作中,从哈科尼亚特种植物中提取的天然乳胶与银纳米颗粒(AgNP)相结合,构成一种功能性生物材料,兼具乳胶固有的血管生成活性和AgNP的抗菌活性。比较了不含AgNP以及含有0.05%、0.4% AgNP的膜在大鼠背部皮下植入3天、7天和25天后的组织反应。不同生物材料的组织反应未观察到统计学上的显著差异,表明AgNP不会干扰炎症反应(p>0.05)或乳胶的血管生成活性。生物膜还针对金黄色葡萄球菌的细菌生物膜形成进行了测试,新生物材料的抗菌活性表现为细菌皱缩(0.05% AgNP)和无生物膜沉积(0.4% AgNP)。因此,这种生物材料在组织修复过程中具有有趣的特性,未来作为敷料应用可能是可行的。