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The application possibility of acellular dermal matrix decorated with nano-silver in the reconstruction of contaminated abdominal wall

机译:纳米银中染色腹壁重建中纳米银装饰的施用可能性

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摘要

Acellular dermal matrix (ADM) is a biomaterial, which commonly used for repair of tissue defects; however, infection is the main factor underlying the failure of treatments involving ADM. To enhance the anti-infection ability of ADM, we constructed a new form of ADM that was decorated with nano-silver ('NS-ADM'). The introduction of nano-silver did not destroy the decellularized structure of ADM, and no significant difference was detected with regards to the maximum tensile force when compared between NS-ADM and ADM (P = 0.351). NS ADM was not cytotoxic to cell growth when the concentration of nano-silver solution = 25 ppm and exhibited strong antibacterial activity in vitro. Besides, when rats were inoculated with 10(4) CFU/mL, there were significantly lower bacterial counts in the NS-ADM group than in the ADM group when assessed seven days after surgery (P = 0.047); no significant differences were detected on days 14 and 28. Although there were no significant differences in bacterial counts on days 7, 14, or 21 between the two groups (rats were inoculated with 10(6) CFU/mL), the number of rats showing reduced bacterial counts or clearing was higher in the NS-ADM group than in the ADM group. Rats that were inoculated with 10(8) CFU/mL showed repair failure. Overall, NS-ADM is a promising antibacterial biomaterial for repairing contaminated soft-tissue defects, in which antibacterial properties are superior to ADM. The antibacterial activity of NS-ADM was limited for severe infections, and further in vivo studies are needed to evaluate its efficacy and biosafety.
机译:无细胞皮肤基质(ADM)是一种生物材料,其常用于修复组织缺陷;然而,感染是涉及ADM的治疗失败的主要因素。为了提高ADM的抗感染能力,我们构建了一种新的ADM形式,装饰着纳米银('NS-ADM')。纳米银的引入没有破坏ADM的脱细胞结构,并且在NS-ADM和ADM(P = 0.351)之间的最大拉力方面没有检测到显着差异。当纳米银溶液浓度<= 25ppm浓度并在体外表现出强烈的抗菌活性时,NS ADM对细胞生长并非细胞毒性。此外,当用10(4)个CFU / mL接种大鼠时,在手术后7天评估时,NS-ADM组在NS-ADM组中的细菌计数显着降低(P = 0.047);在第14天和28日没有检测到显着差异。尽管两组之间的第7,14或21天没有显着差异(大鼠用10(6)CFU / mL),但大鼠的数量在NS-ADM组中显示出降低的细菌计数或清除比ADM组更高。接种10(8)个CFU / mL的大鼠显示修复失败。总体而言,NS-ADM是修复受污染的软组织缺陷的有前途的抗菌生物材料,其中抗菌性质优于ADM。 NS-ADM的抗菌活性受到严重感染的限制,需要进一步在体内研究中来评估其疗效和生物安全性。

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