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首页> 外文期刊>International Journal of Nanomedicine >Enzyme-responsive nanocomposites for wound infection prophylaxis in burn management: in?vitro evaluation of their compatibility with healing processes
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Enzyme-responsive nanocomposites for wound infection prophylaxis in burn management: in?vitro evaluation of their compatibility with healing processes

机译:酶反应性纳米复合材料可预防烧伤创面感染:在体外评估其与愈合过程的相容性

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Abstract: Responsive, theranostic nanosystems, capable of both signaling and treating wound infections, is a sophisticated approach to reduce the most common and potentially traumatizing side effects of burn wound treatment: slowed wound healing due to prophylactic anti-infective drug exposure as well as frequent painful dressing changes. Antimicrobials as well as dye molecules have been incorporated into biodegradable nanosystems that release their content only in the presence of pathogens. Following nanocarrier degradation by bacterial enzymes, any infection will thus emit a visible signal and be effectively treated at its source. In this study, we investigated the effect of fluorescent-labeled hyaluronan nanocapsules containing polyhexanide biguanide and poly-L-lactic acid nanoparticles loaded with octenidine on primary human dermal microvascular endothelial cells, which play a major role in cutaneous wound healing. Microscopic and flow cytometric analysis indicated a time-dependent uptake of both the nanocapsules and the nanoparticles. However, enzyme immunoassays showed no significant influence on the expression of pro-inflammatory cell adhesion molecules and cytokines by the endothelial cells. Under angiogenic-stimulating conditions, the potential to form capillary-like structures in co-culture with dermal fibroblasts was not inhibited. Furthermore, cytotoxicity studies (the MTS and crystal violet assay) after short- and long-term exposure to the materials demonstrated that both systems exhibited less toxicity than solutions of the antiseptic agents alone in comparable concentrations. The results indicate that responsive antimicrobial nanocomposites could be used as an advanced drug delivery system and a promising addition to current best practice wound infection prophylaxis with few side effects.
机译:摘要:具有响应能力的治疗学纳米系统,能够同时发出信号并治疗伤口感染,是一种复杂的方法,可以减少烧伤创面治疗最常见和潜在的创伤性副作用:由于预防性抗感染药物的暴露以及频繁的使用,伤口愈合缓慢痛苦的换药。抗菌剂和染料分子已被掺入可生物降解的纳米系统,该系统仅在病原体存在的情况下释放其含量。在纳米载体被细菌酶降解后,任何感染都将因此发出可见信号,并在其来源得到有效治疗。在这项研究中,我们调查了荧光标记的透明质酸纳米胶囊,其中含有聚己二烯双胍和载有辛烯啶的聚L-乳酸纳米颗粒对人皮肤真皮微血管内皮细胞的影响,后者在皮肤伤口愈合中起着主要作用。显微镜和流式细胞仪分析表明纳米胶囊和纳米颗粒的时间依赖性摄取。然而,酶免疫测定对内皮细胞对促炎细胞粘附分子和细胞因子的表达没有显着影响。在血管生成刺激条件下,与皮肤成纤维细胞共培养形成毛细血管状结构的可能性没有受到抑制。此外,短期和长期接触该物质后的细胞毒性研究(MTS和结晶紫测定)表明,与可比较浓度的单独杀菌剂溶液相比,两种系统均显示出更低的毒性。结果表明,响应性抗菌纳米复合材料可以用作先进的药物输送系统,并且是当前最佳的预防伤口感染最佳方法,且副作用很少。

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