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Ionic silver functionalized ovine forestomach matrix – a non-cytotoxic antimicrobial biomaterial for tissue regeneration applications

机译:离子银功能化的羊前胃基质–一种用于组织再生应用的无细胞毒性的抗菌生物材料

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Background Antimicrobial technologies, including silver-containing medical devices, are increasingly utilized in clinical regimens to mitigate risks of microbial colonization. Silver-functionalized resorbable biomaterials for use in wound management and tissue regeneration applications have a narrow therapeutic index where antimicrobial effectiveness may be outweighed by adverse cytotoxicity. We examined the effects of ionic silver functionalization of an extracellular matrix (ECM) biomaterial derived from ovine forestomach (OFM-Ag) in terms of material properties, antimicrobial effectiveness and cytotoxicity profile. Methods Material properties of OFM-Ag were assessed by via biochemical analysis, microscopy, atomic absorption spectroscopy (AAS) and differential scanning calorimetry. The silver release profile of OFM-Ag was profiled by AAS and antimicrobial effectiveness testing utilized to determine the minimum effective concentration of silver in OFM-Ag in addition to the antimicrobial spectrum and wear time. Biofilm prevention properties of OFM-Ag in comparison to silver containing collagen dressing materials was quantified via in vitro crystal violet assay using a polymicrobial model. Toxicity of ionic silver, OFM-Ag and silver containing collagen dressing materials was assessed toward mammalian fibroblasts using elution cytoxicity testing. Results OFM-Ag retained the native ECM compositional and structural characteristic of non-silver functionalized ECM material while imparting broad spectrum antimicrobial effectiveness toward 11 clinically relevant microbial species including fungi and drug resistant strains, maintaining effectiveness over a wear time duration of 7-days. OFM-Ag demonstrated significant prevention of polymicrobial biofilm formation compared to non-antimicrobial and silver-containing collagen dressing materials. Where silver-containing collagen dressing materials exhibited cytotoxic effects toward mammalian fibroblasts, OFM-Ag was determined to be non-cytotoxic, silver elution studies indicated sustained retention of silver in OFM-Ag as a possible mechanism for the attenuated cytotoxicity. Conclusions This work demonstrates ECM biomaterials may be functionalized with silver to favourably shift the balance between detrimental cytotoxic potential and beneficial antimicrobial effects, while preserving the ECM structure and function of utility in tissue regeneration applications.
机译:背景技术包括含银医疗器械在内的抗微生物技术越来越多地用于临床方案中,以减轻微生物定植的风险。用于伤口处理和组织再生应用的银功能化可吸收生物材料具有较窄的治疗指数,其中不良的细胞毒性可能会超过其抗菌效果。我们从材料特性,抗菌效果和细胞毒性方面研究了源自羊前胃病(OFM-Ag)的细胞外基质(ECM)生物材料的离子银功能化的影响。方法通过生化分析,显微镜,原子吸收光谱法和差示扫描量热法对OFM-Ag的材料性能进行评估。通过AAS分析了OFM-Ag的银释放曲线,并进行了抗菌效果测试,以确定除抗菌谱和磨损时间外,OFM-Ag中银的最低有效浓度。与含银的胶原敷料材料相比,OFM-Ag的生物膜预防性能通过使用多菌种模型的体外结晶紫测定进行了定量。使用洗脱细胞毒性测试评估了离子银,OFM-Ag和含银胶原敷料材料对哺乳动物成纤维细胞的毒性。结果OFM-Ag保留了非银功能化ECM材料的天然ECM组成和结构特征,同时对11种临床相关微生物(包括真菌和耐药菌株)赋予了广谱抗菌效力,并在7天的磨损时间内保持了效力。与非抗菌和含银的胶原蛋白敷料相比,OFM-Ag表现出显着的微生物生物膜形成预防作用。当含银的胶原蛋白敷料对哺乳动物的成纤维细胞表现出细胞毒性作用时,OFM-Ag被确定为无细胞毒性,银洗脱研究表明银在OFM-Ag中的持续保留是减弱细胞毒性的一种可能机制。结论这项工作表明ECM生物材料可以用银进行功能化,以有利地改变有害细胞毒性潜力和有益抗菌作用之间的平衡,同时保留ECM结构和在组织再生应用中的效用功能。

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