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Endotoxin testing of a wound debridement device containing medicinal Lucilia sericata larvae

机译:含药用Lucilia sericata幼虫的伤口清创器械的内毒素测试

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摘要

Alimentary products of medicinal Lucilia sericata larvae are studied to determine their mechanisms of action, particularly in the contexts of wound debridement and disinfection. Furthermore, the larvae can be applied to patients in contained devices, such as the BioBag (BioMonde). Here, we tested the materials and larval content of the most commonly used BioBag (the “BB-50”) to explore the possibility that endotoxins may be contributing to the bio-activity of the product, given that endotoxins are potent stimulants of cellular activation. Using standardised protocols to collect larval alimentary products (LAP), we proceeded to determine residual endotoxin levels in LAP derived from the BioBag, before and after the neutralisation of interfering enzymatic activity. The BB-50 device and its associated larval content was not a significant source of LPS activity. However, it is clear from these experiments that a failure to remove the confounding serine proteinase activity would have resulted in spuriously high and erroneous results. The residual LPS levels detected are unlikely to be active in wound healing assays, following cross-referencing to publications where LPS at much higher levels has been shown to have positive and negative effects on processes associated with wound repair and tissue regeneration.
机译:研究了药用药用药用Lucilia sericata幼虫的食品,以确定其作用机理,尤其是在伤口清创和消毒的情况下。此外,幼虫可以在诸如BioBag(BioMonde)之类的封闭装置中应用于患者。在这里,我们测试了最常用的BioBag(“ BB-50”)的材料和幼虫含量,以探讨内毒素可能对产品的生物活性作出贡献的可能性,因为内毒素是细胞激活的有效刺激剂。使用标准化协议收集幼虫消化产物(LAP),我们在中和干扰酶活性之前和之后,确定了来自BioBag的LAP中残留的内毒素水平。 BB-50设备及其相关的幼体含量并不是LPS活性的重要来源。但是,从这些实验中可以清楚地看出,未能消除混杂的丝氨酸蛋白酶活性将导致虚假的高错误结果。在交叉引用出版物后,已检测到的残留LPS水平在伤口愈合试验中不太可能起作用,其中已显示出高得多的LPS水平对与伤口修复和组织再生相关的过程具有正面和负面影响。

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