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含丝胶蛋白和聚六亚甲基双胍的细菌纳米纤维素伤口敷料的安全性和有效性:体外、体内及临床研究

The safety and efficacy of bacterial nanocellulose wound dressing incorporating sericin and polyhexamethylene biguanide: in vitro, in vivo and clinical studies.

作者信息

Napavichayanun Supamas, Yamdech Rungnapha, Aramwit Pornanong

机构信息

Bioactive Resources for Innovative Clinical Applications Research Unit, Chulalongkorn University, Bangkok, Thailand.

Department of Pharmacy Practice, Faculty of Pharmaceutical Sciences, Chulalongkorn University, PhayaThai Road, Phatumwan, Bangkok, 10330, Thailand.

出版信息

Arch Dermatol Res. 2016 Mar;308(2):123-32. doi: 10.1007/s00403-016-1621-3. Epub 2016 Jan 21.

Abstract

In our previous work, we have attempted to develop a novel bacterial nanocellulose wound dressing which composed of both polyhexamethylene biguanide (PHMB) as an antimicrobial agent and sericin as an accelerative wound healing component. The loading sequence and concentration of PHMB and sericin were optimized to provide the wound dressing with the most effective antimicrobial activity and enhanced collagen production. In this study, further in vitro, in vivo, and clinical studies of this novel wound dressing were performed to evaluate its safety, efficacy, and applicability. For the in vitro cytotoxic test with L929 mouse fibroblast cells, our novel dressing was not toxic to the cells and also promoted cell migration as good as the commercially available dressing, possibly due to the component of sericin released. When implanted subcutaneously in rats, the lower inflammation response was observed for the novel dressing implanted, comparing to the commercially available dressing. This might be that the antimicrobial PHMB component of the novel dressing played a role to reduce infection and inflammation reaction. The clinical trial patch test was performed on the normal skin of healthy volunteers to evaluate the irritation effect of the dressing. Our novel dressing did not irritate the skin of any volunteers, as characterized by the normal levels of erythema and melanin and the absence of edema, papule, vesicle, and bullae. Then, the novel dressing was applied for the treatment of full-thickness wounds in rats. The wounds treated with our novel dressing showed significantly lower percentage of wound size and higher extent of collagen formation mainly due to the activity of sericin. We concluded that our novel bacterial nanocellulose incorporating PHMB and sericin was a safe and efficient wound dressing material for further investigation in the wound healing efficacy in clinic.

摘要

在我们之前的工作中,我们尝试开发一种新型的细菌纳米纤维素伤口敷料,其由作为抗菌剂的聚六亚甲基双胍(PHMB)和作为促进伤口愈合成分的丝胶蛋白组成。对PHMB和丝胶蛋白的负载顺序及浓度进行了优化,以使伤口敷料具有最有效的抗菌活性并增强胶原蛋白生成。在本研究中,对这种新型伤口敷料进行了进一步的体外、体内及临床研究,以评估其安全性、有效性和适用性。对于用L929小鼠成纤维细胞进行的体外细胞毒性试验,我们的新型敷料对细胞无毒,并且在促进细胞迁移方面与市售敷料一样好,这可能是由于释放出的丝胶蛋白成分所致。当皮下植入大鼠体内时,与市售敷料相比,观察到植入新型敷料的炎症反应较低。这可能是因为新型敷料的抗菌PHMB成分起到了减少感染和炎症反应的作用。在健康志愿者的正常皮肤上进行了临床试验贴片试验,以评估该敷料的刺激效果。我们的新型敷料没有刺激任何志愿者的皮肤,表现为红斑和黑色素水平正常,且没有水肿、丘疹、水疱和大疱。然后,将新型敷料用于治疗大鼠的全层伤口。用我们的新型敷料治疗的伤口显示出伤口面积百分比显著降低,并且由于丝胶蛋白的活性,胶原蛋白形成程度更高。我们得出结论,我们的新型含PHMB和丝胶蛋白的细菌纳米纤维素是一种安全有效的伤口敷料材料,可用于临床伤口愈合疗效的进一步研究。

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