基于纳米二氧化硅的吸附性亲水/疏水组合物在烧伤患者治疗中的局部应用的临床和微生物学证实

R. Chornopyshchuk, V. Nagaichuk, I. Gerashchenko, O. Nazarchuk, S.A. Sidorenkov, O. Chepliaka, L. Sidorenko
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引用次数: 0

摘要

关联治疗烧伤患者的一种有前景的方法是局部使用具有抗菌性能的吸附剂。目的:对一种新型纳米二氧化硅吸附组合物的抗菌性能进行实验研究,并对其在烧伤患者综合治疗中的局部应用效果进行临床评价。材料和方法。建议的吸附纳米组合物包括高度分散的二氧化硅、聚甲基硅氧烷、十甲氧星、甲硝唑。该实验研究涉及吸附纳米组合物及其抗菌剂的抗菌性能研究。临床材料包括42名IIab III度烧伤患者的检查结果,烧伤面积为体表的10-30%。根据局部治疗策略,将患者分为2组:在早期necomy切除、异种皮成形术后,主要组(n=20)的患者的伤口表面用十甲氧星溶液与相同的吸附粉末联合治疗。对照组(n=22)的治疗相似,只是使用了吸附药物。检查包括在第3天、第7天和第14天对受伤区域进行目视检查,并对伤口内容物进行微生物监测。后果所获得的结果证实了所研究的吸附纳米组合物具有足够的抗菌潜力,其性能不劣于现有的用于博物馆和临床微生物和真菌菌株的防腐剂。观察到主要组患者伤口愈合过程更有利的迹象:伤口清洁更快,炎症反应更少,伤口移植准备时间更短。结论。所获得的结果令人信服地表明,基于纳米二氧化硅和抗菌成分的多组分复合材料在烧伤患者综合治疗中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CLINICAL AND MICROBIOLOGICAL SUBSTANTIATION OF TOPICAL APPLICATION OF SORPTION HYDROPHILIC/HYDROPHOBIC COMPOSITION BASED ON NANOSILICA IN THE TREATMENT OF PATIENTS WITH BURNS
Relevance.One of the promising methods of treatment of patients with burns is the local use of sorption agents with antimicrobial properties. Objective: experimental study of antimicrobial properties and clinical evaluation of the effectiveness of local use of a new sorption composition based on nanosilica in the complex treatment of patients with burns. Materials and methods. The suggested sorption nanocomposition included highly dispersed silicon dioxide, polymethylsiloxane, decamethoxine, metronidazole. The experimental study involved the study of the antimicrobial properties of the sorption nanocomposition and antimicrobial agents which are part of it. The clinical material consisted of the results of examination of 42 patients with IIab-III degree burns with an area of 10-30% of the body surface. Depending on the tactics of local treatment, patients were divided into 2 groups: after early necrectomy, xenodermoplasty, the wound surface of the patients in the main group (n = 20) was treated with a solution of decamethoxine in combination with the same sorption powder. Treatment in the comparison group (n = 22) was similar except the use of sorption drugs. The examination included visual inspection of the injured area in combination with microbiological monitoring of the wound contents on the 3rd,7th,14th day. Results. The obtained results confirmed the sufficient antimicrobial potential of the studied sorption nanocomposition, the properties of which are not inferior to the existing antiseptics for museum and clinical strains of microorganisms and fungi. Signs of a more favorable wound healing process of the patients in the main group were observed: faster wound cleaning, less inflammatory reactions and much shorter preparation of wounds for grafting. Conclusions. The obtained results convincingly indicate the effectiveness of a multicomponent composite based on nanosilica with antimicrobial components in a comprehensive treatment of patients with burns.
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