Antibacterial and Antimycotic Properties of Modified Carbon Sorbents

V. Dolgikh, L. P’yanova, A. V. Lavrenov, E. V. Naumkina, A. V. Sedanova, M. S. Delyagina, D. N. Ogurtsova
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Abstract

The aim  of the work was to study the biological activity  of modifiers and carbon  sorbent samples modified by them  in relation to some types of microorganisms.Material and  methods. The carbon  sorbent under  study  and the modified samples were obtained at the Center of New Chemical Technologies BIC. Glycolic acid, lactic acid, glycine, and glutamic acid were used as modifiers. Strains of Staphylococcus aureus ATCC 25923, Pseudomonas aeruginosa ATCC 27853, Klebsiella pneumoniae 418, Esherichia coli ATCC 25922, Candida albicans (clinical strain) were used as test cultures. The test sample was placed in the wells of a sterile plate, then a working suspension of the test culture was added in the amount of 2.0 ml until completely wet 1:1. The survival of microorganisms was determined by quantitative inoculation from each well of the «sample — microorganism» mixture on Petri dishes with simple nutrient agar using the sector crop method (Gold). The culture species were confirmed by studying their cultural, morphological, and biochemical properties.Results. The conducted studies have demonstrated high antibacterial and antimycotic activity of carbon  sorbent samples modified with hydroxyl acids  in relation to the most  common opportunistic pathogens of pyoinflammatory diseases of bacterial and fungal  nature  in comparison with the initial  sorbent sample. The carbon  sorbent modified with lactic  acid oligomer showed the highest antibacterial and antimycotic activity.Conclusion. High antibacterial and antimycotic activity  of carbon  sorbent samples modified with hydroxy  acids  and amino acids in relation to the most common opportunistic pathogens of pyoinflammatory diseases of bacterial and fungal nature  was established in comparison with the initial  sample of the sorbent. The carbon  sorbent sample modified with amino acids has a pronounced antibacterial effect against all studied bacterial test strains, but exhibits weak antimycotic properties. The use of modified carbon  sorbents is a promising direction for the application therapy of pyoinflammatory infections.
改性碳吸附剂的抗菌和抗真菌性能
本研究的目的是研究改性剂及其改性后的碳吸附剂样品对某些微生物的生物活性。材料和方法。所研究的碳吸附剂和改性样品是在BIC新化工技术中心获得的。乙醇酸、乳酸、甘氨酸和谷氨酸作为改性剂。以金黄色葡萄球菌ATCC 25923、铜绿假单胞菌ATCC 27853、肺炎克雷伯菌418、大肠埃希氏菌ATCC 25922、白色念珠菌(临床菌株)为试验培养菌。将待测样品置于无菌板孔中,加入待测培养物的工作悬浮液,加入量为2.0 ml,至1:1完全湿润。采用扇形作物法(Gold)从培养皿上的“样品-微生物”混合物的每孔定量接种确定微生物的存活。通过对培养种的培养、形态和生化特性的研究,确定了培养种。所进行的研究表明,与初始吸附剂样品相比,羟基酸修饰的碳吸附剂样品对细菌和真菌性质的最常见的化脓性炎症性疾病的条件致病菌具有较高的抗菌和抗真菌活性。乳酸低聚物改性的碳吸附剂具有最高的抗菌和抗真菌活性。与吸附剂初始样品相比,经羟基酸和氨基酸修饰的碳吸附剂样品具有较高的抗菌和抗真菌活性,这些碳吸附剂与最常见的细菌性和真菌性热炎性疾病的条件致病菌有关。用氨基酸修饰的碳吸附剂样品对所有研究的细菌试验菌株都有明显的抗菌作用,但抗真菌性能较弱。改性碳吸附剂的应用是治疗热炎性感染的一个很有前途的方向。
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