Isolation of cultures of microorganisms from pathological material from cows

M. Ladanova
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Abstract

Rapidly developing antibiotic resistance limits the capabilities of veterinary specialists and doctors in the fight against infectious diseases. Effective diagnosis and continuous improvement in the field of antimicrobial therapy is the main approach in the treatment and prevention of bacterial infections. According to available data, bacteria are able to develop resistance in 2-3 years, while it takes an average of 5 years to develop and test a new antimicrobial drug. In our study, bacteriological examination of samples of pathological material from cows from 10 livestock farms in different districts of the Leningrad region was carried out, followed by determination of the sensitivity of isolated crops to antibiotics. In this study, 84 samples from cows were selected and examined and 115 cultures of microorganisms were isolated. As a result of the bacteriological study of the pathological material from cows, 9 groups and types of pathogenic and opportunistic microorganisms were identified. The main proportion is detected on staphylococci – 35.7%, mainly Staphylococcus aureus, epidermal staphylococcus and citrus staphylococcus. Escherichia coli (23.5%) and Proteus vulgaris (20.9%) were among the microorganisms in terms of frequency of occurrence. Most of the isolated cultures had average sensitivity to gentamicin, enrofloxacin, ciprofloxacin, ceftriaxone, cefepim, cefotaxime, neomecin; resistant to doxycycline, amoxicillin, levofloxacin, colistin, doxycycline, streptomycin, tylosin, tetracycline.
从奶牛病理材料中分离微生物培养物
抗生素耐药性的迅速发展限制了兽医专家和医生抗击传染病的能力。有效诊断和不断改进抗菌疗法是治疗和预防细菌感染的主要方法。根据现有数据,细菌能够在 2-3 年内产生抗药性,而开发和测试一种新的抗菌药物平均需要 5 年时间。在我们的研究中,对列宁格勒州不同地区 10 个畜牧场的奶牛病原体样本进行了细菌学检查,随后确定了分离作物对抗生素的敏感性。在这项研究中,共选取并检查了 84 份奶牛样本,分离出 115 种微生物培养物。对奶牛病理材料进行细菌学研究的结果是,确定了 9 组和 9 种致病性和机会性微生物。葡萄球菌占主要比例--35.7%,主要是金黄色葡萄球菌、表皮葡萄球菌和柑橘葡萄球菌。大肠杆菌(23.5%)和普通变形杆菌(20.9%)是出现频率较高的微生物。大多数分离培养物对庆大霉素、恩诺沙星、环丙沙星、头孢曲松、头孢吡肟、头孢噻肟、新洁尔灭敏感;对强力霉素、阿莫西林、左氧氟沙星、可乐定、强力霉素、链霉素、泰乐菌素、四环素耐药。
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