羊菖蒲水提液和氢乙醇提取物对肉仔鸡鼠伤寒沙门菌体外生长的抑菌活性研究

Anzoumana Lassinan Ouattara, Ouattara Abou, Ouattara Karamoko, Golly Koffi Julien, Coulibaly Adama
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摘要

家禽产品已迅速成为世界上消耗最多的蛋白质来源之一。然而,由于多重耐药细菌的出现,家禽养殖户面临着巨大的经济损失。此外,食用蛋类和禽肉还会在人群中引起几种传染病以及中毒,从而成为一个公共卫生问题。目的:通过体外抗菌试验,研究羊菖蒲叶水提液和70%氢乙醇提取物对从肉鸡粪便中分离的2株多重耐药鼠伤寒沙门菌的抑菌效果。方法:采用琼脂孔法测定菌株的药敏,液体稀释法测定最小抑菌浓度(MIC)和最小杀菌浓度(MBC)。结果:对2种多重耐药鼠伤寒沙门菌的抑制区直径在13 ~ 22 mm之间,最小杀菌浓度(MBC)在12.5 ~ 25 mg/ml之间。提取物的植物化学分析结果显示,次生代谢产物包括酚类化合物、心苷类、皂苷类、生物碱类、甾醇类和萜烯类。然而,这些次生代谢物在水提取物和70%乙醇提取物中的分布不同。 结论:根据本研究结果,该植物可作为对抗肉仔鸡鼠伤寒沙门菌相关疾病的植物药,并可作为可能含有鼠伤寒沙门菌的食品的抗菌药物。
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Antibacterial Activities of Aqueous and Hydroethanolic Extracts of Anogeissus leiocarpus on the In vitro Growth of two Multiresistant Strains of Salmonella typhimurium Isolated from Broilers Chickens
Poultry products have quickly become one of the most consumed sources of protein in the world. However, poultry farmers face enormous economic losses caused by the emergence of multi-resistant bacteria. In addition, the consumption of eggs and poultry meat also causes several infectious diseases within populations as well as poisonings and therefore a public health problem. Aims: The objective of our study was to evaluate in vitro the antibacterial properties of aqueous and 70% hydroethanolic extracts of the leaves of Anogeissus leiocarpus on two strains of multiresistant Salmonella typhimurium isolated from the faeces of broilers chickens. Methodology: The agar well method was used to test the susceptibility of bacterial strains while the minimum inhibitory concentration (MIC) and the minimum bactericidal concentration (MBC) were determined by the liquid dilution method. Results: On the two multiresistant Salmonella typhimurium germs, the aqueous and 70% hydroethanolic extracts of Anogeissus leiocarpus gave zones of inhibition diameter between 13-22 mm while the minimum bactericidal concentrations (MBC) were ranged between 12.5 mg/ml and 25 mg/ml. The results of the phytochemical analysis of the extracts studied reveal the presence of several families of secondary metabolites including phenolic compounds, cardiac glycosides, saponins, alkaloids and then sterols and terpenes. However, these secondary metabolites are distributed differently within the aqueous and 70% hydroethanolic extracts. Conclusion: In view of the results obtained in the present work, this plant could be used as a phytomedicine to combat pathologies linked to Salmonella typhimurium in broiler chickens and as an antibacterial agent in food products that may harbor strains of Salmonella typhimurium.
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