Antibacterial potency of Vernonia amygdalina on antibiotic-resistant non-typhoidal salmonella isolates from human and animal sources in southern Taraba, North-East, Nigeria

Edobor Peter Kenneth Imarenezor, Onolunosen Abel Abhadionmhen, Samuel Tamuno Cockeye Brown, Zakari Isiaka Osheku
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Abstract

Antibiotic discovery was considered a wonder of the world. Shortly after, many microorganisms began to exhibit resistance to prior antimicrobial actions of antibiotics. Notwithstanding, Quinones, Flavonoids, Flavones, Flavonols, Tannins, and Coumarins are major phytochemicals synthesized by plant parts and have shown decisive antimicrobial activities against a panel of microorganisms. In this research hot and cold extracts of fresh and dried Vernonia, amygdalina showed remarkable in vivo antimicrobial activity on antibiotic-resistant Salmonella isolates from various poultry farms and food vendors in Ibi, Donga, Takum, and Wukari. 5 g-10 ml, 10 g-10 ml, 15g-10ml, 20g-10ml, and 25g-10ml are arrays of Vernonia Amygdalina concentrations tested on the inocula. Significant light growth was observed for both menstruum extracts of dried and fresh leaves of Vernonia Amygdalina at higher concentrations levels of 20g-10ml, 25g-10ml, while and moderate growth was seen at lower concentrations levels of 5g-10ml, 10g-10ml. Also, heavy growth of Salmonella was detected in the control plates inoculated with the test microorganism but without the addition of any extracts. Weak political will in implementing regulation policies, funding of research, and perceived antimicrobial resistance to plant extracts as well as acceptability and cultural factors have threatened the extensive use of plant extract in the management of health. Improved universal health coverage and enhanced economic potentials are core benefits of the use of plant extracts for health management. Conclusively, plant extracts possess appreciable antimicrobial activities against Multi-Drug Resistance (MDR) microorganisms compared to currently prescribe synthetic drugs. Hence, further studies on clinical efficacy trials and the safety of more plants need to be intensified.
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苦杏仁杆菌对尼日利亚东北部塔拉巴州南部人类和动物源非伤寒沙门氏菌耐药菌株的抑菌效力
抗生素的发现被认为是世界奇迹。不久之后,许多微生物开始对抗生素的先前抗菌作用表现出耐药性。尽管如此,醌类、黄酮类、黄酮类、黄酮醇类、单宁类和香豆素是由植物部分合成的主要植物化学物质,并对一组微生物显示出决定性的抗菌活性。在本研究中,新鲜和干燥的苦杏仁果热提取物和冷提取物对来自Ibi、Donga、Takum和Wukari的多个家禽养殖场和食品供应商的耐药沙门氏菌具有显著的体内抗菌活性。5g-10ml、10 g-10ml、15g-10ml、20g-10ml和25g-10ml是苦杏仁果苦杏仁果在接种物上的浓度序列。在较高浓度为20g-10ml、25g-10ml时,苦扁桃干叶和鲜叶经期提取物均有显著的光生长,而在较低浓度为5g-10ml、10g-10ml时,苦扁桃干叶和鲜叶经期提取物均有中等的光生长。同样,在接种了试验微生物但未添加任何提取物的对照板中,检测到沙门氏菌的大量生长。在实施监管政策、研究资助、对植物提取物的抗菌素耐药性以及可接受性和文化因素方面的政治意愿薄弱,都威胁到植物提取物在健康管理中的广泛使用。改善全民健康覆盖和提高经济潜力是使用植物提取物进行健康管理的核心好处。总之,与目前处方的合成药物相比,植物提取物具有明显的抗多药耐药(MDR)微生物活性。因此,需要进一步加强临床疗效试验和更多植物的安全性研究。
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