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Anti-coccidial properties and mechanisms of an edible herb Bidens pilosa and its active compounds for coccidiosis

机译:食用草药Bidens pilosa及其球虫病活性化合物的抗球虫性质和机理

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摘要

Avian coccidiosis is an economically important disease in the poultry industry. In view of the disadvantages of anti-coccidial drugs in chickens, edible plants and their compounds are re-emerging as an alternative strategy to combat this disease. A previous publication reported that the edible plant B. pilosa showed promise for use against coccidiosis. Here, we first investigated into the anti-coccidial effects of B. pilosa. We found that B. pilosa at 100 ppm or more significantly suppressed E. tenella as evidenced by reduction in mortality rate, oocyst excretion and gut pathological severity in chickens and its minimum prophylactic duration was 3 days. Next, we explored the mode of action of anti-coccidial mechanism of B. pilosa. The E. tenella oocysts were not directly killed by B. pilosa; however, administration of the plant suppressed oocyst sporulation, sporozoite invasion, and schizonts in the life cycle of E. tenella. Besides, B. pilosa boosted T cell-mediated immunity. Finally, we characterized the related anti-coccidial phytochemicals and their mode of action. One of three potent polyynes present in B. pilsoa, Compound 1 (cytopiloyne), acted against coccidiosis in chickens in a similar manner to B. pilosa. These data illustrate the anti-coccidial potency and mechanism of B. pilosa and one of its active compounds, and provide a cornerstone for development of novel herbal remedies for avian coccidiosis.
机译:禽球虫病是家禽业中一种重要的经济疾病。鉴于抗球虫药在鸡中的弊端,食用植物及其化合物正在重新出现,作为对抗这种疾病的替代策略。先前的出版物报道可食用的植物B. pilosa有望用于对抗球虫病。在这里,我们首先调查了B. pilosa的抗球虫作用。我们发现,B。pilosa在100 ppm或更高浓度下可显着抑制大肠杆菌,从而降低死亡率,降低卵囊排泄量和降低肠道病理严重程度,并且其最小预防时间为3天。接下来,我们探索了抗球虫的抗球虫机制的作用方式。大肠杆菌(E. tenella)的卵囊未直接被毛状芽孢杆菌杀死。但是,在大肠埃希氏菌的生命周期中,施用该植物可抑制卵囊孢子形成,子孢子入侵和裂殖体。此外, B pilosa 增强了T细胞介导的免疫力。最后,我们表征了相关的抗球虫植物化学物质及其作用方式。 B 中存在的三种强力多炔之一。 pilsoa ,化合物1(细胞多柔比星)以与 B 类似的方式对抗鸡球虫病。 pilosa 。这些数据说明了 B 的抗球虫效力和机制。 pilosa 及其活性化合物之一,为开发用于禽球虫病的新型草药提供了基石。

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