An in vitro evaluation of the inhibitory effects of an aqueous extract of Acacia nilotica on Eimeria tenella.

E. Ahmed, Noha Abdelmageed, M. Omar, Dina M. W. Shibat El-hamd, A. S. Seddek, S. Morad
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引用次数: 1

Abstract

Competing interest: The authors have declared that no competing interest exists Abstract Eimeria tenella is one of the most important species of Eimeria that infect domestic fowl, causing coccidiosis in the poultry industry associated with drastic economic loss. Alternative treatment options are often necessary since anticoccidial drugs are prohibitively expensive, have serious side effects, or develop resistance. The role that herbal therapy plays in basic healthcare has been rediscovered worldwide. Consequently, our research assessed the in vitro inhibitory effect of escalated concentrations (6.25 mg, 12.5 mg, 25 mg, 50 mg, and 100 mg/ml) of Acacia nilotica aqueous extract (ANAE) on Eimeria tenella sporulation. Statistical analysis revealed that ANAE decreased the percentage of oocyst sporulation in a dose-dependent manner. Furthermore, ANAE showed abnormal sporulation and morphological deterioration of E. tenella oocytes. Area Under the Curve (AUC) calculation was used to determine the efficacy of ANAE and revealed that ANAE concentrations significantly reduced the coccidial score index. At 100 mg/ml, ANAE completely suppressed the sporulation of E. tenella oocysts, with obvious changes to their morphology and size. The phytochemical analysis of ANAE has shown that ANAE contains several active principles that possess anthelmintic activities. These compounds include tannins, saponins, flavonoids, terpenoids, and alkaloids, which can be attributed to the anticoccidial activity of ANAE. Considering our findings, we recommend that ANAE be used to prevent and control Eimeria.
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尼罗Acacia水提取物对柔嫩艾美耳球虫抑制作用的体外评价。
竞争利益:作者声明不存在竞争利益摘要:柔嫩艾美耳球虫是感染家禽的最重要的艾美耳球虫病物种之一,在家禽业中引起球虫病,并造成巨大的经济损失。替代治疗方案往往是必要的,因为抗癫痫药物价格昂贵,有严重的副作用,或产生耐药性。草药疗法在基本医疗保健中所起的作用已在世界范围内被重新发现。因此,我们的研究评估了递增浓度(6.25 mg、12.5 mg、25 mg、50 mg和100 mg/ml)的尼罗Acacia水提取物(ANAE)对柔嫩艾美耳球虫孢子形成的体外抑制作用。统计分析显示,ANAE以剂量依赖的方式降低卵囊孢子形成的百分比。此外,ANAE显示E.tenella卵母细胞异常产孢和形态退化。曲线下面积(AUC)计算用于确定ANAE的疗效,并显示ANAE浓度显著降低了球虫评分指数。在100mg/ml时,ANAE完全抑制了E.tenella卵囊的孢子形成,其形态和大小发生了明显变化。ANAE的植物化学分析表明,ANAE含有几种具有驱虫活性的活性成分。这些化合物包括单宁、皂苷、黄酮类化合物、萜类化合物和生物碱,可归因于ANAE的抗球虫活性。考虑到我们的研究结果,我们建议使用ANAE来预防和控制艾美耳球虫。
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