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Effect of fenbendazole on shedding and embryonation of Ascaris suum eggs in naturally infected gestating sows

机译:芬苯达唑对自然感染的妊娠母猪of虫卵卵脱落和萌发的影响

摘要

ObjectivesTo determine the time to cessation of Ascaris suum egg shedding, the percent of animals that stop shedding, and to estimate the reduction in environmental burden from eggs shed in naturally infected female breeding swine after different treatment levels of fenbendazole to better determine timing of anthelmintic use prior to movement into a farrowing environment. To determine the ovicidal activity of different fenbendazole levels on Ascaris suum eggs shed from naturally infected commercial breeding female swine.Materials and methodsStudy 1 - Egg sheddingFive experiments across three commercial sow farms known to be infected with A suum were conducted. Breeding gilts and sows were identified with natural A suum infections and allocated to one of 4 treatments: CNT = untreated controls, TX1 = 545.5 mg fenbendazole for one day, TX2 = 545.5 mg fenbendazole daily, for 3 consecutive days (1636.5 mg total), and TX3 = 1636.5 mg fenbendazole for one day (TX3 only in experiment 5). Fecal samples were collected on various days and evaluated using the modified Wisconsin sugar flotation technique, with at least 1 EPG considered a positive sample. Time-to-negative was evaluated using Kaplan-Meier survival analysis with Log-Rank test and censoring of animals that reached the end of the study period still shedding. Percent negative at the end of the experiment was evaluated by Chi-square analysis using Fisheru27s exact test. Environmental burden (BURD), a calculation of eggs observed versus eggs expected, was evaluated by ANOVA and Tukeyu27s studentized test.Study 2 - EmbryonationThree experiments were conducted on a commercial breeding farm infected with A suum. Breeding gilts and sows were identified with natural A suum infections and allocated to one of 4 treatments: CNT = untreated controls, TX1 = 545.5 mg fenbendazole for one day, TX2 = 545.5 mg fenbendazole daily, for 3 consecutive days (1636.5 mg total), and TX3 = 1636.5 mg fenbendazole for one day (TX3 only in experiment 3). Eggs were isolated from fecal samples at various days post-treatment (dpt) by experiment and incubated in 0.1 N H2SO4 at room temperature for 60 days. Embryonation rates (ER) for each animal were determined by counting the number of eggs with fully developed larvae out of 100 eggs counted.ResultsStudy 1 - Egg sheddingMean time-to-negative shedding ranged from 9.3 to 13.1 for TX1, 8.9 to 13.1 days and 9.8 for TX3 with 0 to 10 percent censored, while CNT ranged from 13.4 to 28.2 with 70 to 100 percent censored. For all fenbendazole treatment groups, 90 to 100 percent of sows were negative by the end of the study, compared to 0 to 28.6 percent for CNT. Mean BURD range was 7.0 to 60.9 for TX1, 13.9 to 60.8 for TX2, 29.3 for TX3 and 60.4 to 219.0 for CNT. All fenbendazole treatment values were different from CNT (Pu3c0.05) but not from each other for time-to-negative, percent negative and BURD.Study 2 - EmbryonationER of A suum eggs shed from CNT animals ranged from 90.3 to 99.3 percent across all experiments and sampling days. ER were significantly (Pu3c0.0001, ANOVA) reduced to 29.3 and 30.5 percent for TX1 and TX2 in A suum eggs shed at 8 dpt, and 26.6 percent for TX3 in eggs shed at 6 dpt. Differences in ER between treatments was only seen in eggs shed at 4 dpt; TX1=75.4, TX2=70.9, and TX3=47.0. In addition, many of the A suum eggs shed from treated animals had atypical character, such as abnormal cell division, granular appearance and irregular shapes.Implications* Fenbendazole is an effective anthelmintic for the treatment of Ascaris suum in naturally infected breeding gilts and sows.* When using fenbendazole for the control of A suum transmission from dams to offspring, treatment should begin approximately 14 days prior to movement into clean farrowing facilities.* Fenbendazole was effective at all treatment levels used in decreasing the number of A suum eggs shed into the environment.* Fenbendazole is ovicidal against A suum in eggs shed from naturally infected breeding gilts and sows.* Use of fenbendazole provides additional epidemiological benefits in control of A suum through reduced effective environmental contamination due to the reduced number of eggs shed and those that develop to an infectious larvae.
机译:目的确定停止A虫卵脱落的时间,停止脱落的动物的百分比,并评估不同芬苯达唑治疗水平后自然感染雌性种猪排出卵后环境负担的减轻,以更好地确定驱虫药的使用时间在移入分娩环境之前。为了确定不同芬苯达唑水平对天然感染的商业繁殖雌性猪所产的A虫卵的杀卵活性。材料和方法研究1-卵脱落在三个已知被A suum感染的商业猪场进行了五个实验。将繁殖后备母猪和母猪鉴定为自然A型猪感染,并分配给以下4种处理之一:CNT =未经处理的对照,TX1 = 545.5 mg芬苯达唑一天,TX2 = 545.5 mg芬苯达唑每天,连续3天(总共1636.5 mg),和TX3 = 1636.5 mg芬苯达唑一天(仅实验5中为TX3)。在不同的日子收集粪便样品,并使用改良的威斯康星州糖浮选技术进行评估,至少有1个EPG被视为阳性样品。使用Kaplan-Meier生存分析和Log-Rank检验对阴性时间进行评估,对到达研究期末仍在脱落的动物进行检查。实验结束时的阴性百分率使用Fisher精确检验通过卡方分析进行评估。通过ANOVA和Tukey的学生测试评估环境负荷(BURD),即观察到的卵与预期卵的比值。研究2-胚化在一个感染A suum的商业繁殖场上进行了三个实验。将繁殖后备母猪和母猪鉴定为自然A型猪感染,并分配给以下4种处理之一:CNT =未经处理的对照,TX1 = 545.5 mg芬苯达唑一天,TX2 = 545.5 mg芬苯达唑每天,连续3天(总共1636.5 mg),和TX3 = 1636.5 mg芬苯达唑一天(仅实验3中为TX3)。在实验后的不同天数(dpt)从粪便样品中分离出鸡蛋,并在室温于0.1 N H2SO4中孵育60天。通过计算计数的100个卵中具有完全发育的幼虫的卵的数目来确定每只动物的胚化率(ER)。结果研究1-卵脱落平均时间为阴性,TX1的脱落时间为9.3-13.1,8.9-13.1天,以及TX3的9.8被删减了0%到10%,而CNT的范围是13.4到28.2,被删减了70%到100%。在所有芬苯达唑治疗组中,到研究结束时,有90%至100%的母猪阴性,而CNT则为0%至28.6%。 TX1的平均BURD范围为7.0至60.9,TX2的为13.9至60.8,TX3的为29.3,CNT为60.4至219.0。芬苯达唑的所有处理值均不同于CNT(P u3c0.05),但阴性时间,阴性百分率和BURD均无差异。研究2-从CNT动物身上脱落的A卵的胚化ER为90.3%至99.3%在所有实验和采样日中。在8 dpt脱落的A速生鸡蛋中,TX的TX1和TX2的ER显着降低(P u3c0.0001,ANOVA),分别为29.3%和30.5%,在6 dpt脱落的鸡蛋中,TX3的ER降至26.6%。处理之间的内质网差异仅在4 dpt脱落的卵中可见。 TX1 = 75.4,TX2 = 70.9和TX3 = 47.0。此外,从经过处理的动物身上脱落的许多A suum鸡蛋都具有非典型特征,例如异常的细胞分裂,颗粒状外观和不规则形状。含义*芬苯达唑是一种有效的驱虫剂,用于治疗自然感染的繁殖小母猪和母猪的A虫。 *当使用芬苯达唑控制从大坝到后代的A suum传播时,应在移入干净的分娩设施之前约14天开始治疗。*芬苯达唑在所有治疗水平上均有效,可减少从A suum卵中脱落的A suum卵的数量。 *芬苯达唑对天然感染的繁殖后备母猪和母猪脱落的卵中的A suum具有杀卵作用。*芬苯达唑的使用减少了脱落的卵并减少了卵的数量,从而通过有效的环境污染降低了控制A su的流行病学益处。感染性幼虫。

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    Pittman Jeremy Stuart;

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  • 年度 2014
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