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有多少牛可以通过重复使用相同的针和注射器感染,以及这种原生动物在可注射兽药中的存活时间是多少?

How many cattle can be infected by by reusing the same needle and syringe, and what is the viability time of this protozoan in injectable veterinary products?

机构信息

Escola de Veterinária e Zootecnia, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.

Departamento de Medicina Veterinária Preventiva, Escola de Veterinária, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.

出版信息

Parasitology. 2022 Feb;149(2):270-282. doi: 10.1017/S003118202100175X. Epub 2021 Nov 9.

Abstract

It was investigated how many cattle become infected with Trypanosoma vivax by subcutaneous (SC), intramuscular (IM) and intravenous (IV) routes, using the same syringe and needle from an animal with acute T. vivax infection. Besides, the T. vivax viability in 109 injectable veterinary drugs (antibiotics, antiparasitics, reproductive hormones, vitamin complex and derivatives, vaccines, anaesthetics, anti-inflammatory/antipyretics, antitoxics). In the field assay, four groups were performed: T01, T02 and T03 animals that received saline solution with the same syringe and needle contaminated with T. vivax via SC, IM and IV routes, respectively, and T04 control animals that received only saline solution with the same syringe and needle IV. In the laboratory, drugs had their pH measured and T. vivax viability verified. The number of cattle infected with T. vivax via SC (3/20) was lower (P ≤ 0.05) compared to via IM (9/20), which was lower (P ≤ 0.05) compared to IV (15/20). The solution pH did not influence T. vivax viability. In 44% (48/109) of the products, T. vivax remained viable regardless of time, stooding out that in 100% of oxytocins the protozoan was verified, at some evaluation times. The mean of T. vivax quantified in foot-and-mouth and brucellosis vaccines and in doramectin-based products were higher (P ≤ 0.05) than found in blood + saline solution.

摘要

研究了通过皮下(SC)、肌肉内(IM)和静脉内(IV)途径,使用来自急性 T. vivax 感染动物的相同注射器和针头,有多少牛感染了锥虫 vivax。此外,还研究了 109 种可注射兽药(抗生素、抗寄生虫药、生殖激素、维生素复合物和衍生物、疫苗、麻醉剂、抗炎/解热药、抗毒素)中锥虫 vivax 的活力。在现场试验中,进行了四组试验:T01、T02 和 T03 动物分别通过 SC、IM 和 IV 途径用 T. vivax 污染的生理盐水和相同的注射器和针头接受治疗,而 T04 对照动物仅通过 IV 接受生理盐水。在实验室中,测量了药物的 pH 值并验证了锥虫 vivax 的活力。通过 SC(3/20)感染 T. vivax 的牛的数量(3/20)低于(P ≤ 0.05)通过 IM(9/20)感染的牛,而通过 IV(15/20)感染的牛则低于(P ≤ 0.05)。溶液 pH 值不影响锥虫 vivax 的活力。在 109 种产品中的 44%(48/109),无论时间如何,锥虫 vivax 仍然具有活力,值得注意的是,在 100%的催产素中都检测到了原生动物,在某些评估时间点也是如此。口蹄疫和布鲁氏菌病疫苗以及基于多拉菌素的产品中定量的锥虫 vivax 的平均值(P ≤ 0.05)高于在血液+生理盐水溶液中发现的平均值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0f3/11010538/5c4d56f0e472/S003118202100175X_figAb.jpg

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