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贝氏巴贝斯虫的体外连续传代减毒及其免疫接种对传代分离株的保护作用评估。

Virulence attenuation of Babesia gibsoni by serial passages in vitro and assessment of the protection provided by the immunization against the passaged isolate in dogs.

机构信息

Laboratory of Infectious Disease, School of Veterinary Medicine, Azabu University, 1-17-71 Fucinobe, Chuo-ku, Sagamihara-shi, Kanagawa 252-5201, Japan.

出版信息

Vet Parasitol. 2013 Nov 8;197(3-4):565-70. doi: 10.1016/j.vetpar.2013.05.015. Epub 2013 May 23.

Abstract

The virulence of the Babesia gibsoni Oita isolate was attenuated by serial passages in vitro by using the microaerophilus stationary phase (MASP) technique. After 400 serial passages, the virulence of the isolate was found to be attenuated. This was evidenced by the response of two dogs inoculated intravenously with 10(9)B. gibsoni passaged isolate. Specific antibodies were produced at a titer of 1:20,480, as detected by the fluorescent antibody test (IFAT). These results suggested that the serial passages of B. gibsoni reduced its virulence while retaining its antigenicity. The dogs that were inoculated with the attenuated isolate (1 and 2) and two naïve dogs (3 and 4) were challenged by intravenous inoculation of 2×10(8) infected erythrocytes of the virulent Oita isolate. Protection afforded by exposure to the attenuated isolate was evidenced by a lower parasitemia in dogs 1 and 2 with a rapid decrease to nondetectable levels, accompanied by a slight decrease in the PCV that returned to normal values. Dogs 3 and 4 developed typical acute clinical signs, including severe anemia and hyperthermia. These results suggested that the attenuated isolate was a candidate for live vaccine.

摘要

贝氏疟原虫大分株的毒力通过微需氧静止期(MASP)技术在体外连续传代而减弱。经过 400 次连续传代后,发现该分离株的毒力减弱。这一事实可通过两只有菌犬静脉接种 10(9)个传代贝氏疟原虫分离株的反应得到证实。通过荧光抗体试验(IFAT)检测,特异性抗体的滴度达到 1:20,480。这些结果表明,贝氏疟原虫的连续传代降低了其毒力,同时保留了其抗原性。用减毒分离株(1 和 2)接种的犬和两只未接种的犬(3 和 4)通过静脉接种 2×10(8)个毒力 Oita 分离株的感染性红细胞进行了攻击。暴露于减毒分离株的犬 1 和 2 的寄生虫血症较低,迅速降至无法检测到的水平,伴随着 PCV 略有下降,恢复到正常水平,这证明了减毒分离株提供的保护作用。犬 3 和 4 出现了典型的急性临床症状,包括严重贫血和高热。这些结果表明,减毒分离株是活疫苗的候选者。

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