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食蟹猴对DTaP-sIPV疫苗中一种源自萨宾株的新型灭活脊髓灰质炎疫苗(sIPV)的抗体反应。

Antibody responses of Macaca fascicularis against a new inactivated polio vaccine derived from Sabin strains (sIPV) in DTaP-sIPV vaccine.

作者信息

Sato Y, Shiosaki K, Goto Y, Sonoda K, Kino Y

机构信息

The Chemo-Sero-Therapeutic Research Institute, Kikuchi Research Center, 1314-1 Kyokushi Kawabe, Kikuchi-shi, Kumamoto 869-1298, Japan.

出版信息

Biologicals. 2013 May;41(3):184-9. doi: 10.1016/j.biologicals.2012.12.004. Epub 2013 Jan 30.

DOI:10.1016/j.biologicals.2012.12.004
PMID:23375165
Abstract

Antibody responses of Macaca fascicularis against a new tetravalent vaccine composed of diphtheria toxoid, tetanus toxoid, acellular pertussis antigens, and inactivated poliovirus derived from Sabin strains (sIPV) was investigated to predict an optimal dose of sIPV in a new tetravalent vaccine (DTaP-sIPV) prior to conducting a dose-defined clinical study. Monkeys were inoculated with DTaP-sIPVs containing three different antigen units of sIPVs: Vaccine A (types 1:2:3 = 3:100:100 DU), Vaccine B (types 1:2:3 = 1.5:50:50 DU), and Vaccine C (types 1:2:3 = 0.75:25:25 DU). There was no difference in the average titers of neutralizing antibody against the attenuated or virulent polioviruses between Vaccines A and B. The average neutralizing antibody titers of Vaccine C tended to be lower than those of Vaccines A and B. The sIPV antigens did not affect the anti-diphtheria or anti-tetanus antibody titers of DTaP-sIPV. Furthermore, the average neutralizing antibody titers of Vaccine A against the attenuated and virulent polioviruses were comparable between M. fascicularis and humans. These results suggest that M. fascicularis may be a useful animal model for predicting the antibody responses to sIPVs in humans, and that it may be likely to reduce the amount of sIPVs contained in DTaP-sIPVs, even for humans.

摘要

在开展剂量确定的临床研究之前,为预测新型四价疫苗(白喉破伤风无细胞百日咳-脊髓灰质炎灭活疫苗,DTaP-sIPV)中脊髓灰质炎灭活疫苗(sIPV)的最佳剂量,研究了食蟹猴针对由白喉类毒素、破伤风类毒素、无细胞百日咳抗原和源自萨宾株的脊髓灰质炎灭活病毒(sIPV)组成的新型四价疫苗的抗体反应。用含有三种不同sIPV抗原单位的DTaP-sIPV对猴子进行接种:疫苗A(1:2:3型 = 3:100:100 DU)、疫苗B(1:2:3型 = 1.5:50:50 DU)和疫苗C(1:2:3型 = 0.75:25:25 DU)。疫苗A和疫苗B之间针对减毒或强毒脊髓灰质炎病毒的中和抗体平均滴度没有差异。疫苗C的平均中和抗体滴度往往低于疫苗A和疫苗B。sIPV抗原不影响DTaP-sIPV的抗白喉或抗破伤风抗体滴度。此外,食蟹猴和人类中疫苗A针对减毒和强毒脊髓灰质炎病毒的平均中和抗体滴度相当。这些结果表明,食蟹猴可能是预测人类对sIPV抗体反应的有用动物模型,并且即使对于人类,也可能有可能减少DTaP-sIPV中所含sIPV的量。

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