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[灭活脊髓灰质炎疫苗:消除脊髓灰质炎的必然选择]

[Inactivated poliovirus vaccines: an inevitable choice for eliminating poliomyelitis].

作者信息

Vidor J D, Jean-Denis Shu

机构信息

Global Medical Affairs, Sanofi Pasteur, 69000 Lyon, France.

出版信息

Zhonghua Yu Fang Yi Xue Za Zhi. 2016 Dec 6;50(12):1021-1031. doi: 10.3760/cma.j.issn.0253-9624.2016.12.002.

Abstract

The inactivated poliovirus vaccine (IPV) is a very old tool in the fight against poliomyelitis. Though supplanted by oral poliovirus vaccine (OPV) in the 1960s and 1970s, the IPV has now become an inevitable choice because of the increasingly recognized risks associated with continuous use of OPVs. Following the pioneering work of Jonas Salk, who established key principles for the IPV, considerable experience has accumulated over the years. This work has led to modern Salk IPV-containing vaccines, based on the use of inactivated wildtype polioviruses, which have been deployed for routine use in many countries. Very good protection against paralysis is achieved with IPV through the presence of circulating antibodies able to neutralize virus infectivity toward motor neurons. In addition, with IPV, a variable degree of protection against mucosal infection (and therefore transmission) through mucosal antibodies and immune cells is achieved, depending on previous exposure of subjects to wildtype or vaccine polioviruses. The use of an IPV-followed-by-OPV sequential immunization schedule has the potential advantage of eliminating the vaccine-associated paralytic poliomyelitis (VAPP) risk, while limiting the risks of vaccine-derived poliovirus (VDPVs). Sabin strain-derived IPVs are new tools, only recently beginning to be deployed, and data are being generated to document their performance. IPVs will play an irreplaceable role in global eradication of polio.

摘要

灭活脊髓灰质炎疫苗(IPV)是抗击脊髓灰质炎的一种非常古老的工具。尽管在20世纪60年代和70年代被口服脊髓灰质炎疫苗(OPV)所取代,但由于持续使用OPV所带来的风险日益得到认可,IPV现在已成为必然选择。继乔纳斯·索尔克建立IPV关键原则的开创性工作之后,多年来积累了相当多的经验。这项工作催生了现代含索尔克IPV的疫苗,其基于使用灭活野生型脊髓灰质炎病毒,已在许多国家用于常规接种。通过存在能够中和病毒对运动神经元感染性的循环抗体,IPV可实现对瘫痪的良好保护。此外,对于IPV,根据个体先前接触野生型或疫苗脊髓灰质炎病毒的情况,可通过黏膜抗体和免疫细胞实现对黏膜感染(进而对传播)的不同程度的保护。采用先IPV后OPV的序贯免疫程序具有消除疫苗相关麻痹性脊髓灰质炎(VAPP)风险的潜在优势,同时可限制疫苗衍生脊髓灰质炎病毒(VDPV)的风险。源自萨宾毒株的IPV是新工具,直到最近才开始应用,目前正在生成数据以记录其性能。IPV将在全球根除脊髓灰质炎中发挥不可替代的作用。

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