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临床试验/NCT02376374
NCT02376374已完成不适用

OPV Transmissibility in Communities After Cessation of Routine OPV Immunization

Stanford University0 个研究点目标入组 1,828 人开始时间: 2015年2月最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
1,828
主要终点
Inter-household transmission of poliovirus

研究概览

简要总结

The investigators propose to study both inter- and intra-household Oral Polio Vaccine (OPV) transmission in a primarily inactivated-polio vaccine (IPV)-vaccinated community in Mexico. The investigators will enroll 3 distinct clusters of households in a municipality in Orizaba, Veracruz, Mexico prior to the February 2015 National Immunization Week (NIW.) These clusters will be physically separate from one another and differ only in the proportion of OPV-eligible children who will receive OPV during the February 2015 NIW (10%, 30% and 70% vaccinated.) The investigators will look at inter-household and intra-household transmission. The investigators will then determine if epidemiologic (i.e.: degree of contact), anthropometric (i.e.: nutritional status) or clinical covariates (i.e.: IPV/OPV immunization history) are associated with intra-household transmission.

详细描述

We propose a prospective study to be conducted in 3 distinct clusters of 150 households each in one semi-urban municipality in Orizaba, Veracruz, Mexico during and after the February 2015 National Immunization Week (NIW.) Mexico provides a unique environment to study OPV transmission. The last case of poliomyelitis was reported in 1990. Mexico transitioned from an OPV to an IPV-based immunization regimen in 2007-2008. Currently, Mexican children receive IPV at 2, 4, 6, and 18 months of age. In addition, children ≤5 years old who have received at least 2 doses of IPV are eligible to receive OPV during biannual NIW held in February and May each year. Because of the changes in vaccination regimens over time, Mexican households consist of individuals with different degrees of susceptibility to OPV infection: those born before 2007 who were exposed to WPV and OPV or OPV alone, those born after 2007 exposed to IPV with intermittent OPV exposure, and un-vaccinated infants, some with maternal polio virus antibodies. By studying OPV transmission in this setting, we will be able to assess the impact of differing immunization status on OPV shedding and transmission.

We will conduct our study in a relatively isolated and semi-urban municipality of Orizaba, Veracruz, Mexico. These household clusters will differ only in the proportion of OPV-eligible children who will be OPV-vaccinated during the February 2015 National Immunization Week (10%, 30% and 70%.) We will enroll households that have at least 1 healthy child less than 5 years of age with an up-to-date IPV vaccination history. Enrolled households will then be randomized to the OPV-vaccinated or non-vaccinated arm of each household cluster. Eligible children from households in the OPV-vaccinated arm will then be further randomized to either receive OPV or remain un-vaccinated. Thus, only one child per household in the OPV-vaccinated arm will be vaccinated.

We will collect stool samples from all members of the enrolled households serially over the course of the study and will determine if individuals shed OPV in their stool using a serotype-specific real-time polymerase chain reaction (PCR) assay. We will define inter-household transmission as fecal OPV shedding by any member of a non-vaccinated household. By comparing inter-household transmission rates among all the household clusters, we will determine the if the proportion of OPV-vaccinated children impacts community OPV transmission in a primarily IPV-vaccinated community. These results will be critical to predicting the risk of OPV re-introduction in the event of a poliomyelitis outbreak in the post-OPV era.

We will define intra-household transmission as OPV shedding by household contacts living in vaccinated households. We will examine intra-household transmission in all clusters together to determine if certain characteristics are associated with transmission to household contacts. Elucidating these characteristics would allow for targeted interventions to reduce or prevent OPV transmission as cessation policy is implemented or in the event that OPV re-introduction is needed during polio endgame.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Other
盲法
None

入排标准

年龄范围
— 至 59 Months(Child)
性别
All
接受健康志愿者

入选标准

  • Households with children under the age of 5 who have up-to-date IPV vaccination history and willing to give informed consent and/or assent.

排除标准

  • Unwilling/unable to bring children's IPV vaccination records up-to-date.

研究组 & 干预措施

10% OPV

Experimental

In this arm, 10% of the households in this community will receive OPV.

干预措施: Controlling vaccination rates in communities (Other)

30% OPV

Experimental

In this arm, 30% of the households in this community will receive OPV.

干预措施: Controlling vaccination rates in communities (Other)

70% OPV

Experimental

In this arm, 70% of the households in this community will receive OPV.

干预措施: Controlling vaccination rates in communities (Other)

结局指标

主要结局

Inter-household transmission of poliovirus

时间窗: Feb 2015-May 2015; 4 months

Intra-household transmission of poliovirus

时间窗: Feb 2015-May 2015; 4 months

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Yvonne (Bonnie) A Maldonado

OPV transmissibility in communities after cessation of routine OPV immunization

Stanford University

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