Sex-based differences in immune function and responses to vaccination

Половые различия в функционировании иммунной системы и реакциях на вакцинацию
Sabra L. Klein, Ian Marriott, Eleanor N. Fish
2015-01-01

immune responses to vaccinessex differences in vaccinationsex-based immune differencesvaccine adverse reactionsvaccine antibody responses
Females typically develop higher antibody responses and experience more adverse reactions following vaccination than males. These differences are observed in response to diverse vaccines, including the bacillus Calmette-Guerin vaccine, the measles, mumps and rubella vaccine, the yellow fever virus vaccine and influenza vaccines. Sex differences in the responses to vaccines are observed across diverse age groups, ranging from infants to aged individuals. Biological as well as behavioral differences between the sexes are likely to contribute to differences in the outcome of vaccination between the sexes. Immunological, hormonal, genetic and microbiota differences between males and females may also affect the outcome of vaccination. Identifying ways to reduce adverse reactions in females and increase immune responses in males will be necessary to adequately protect both sexes against infectious diseases.
1
Females experience more adverse reactions following vaccination than males, including responses to BCG, MMR, yellow fever, and influenza vaccines.
2
Females typically develop higher antibody responses to vaccination than males across diverse vaccine types.
3
Immunological, hormonal, genetic, microbiota, and behavioral differences may contribute to sex-dependent vaccination outcomes.
4
Optimizing vaccination may require reducing adverse reactions in females while enhancing immune responses in males.
5
Sex differences in vaccine responses occur across the lifespan, from infancy through old age.

Sex-specific immune responses to vaccination in males and females across diverse vaccines and age groups

Sex differences in antibody responses, adverse reactions, and the immunological, hormonal, genetic, microbiota-related, and behavioral factors influencing vaccination outcomes

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2015-01-01
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Sabra L. Klein
Ian Marriott
Eleanor N. Fish
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