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Published on: May 30, 2013
Targeting regulatory T cells to improve vaccine immunogenicity in early life
Jorjoh Ndure1, Katie L Flanagan2
1Infant Immunology Group, Vaccinology Theme, Medical Research Council Laboratories Fajara, The Gambia.
Insights
Infants have weak immunity, making them vulnerable to infections and impacting vaccine effectiveness. Regulatory T cells (Tregs) can limit vaccine responses, but strategies to modulate them may improve infant immunization.
Area of Science:
- Immunology
- Vaccinology
- Pediatrics
Background:
- Newborns and infants possess immature immune systems, increasing susceptibility to pathogens.
- Despite this vulnerability, they are the primary targets for numerous existing and developing vaccines.
- Suboptimal responses to certain vaccines, like polysaccharide vaccines, necessitate alternative formulations such as conjugated vaccines.
Purpose of the Study:
- To review key immunoregulatory factors in early life, focusing on regulatory T cells (Tregs).
- To explore the role of Tregs in diminishing vaccine immunogenicity in infants.
- To discuss strategies for enhancing vaccine responses by modulating Treg activity.
Main Methods:
- Literature review of immunoregulatory factors in early life.
- Analysis of animal and human studies investigating Treg depletion to improve vaccine responses.
- Examination of emerging adjuvants and drugs targeting Treg function.
Main Results:
- Regulatory T cells (Tregs) are crucial immunoregulatory factors in early life.
- Tregs can limit the effectiveness of vaccines in infants.
- Depleting Tregs in animal and human studies has shown potential for enhancing vaccine responses.
Conclusions:
- Understanding Treg function is vital for improving infant vaccine immunogenicity.
- Modulating Treg activity presents a promising future strategy for enhancing infant vaccination.
- Development of adjuvants and drugs to transiently suppress Treg function is a key area for future research.
Abstract:
Human newborns and infants are bombarded with multiple pathogens on leaving the sterile intra-uterine environment, and yet have suboptimal innate immunity and limited immunological memory, thus leading to increased susceptibility to infections in early life. They are thus the target age group for a host of vaccines against common bacterial and viral pathogens. They are also the target group for many vaccines in development, including those against tuberculosis (TB), malaria, and HIV infection. However, neonatal and infant responses too many vaccines are suboptimal, and in the case of the polysaccharide vaccines, it has been necessary to develop the alternative conjugated formulations in order to induce immunity in early life. Immunoregulatory factors are an intrinsic component of natural immunity necessary to dampen or control immune responses, with the caveat that they may also decrease immunity to infections or lead to chronic infection. This review explores the key immunoregulatory factors at play in early life, with a particular emphasis on regulatory T cells (Tregs). It goes on to explore the role that Tregs play in limiting vaccine immunogenicity, and describes animal and human studies in which Tregs have been depleted in order to enhance vaccine responses. A deeper understanding of the role that Tregs play in limiting or controlling vaccine-induced immunity would provide strategies to improve vaccine immunogenicity in this critical age group. New adjuvants and drugs are being developed that can transiently suppress Treg function, and their use as part of human vaccination strategies against infections is becoming a real prospect for the future.
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