TY - JOUR
T1 - Emerging concepts in T follicular helper cell responses to malaria
AU - Hansen, Diana S.
AU - Obeng-Adjei, Nyamekye
AU - Ly, Ann
AU - Ioannidis, Lisa J.
AU - Crompton, Peter D.
N1 - Funding Information:
Diana Hansen is supported by the Australian Government National Health and Medical Research Council Independent Research Institute Infrastructure Support Scheme and Project Grants 1058665, 1107812. Nyamekye Obeng-Adjei and Peter Crompton are supported by the Division of Intramural Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health, USA. For assistance with images we thank Alan Hoofring (Medical Arts Design Section, National Institutes of Health, USA).
Publisher Copyright:
© 2016
PY - 2017/2
Y1 - 2017/2
N2 - Antibody responses to malaria and candidate malaria vaccines are short-lived in children, leaving them susceptible to repeated malaria episodes. Because T follicular helper (TFH) cells provide critical help to B cells to generate long-lived antibody responses, they have become the focus of recent studies of Plasmodium-infected mice and humans. The emerging data converge on common themes, namely, that malaria-induced TH1 cytokines are associated with the activation of (i) T-like memory TFH cells with impaired B cell helper function, and (ii) pre-TFH cells that acquire Th1-like features (T-bet expression, IFN-γ production), which impede their differentiation into fully functional TFH cells, thus resulting in germinal center dysfunction and suboptimal antibody responses. Deeper knowledge of TFH cells in malaria could illuminate strategies to improve vaccines through modulating TFH cell responses. This review summarizes emerging concepts in TFH cell responses to malaria.
AB - Antibody responses to malaria and candidate malaria vaccines are short-lived in children, leaving them susceptible to repeated malaria episodes. Because T follicular helper (TFH) cells provide critical help to B cells to generate long-lived antibody responses, they have become the focus of recent studies of Plasmodium-infected mice and humans. The emerging data converge on common themes, namely, that malaria-induced TH1 cytokines are associated with the activation of (i) T-like memory TFH cells with impaired B cell helper function, and (ii) pre-TFH cells that acquire Th1-like features (T-bet expression, IFN-γ production), which impede their differentiation into fully functional TFH cells, thus resulting in germinal center dysfunction and suboptimal antibody responses. Deeper knowledge of TFH cells in malaria could illuminate strategies to improve vaccines through modulating TFH cell responses. This review summarizes emerging concepts in TFH cell responses to malaria.
KW - Antibody responses
KW - B cells
KW - Malaria
KW - Protection
KW - T follicular helper cells
UR - https://www.scopus.com/pages/publications/85007485756
U2 - 10.1016/j.ijpara.2016.09.004
DO - 10.1016/j.ijpara.2016.09.004
M3 - Review Article
C2 - 27866903
AN - SCOPUS:85007485756
SN - 0020-7519
VL - 47
SP - 105
EP - 110
JO - International Journal for Parasitology
JF - International Journal for Parasitology
IS - 2-3
ER -