TY - JOUR
T1 - Potential factors induced by filoviruses that lead to immune supression
AU - Mohamadzadeh, Mansour
PY - 2009
Y1 - 2009
N2 - The filoviruses, Ebola (EBOV) and Marburg (MARV), are among the deadliest of human pathogens, causing acute diseases typified by rapidly fatal hemorrhagic fevers. Upon filoviral infection, innate immune cells become paralyzed and lose the capacity to properly co-stimulate and activate filovirus-specific, T-cell responses. Deleterious inflammation and upregulation of co-inhibitory molecules expressed by monocytic lineage cells (e.g., dendritic cells) and their co-inhibitory receptors on T- and B-cells may lead to incomplete humoral and T-cell immunity, anergy, exhaustion, apoptosis, and subsequent immune subversion. Hence, the dysregulation of inflammatory and co-inhibitory molecules may be exploited by filoviruses to further deteriorate host immune responses, ultimately leading to fulminant infections in susceptible species. Thus, in light of accumulating scientific observations, the challenge is now to characterize the molecular mechanisms that may result in rational strategies leading to new therapeutics and vaccines.
AB - The filoviruses, Ebola (EBOV) and Marburg (MARV), are among the deadliest of human pathogens, causing acute diseases typified by rapidly fatal hemorrhagic fevers. Upon filoviral infection, innate immune cells become paralyzed and lose the capacity to properly co-stimulate and activate filovirus-specific, T-cell responses. Deleterious inflammation and upregulation of co-inhibitory molecules expressed by monocytic lineage cells (e.g., dendritic cells) and their co-inhibitory receptors on T- and B-cells may lead to incomplete humoral and T-cell immunity, anergy, exhaustion, apoptosis, and subsequent immune subversion. Hence, the dysregulation of inflammatory and co-inhibitory molecules may be exploited by filoviruses to further deteriorate host immune responses, ultimately leading to fulminant infections in susceptible species. Thus, in light of accumulating scientific observations, the challenge is now to characterize the molecular mechanisms that may result in rational strategies leading to new therapeutics and vaccines.
KW - Anergy
KW - Co-inhibition
KW - Dendritic cells
KW - Filovirus
KW - Inflammation
KW - Programmed death
UR - https://www.scopus.com/pages/publications/65649141970
UR - https://www.scopus.com/pages/publications/65649141970#tab=citedBy
U2 - 10.2174/156652409787581628
DO - 10.2174/156652409787581628
M3 - Review article
C2 - 19275625
AN - SCOPUS:65649141970
SN - 1566-5240
VL - 9
SP - 174
EP - 185
JO - Current Molecular Medicine
JF - Current Molecular Medicine
IS - 2
ER -