Cenicriviroc inhibits trans-endothelial passage of monocytes and is associated with impaired E-selectin expression
Michelle L D'Antoni1,2, Brooks I Mitchell1,2, Sara McCurdy3
1Hawaii Center for HIV/AIDS, University of Hawaii, Hawaii, USA.
Insights
Cenicriviroc effectively reduces monocyte migration in HIV-infected individuals by targeting both CCR2 and CCR5 receptors. This dual-action may help mitigate cardiovascular disease risks associated with HIV.
Area of Science:
- Immunology
- Virology
- Cardiovascular Medicine
Background:
- High incidence of cardiovascular diseases (CVD) observed in HIV-infected individuals on antiretroviral therapy (ART).
- Monocyte activation and trafficking are implicated as key drivers in CVD development.
- Understanding monocyte migration mechanisms is crucial for managing CVD risk in this population.
Purpose of the Study:
- To investigate the efficacy of cenicriviroc (CVC), a dual CCR2 and CCR5 antagonist, in inhibiting monocyte migration.
- To compare CVC's effect with single chemokine receptor antagonists (BMS-22 for CCR2, maraviroc for CCR5).
- To explore CVC's impact on monocyte-endothelial cell interactions and adhesion molecule expression.
Main Methods:
- Monocytes were isolated from HIV-infected (on ART) and HIV-uninfected donors.
- A trans-endothelial migration model using human aortic endothelial cells (HAoECs) was employed.
- Monocyte migration, CCR2/CCR5 expression, and endothelial adhesion molecules were quantified after antagonist treatment.
Main Results:
- Cenicriviroc significantly reduced monocyte trans-endothelial migration more effectively than single antagonists in both HIV-infected and uninfected groups.
- CVC treatment of HAoECs, but not monocytes alone, decreased migration, particularly in the HIV-infected group.
- Cenicriviroc notably decreased E-selectin expression on HAoECs, suggesting a role in inhibiting monocyte adhesion.
Conclusions:
- Cenicriviroc demonstrates superior inhibition of monocyte trans-endothelial migration compared to blocking CCR2 or CCR5 alone.
- The mechanism may involve reduced monocyte-endothelial cell tethering via decreased E-selectin expression.
- Cenicriviroc presents a potential therapeutic strategy to reduce detrimental monocyte trafficking and associated CVD risk in HIV patients.
Abstract:
Incidences of cardiovascular diseases (CVD) are high among virologically suppressed HIV-infected individuals. Monocyte activation and trafficking are key mechanisms in the evolution of CVD. We studied the ability of cenicriviroc (CVC), a dual C-C chemokine receptor type 2 (CCR2) and CCR5 antagonist, to influence the migration of monocytes from HIV-infected individuals on antiretroviral therapy (ART). Monocytes were derived from 23 ART-suppressed HIV-infected and 16 HIV-uninfected donors. In a trans-endothelial migration model, monocytes, and human aortic endothelial cells (HAoECs) were exposed to cenicriviroc and migrated monocytes, quantified. Expression of CCR2 and CCR5 on monocytes and adhesion molecules (E-selectin, ICAM-1, VCAM-1, PECAM-1, and CD99) on HAoECs were measured. The single antagonists, BMS-22 (CCR2), and maraviroc (CCR5), served as controls. When both HAoECs and monocytes together were exposed to the antagonists, cenicriviroc led to a greater decrease in monocyte migration compared to BMS-22 or vehicle in both HIV-infected and HIV-uninfected groups (P < 0.05), with maraviroc having no inhibitory effect. Cenicriviroc treatment of HAoECs alone decreased monocyte migration in the HIV-infected group when compared to vehicle (P < 0.01). Inhibition of migration was not evident when monocytes alone were exposed to cenicriviroc, BMS-22 or maraviroc. Incubation of HAoECs with cenicriviroc decreased E-selectin expression (P = 0.045) but had limited effects on the other adhesion molecules. Cenicriviroc inhibits monocyte trans-endothelial migration more effectively than single chemokine receptor blockade, which may be mediated via disruption of monocyte-endothelial tethering through reduced E-selectin expression. Cenicriviroc should be considered as a therapeutic intervention to reduce detrimental monocyte trafficking.
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