Key result
HIV-1/HTLV coinfection was associated with higher levels of CC-chemokines and significant CCR5 downregulation compared to HIV-1 monoinfection (P<0.05).
Why the study?
Does HTLV coinfection alter CC-chemokine expression and CCR5 downregulation in HIV-1 infected individuals?
Observational
Does HTLV coinfection alter CC-chemokine expression and CCR5 downregulation in HIV-1 infected individuals?
p-value: p=<0.05
HTLV-1 and HTLV-2 coinfection in HIV-1 patients induces higher CC-chemokine levels and downregulates CCR5, potentially impairing HIV-1 entry and progression.
May modulate HIV entry in coinfected models; leaves open human disease implications pending clinical studies.
The human T-cell lymphotropic virus type 1 (HTLV-1) and HTLV-2 are common copathogens among Human Immunodeficiency Virus (HIV)-infected individuals. HTLV-2 may confer a survival benefit among patients with HIV-1/HTLV-2 coinfections, along with lower plasma HIV-1 levels and delayed rates of CD4(+) T-cell decline. These effects have been attributed to the ability of the HTLV-2 viral transactivating Tax2 protein to induce the production of high levels of antiviral CC-chemokines and to downregulate expression of the CCR5 receptor, resulting in impaired entry of HIV-1 into CD4(+) T-cells. This study investigated the innate immunity of coinfected HIV/HTLV individuals by testing the ability of patient PBMCs to produce CC-chemokines in association CCR5 receptor modulation. The cellular proliferative responses of HIV/HTLV coinfected versus HIV monoinfected individuals were also evaluated. Higher levels of MIP-1α, MIP-1β, and RANTES (P < 0.05) were found in HIV-1/HTLV-2 coinfected group compared to HIV-1 monoinfected population. Upregulated levels of RANTES were shown in HIV-1/HTLV-1 after 1 and 3 days of culture (P < 0.05). Lymphocytes from HIV-1/HTLV-2 coinfected individuals showed significant CCR5 downregulation after 1 and 3 days of culture compared to lymphocytes from HIV-1 and uninfected groups (P < 0.05). Lower percentages of CCR5-positive cells were found in HIV-1/HTLV-1 coinfected after 3 days of incubation (P < 0.05). Levels of proliferation were significantly higher in the HIV-1/HTLV-1 group compared to HIV-1 alone (P < 0.05). HTLV-2 and HTLV-1 infections may induce the involvement of innate immunity against HIV-1 via stimulation of CC-chemokines and receptors, potentially modifying CCR5/HIV-1 binding and HIV-1 progression in coinfected individuals.
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Oo et al. (2015) conducted an observational in HIV-1/HTLV-1 and HIV-1/HTLV-2 coinfections. HIV-1/HTLV coinfection vs. HIV-1 monoinfection was evaluated on CC-chemokine production and CCR5 receptor modulation (p=<0.05). HIV-1/HTLV coinfection was associated with higher levels of CC-chemokines and significant CCR5 downregulation compared to HIV-1 monoinfection (P<0.05).
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