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J van Lunzen

Publications and source records attributed to J van Lunzen.

At least 19 recordsLinked to original sources

The use of and response to second-line protease inhibitor regimens: results from the EuroSIDA study.

OBJECTIVE: To describe the use of second line protease-inhibitor (PI) regimens across Europe and to determine factors associated with virological and immunological response. DESIGN: Analysis of data from 984 patients with a median follow-up of 21 months enrolled in EuroSIDA. Patients started their second PI-containing regimen at least 16 weeks after starting the first PI-containing regimen and with viral load > 1000 copies/ml. METHODS: Virological response was defined as a viral load < 500 copies/ml and immunological response as an increase of 50 x 10(6)/l or more in CD4 lymphocyte count. RESULTS: The median CD4 cell count at starting the second PI was 171 x 10(6) cells/l; viral load was 4.45 log copies/ml. As a second PI regimen, 45% were using a dual PI, while of those on one PI, indinavir (42%) and nelfinavir (34%) were most common. In multivariate Cox models, a higher viral load at starting the second PI [relative hazard (RH), 0.67 per 1 log higher; 95% confidence interval (CI), 0.58-0.77; P < 0.0001) and a lower CD4 cell count (RH, 1.15 per 50% higher; 95% CI, 1.06-1.26; P = 0.0014) were associated with a reduced probability of virological response. Those who had achieved viral suppression on the first PI-regimen were more likely to respond to the second (RH, 1.65; 95% CI, 1.30-2.10; P < 0.0001) as were those who added one or two new nucleosides to their second PI. CONCLUSIONS: Patients who initiate a second PI regimen at lower viral load, higher CD4 cell count or who added new nucleosides tended to be more likely to achieve a viral load < 500 copies/ml. The roles of cross-resistance and adherence in response to second-line regimens needs further investigation.

Adolescent↗

Lymph nodes during antiretroviral therapy.

Highly active antiretroviral therapy rapidly reduces virus replication in the lymphoid tissue. Production of viral RNA, however, may still be detected in the lymphoid tissue despite negative plasma viremia. Continuing virus production and latent infection in resting cells seem to be important factors for viral rebound following treatment interruption. In parallel with viral suppression, immune activation is decreased and CD4+ T cell counts in the lymphoid tissue increase. It is still not known if there is a potential for complete viral suppression and immune reconstitution. Analyses of the lymphoid tissue during therapy may be helpful in addressing these issues.

Antiretroviral Therapy, Highly Active↗

Predictors of virological success and ensuing failure in HIV-positive patients starting highly active antiretroviral therapy in Europe: results from the EuroSIDA study.

BACKGROUND: Predictors of virological response to highly active antiretroviral therapy (HAART) have never been systematically evaluated in a large continental multicenter cohort of unselected human immunodeficiency virus (HIV)-infected people. OBJECTIVE: To determine the factors related to achieving and maintaining undetectable plasma HIV-1 RNA levels among HIV-1-infected patients first starting protease inhibitor- or nonnucleoside retrotranscriptase inhibitor-containing HAART in Europe. DESIGN: Prospective multicenter cohort study. SETTING: Fifty-two clinical centers in 17 European countries included in the EuroSIDA Study Group, from August 1996 to April 1999. PATIENTS: A total of 1469 HIV-positive patients first starting HAART recruited from an unselected cohort of more than 7300 HIV-positive patients. MAIN OUTCOME MEASURE: Detection of factors related to virological success after first starting HAART (baseline) and ensuing failure by standard survival techniques, including Kaplan-Meier techniques and Cox proportional hazards models. All analyses were intention to treat. RESULTS: Most patients (80%) achieved plasma HIV-1 RNA levels of less than 500 copies/mL during follow-up (60.4% at 6 months from the onset of HAART). Patients with higher baseline HIV-1 RNA levels (relative hazard [RH], 0.76 per log higher; 95% confidence interval [CI], 0.69-0.84; P<.001) and those taking saquinavir mesylate hard gel as a single protease inhibitor (RH, 0.62; 95% CI, 0.47-0.82; P<.001) were less likely to reach undetectable HIV-1 RNA levels. Conversely, higher CD4+ lymphocyte counts (RH per 50% higher, 1.09; 95% CI, 1.02-1.16; P = .008) and the initiation of 3 or more new antiretroviral drugs (RH, 1.29; 95% CI, 1.03-1.61; P = .02) were independent predictors of higher success. Once success was achieved, HIV-1 RNA levels rebounded in more than one third of all patients during follow-up (24% at 6 months). Antiretroviral-naive patients (RH, 0.50; 95% CI, 0.29-0.87; P = .01), older patients (RH, 0.86 per year older; 95% CI, 0.75-0.99; P = .04), and those starting a protease inhibitor other than saquinavir hard gel (RH, 0.66; 95% CI, 0.44-0.98; P = .04) were at decreased hazard for virological failure. Higher baseline HIV-1 RNA level (RH, 1.18 per log higher; 95% CI, 0.99-1.40; P = .06) and a longer time to achieve virological success (RH per 12 months, 1.53; 95% CI, 0.99-2.38; P = .06) were marginally significant predictors of a decreased hazard of ensuing virological failure. CONCLUSIONS: HAART is associated with a favorable virological response if started when the baseline HIV-1 RNA level is low, if at least 2 new nucleoside retrotranscriptase inhibitors are added, and if standard doses of saquinavir hard gel capsule are avoided as a single protease inhibitor. Older patients are more likely to achieve virological success. Thereafter, the higher durability of virological response is predicted by an antiretroviral-naive status and by the use of specific regimens. Lower baseline HIV-1 RNA levels and rapid maximal viral suppression seem to be other important factors in the durability of virological response.

Anti-HIV Agents↗

Rapid clearance of human immunodeficiency virus type 1 from ventricular cerebrospinal fluid during antiretroviral treatment.

To understand the pathogenesis of human immunodeficiency virus-induced neuropathology, it is critical to know the dynamics of viral replication in the central nervous system. Viral decay kinetics were mathematically analyzed from multiple serial specimens of ventricular cerebrospinal fluid and plasma during antiretroviral therapy in a patient with asymptomatic human immunodeficiency virus infection and an external ventricular catheter for hydrocephalus. A rapid exponential decay of virus with an elimination half-life of 4.2 days in ventricular cerebrospinal fluid and 2.3 days in plasma was found. Sequencing the V3 loop-encoding envelope gene of virus in both compartments revealed high sequence homology. The combined data suggest that virus in ventricular cerebrospinal fluid is at least partly contributed by rapidly replicating virus-producing cells recruited from the circulation.

Adult↗

Intensification of background antiretroviral therapy with abacavir during low-level failure may restore optimal suppression.

OBJECTIVE: To investigate the antiviral activity of abacavir added to stable background therapy. DESIGN: Retrospective analysis. MATERIALS AND METHODS: In 27 subjects with detectable plasma viraemia during stable treatment abacavir was added as the only agent. Patients were pre-treated for 180 weeks (mean) with regimens containing zidovudine (102 weeks) and lamivudine (88 weeks). Results were analysed in two groups: group 1, > 400 HIV RNA copies/ml; group 2, 25-399 copies/ml. In 7/13 group 1 patients genotypic resistance analysis was performed prior to abacavir. RESULTS: Median follow-up was 28 weeks, median HIV RNA load at baseline 2.48 log10 copies/ml (3.52 and 1.66 log10 copies/ml in groups 1 and 2, respectively). Plasma viraemia was reduced to less than 400 HIV RNA copies/ml in 2/13 subjects in group 1 and 11/11 in group 2 (week 24). Only one patient in group 1 responded transiently to less than 25 HIV RNA copies/ml. In contrast, 10/14 and 11/11 in group 2 reached values below this threshold at weeks 12 and 24, respectively. Overall, 7/13 group 1 patients were found with > or = 2 zidovudine resistance-associated mutations. The lamivudine resistance-associated mutation M184V was present in four of seven cases. All of these patients showed only a moderate and transient reduction of plasma viraemia (medium peak reduction of 0.73 log10 after 20 weeks). CONCLUSIONS: The addition of abacavir during low-level treatment failure may restore or achieve suppression to levels below the cut-off of the ultrasensitive PCR.

Adult↗

Measuring recent thymic emigrants in blood of normal and HIV-1-infected individuals before and after effective therapy.

The role of the thymus in HIV-1 pathogenesis remains unclear. We developed an assay to quantify the number of recent thymic emigrants in blood based on the detection of a major excisional DNA byproduct (termed alpha1 circle) of T cell receptor rearrangement. By studying 532 normal individuals, we found that alpha1 circle numbers in blood remain high for the first 10-15 yr of life, a sharp drop is seen in the late teen years, and a gradual decline occurs thereafter. Compared with age-matched uninfected control individuals, alpha1 circle numbers in HIV-1-infected adults were significantly reduced; however, there were many individuals with normal alpha1 circle numbers. In 74 individuals receiving highly active antiretroviral therapy, we found no appreciable effect on alpha1 circle numbers in those whose baseline values were already within the normal range, but significant increases were observed in those with a preexisting impairment. The increases in alpha1 circle numbers were, however, numerically insufficient to account for the rise in levels of naive T lymphocytes. Overall, it is difficult to invoke thymic regenerative failure as a generalized mechanism for CD4 lymphocyte depletion in HIV-1 infection, as alpha1 circle numbers are normal in a substantial subset of HIV-1-infected individuals.

Adolescent↗

Relations among CD4 lymphocyte count nadir, antiretroviral therapy, and HIV-1 disease progression: results from the EuroSIDA study.

BACKGROUND: The effect of previous CD4 cell count nadir on clinical progression in patients with increases in CD4 cell counts has not been investigated. OBJECTIVE: To assess risk for progression of HIV disease in patients with CD4 counts of at least 200 cells/mm3 (stratified by the lowest previous CD4 count) and compare the rate of progression in patients with CD4 counts less than 50 cells/mm3 with that in patients whose CD4 counts rebounded from less than 50 cells/mm3 to at least 200 cells/mm3. DESIGN: Prospective, observational multicenter study. SETTING: 52 HIV outpatient clinics in Europe. PATIENTS: Two groups were identified: those with CD4 counts of at least 200 cells/mm3 (group A) and those with CD4 counts less than 50 cells/mm3 (group B). Group A was stratified according to the lowest previous CD4 count: at least 150 cells/mm3 (stratum 1), 100 to 149 cells/mm3 (stratum 2), 50 to 99 cells/mm3 (stratum 3), and 1 to 50 cells/mm3 (stratum 4). MEASUREMENTS: Patients were followed until a progression event occurred (first AIDS-defining event, new AIDS-defining event, or death) or until the CD4 count decreased to less than 200 cells/mm3 (group A) or increased to more than 50 cells/mm3 (group B). Incidence rates were based on a patient-years analysis and reported as events per 100 patient-years of follow-up; the relative hazards for progression were based on Cox proportional hazards models. RESULTS: The overall rate of disease progression in group A was 3.9 per 100 patient-years (95% CI, 3.5 to 4.3 per 100 patient-years), whereas in group B it was much higher (72.9 per 100 patient-years [CI, 69.0 to 76.8 per 100 patient-years]). In group A, the rate increased in patients with previous low CD4 cell count nadirs, resulting in a significant increase in the relative hazard for progression. The relative hazards for strata 2, 3, and 4 were 2.29 (CI, 1.30 to 4.03), 3.65 (CI, 1.94 to 6.85), and 2.94 (CI, 1.44 to 6.00), respectively. CONCLUSIONS: Increases in CD4 counts from very low levels to at least 200 cells/mm3 are associated with a much reduced rate of disease progression. However, a previously low CD4 cell count nadir remains associated with a moderately higher risk for disease progression among patients with CD4 counts of at least 200 cells/mm3.

Adult↗

HIV infection of the central nervous system is characterized by rapid turnover of viral RNA in cerebrospinal fluid.

To assess the kinetics of viral replication and decay in cerebrospinal fluid (CSF), we studied the short-term effects of highly active antiretroviral therapy (HAART) on CSF HIV-1 RNA concentrations. In 15 HIV-positive patients, HIV RNA concentrations were measured in paired CSF and plasma/serum samples. Samples were obtained prior to and 5 to 24 days after initiation or change of HAART. The short-term effects of interruption of HAART were tested in 2 patients. Viral load was measured by the Roche Amplicor assay. During HAART, in 12 of 15 patients a significant reduction of CSF HIV RNA concentration was observed, ranging from 0.55 to 2.77 log10 (median, 1.37 log10). This was paralleled by a reduction of blood viremia ranging from 0.12 to 3.0 log10 (median, 1.65 log10). The median half-life, as calculated from the slopes of the two time-point measurements, for CSF and blood viral load was 2.66 and 2.36 days, respectively. In 2 patients, CSF viral load remained essentially unchanged despite substantial reduction of plasma viral load. In 1 patient, after interruption of HAART, a rapid increase of HIV RNA in the CSF and blood was seen. No correlation was found between the CSF:blood albumin ratio as a measure of the functional integrity of the blood-CSF barrier and the ratio of CSF:blood RNA concentration, which suggests that no major passive influx of HIV RNA moves from the blood into the CSF compartment. However, a correlation existed between the CSF cell count and the CSF viral load (r = 0.74; p < .003). We conclude that, in most HIV-infected individuals, the decay of viral load in the CSF is similarly rapid as that seen in plasma. The rapid kinetics of virus found in the CSF suggest that it may be produced by rapidly proliferating cells, such as lymphocytes.

Adult↗

Protease inhibitor-containing regimens compared with nucleoside analogues alone in the suppression of persistent HIV-1 replication in lymphoid tissue.

OBJECTIVE: Lymphoid tissue provides a reservoir where HIV can persist. However, therapies incorporating a protease inhibitor can target this reservoir. This study was designed to investigate the relative long-term effects on lymph-node viral load and cellular architecture of regimens containing multiple nucleosides alone or in combination with protease inhibitors. METHODS: Axillary lymph-node biopsies from 12 patients with undetectable viraemia (viral load < 20 copies/ml: mean CD4 cells 525 x 10(6)/l) for a mean period of 25 months (range, 10-52 months) were investigated for the presence of HIV by in situ hybridization and coculture. Four patients were receiving multiple nucleoside analogues alone or in one case with a suboptimally dosed protease inhibitor (group I). Protease inhibitor was added to the regimen of seven patients at least 6 months prior to lymph-node biopsy (group II). Standard flow cytometry and virological data were obtained from peripheral blood every 3 months. RESULTS: By in situ hybridization, more productively infected CD4+ T cells were found in the lymph nodes of group I patients treated with nucleoside analogues alone. Very low numbers of productively infected lymph node cells were detected in the protease inhibitor-treated group II. No trapping of virions on the follicular dendritic cell (FDC) network was detectable in protease inhibitor-treated patients. In contrast, large deposits of FDC-bound virions were observed in three out of five patients from group I. Virus cultures from lymph node cells were positive in these three group I patients compared with only one out of seven patients from group II. Sequencing reverse transcriptase and protease genes from these isolates revealed typical mutations conferring resistance to the previously administered nucleoside analogue. A more preserved lymph node architecture and less signs of immunopathological change were also observed in protease inhibitor-treated patients. CONCLUSIONS: Undetectable plasma viraemia using the ultrasensitive PCR assay for prolonged periods of time does not always reflect complete HIV-1 suppression within the lymphoid compartment. Our results suggest that protease inhibitor-containing regimens target HIV reservoirs in lymphoid tissue more effectively and preserve or restore lymph node architecture.

Anti-HIV Agents↗

Does European or non-European origin influence health care and prognosis for HIV patients in Europe? The EuroSIDA Study Group.

BACKGROUND: Previous studies, especially in North America, have shown that socio-economic factors may influence the prognosis for patients with HIV. This study was performed in order to determine if European or non-European origin influence provision of health-care and survival among HIV patients in Europe. METHODS: Fifty HIV clinics in 17 European countries are involved in a European prospective, observational multicentre study. In total, 7230 consecutive patients with HIV attending a routine clinic visit were included in the study. Data on demographics, treatment and laboratory results were collected at time of recruitment into the study and thereafter every 6 months. RESULTS: The median CD4+ lymphocyte count at AIDS diagnosis was 60/mm3, and was similar for all ethnic groups (P = 0.87, Kruskall-Wallis test). The median terminal CD4+ lymphocyte count was 17/mm3 and, again, there was no significant difference between continents of origin (P = 0.35, Kruskall-Wallis test). Antiretroviral drugs were initiated at similar median CD4+ lymphocyte counts and there was no statistically significant difference in survival after a diagnosis of AIDS. CONCLUSIONS: AIDS was diagnosed at the same level of immunodeficiency independent of European or non-European origin and antiretroviral drugs were provided at similar levels of immunodeficiency. No differences in survival depending on continent of origin was found. In spite of these encouraging findings concerns remain that belonging to an ethnic minority can be an obstacle in getting into contact with treatment facilities and thus benefiting from developments in the management of HIV.

Adult↗

The unenlarged lymph nodes of HIV-1-infected, asymptomatic patients with high CD4 T cell counts are sites for virus replication and CD4 T cell proliferation. The impact of highly active antiretroviral therapy.

The efficacy of triple drug therapy for HIV-1 infection encourages its early use to prevent damage to the immune system. We monitored the effects of such therapy on 12 patients with 14-75-mo histories of minimal disease, i.e., CD4+ counts constantly >500/microl and little or no lymph node enlargement. In this way, we could first determine the extent of viral replication and immunoarchitectural changes in unenlarged nodes early in disease, and second follow the response to triple therapy in plasma and lymphoid tissue in tandem. As is known for lymph nodes with more advanced disease, the germinal centers showed productively infected T cells, i.e., CD4+CD1a-CD68- cells labeling intensely for HIV-1 RNA after in situ hybridization. The unenlarged nodes also showed extensive HIV-1 RNA retention on a well-preserved, follicular dendritic cell (FDC) network, and the follicles were abnormal. There were numerous CD8+ cells, many expressing TIA-1 granule antigen. Also, in contrast to normal follicles, CD4+ T cell proliferation was active, with marked increases in the number of cycling, Ki-67+CD4+CD45R0+ cells. After 28 d and 3 mo of therapy, productively infected T cells decreased dramatically and often were not apparent. The labeling of the FDC network for viral RNA also decreased, but not for gag protein. We conclude that HIV-1 replicates and accumulates in lymphoid organs before damage of the immune system, that at this stage of disease de novo production of T cells occurs in the lymphoid tissue, and that the infection is sensitive to triple drug therapy in both plasma and lymph nodes.

Acquired Immunodeficiency Syndrome↗

Kinetics of productive and latent HIV infection in lymphatic tissue and peripheral blood during triple-drug combination therapy with or without additional interleukin-2.

OBJECTIVE: To study decay rates of productively and latently infected cells in peripheral blood and lymph nodes during triple antiretroviral therapy and the possible impact of interleukin-2 (IL-2) on viral kinetics. METHODS: In this non-randomized study, nine antiretroviral-naive HIV-positive patients received either saquinavir hard gel capsules 2400 mg three times daily (group I; four patients) or saquinavir soft gel capsules 1200 mg three times daily and IL-2 (group II), in both cases together with two nucleoside analogues. Plasma viraemia and lymphocyte subsets were analysed. Axillary lymph nodes were excised before and after 12 weeks of therapy. Lymph node sections were examined by in situ hybridization for HIV RNA, and productively infected cells were counted. Infection rates of FACS-sorted CD3, CD4 lymph node and peripheral blood mononuclear cells were determined by nested DNA PCR. RESULTS: Baseline plasma HIV RNA levels ranged from < 25 to > 1 x 10(6) copies/ml and remained undetectable throughout the study in one patient in group I. Plasma viraemia became undetectable after 3 months in four patients (three in group I). Productively infected cells were markedly reduced in the follow-up lymph node specimens. HIV DNA-positive CD4 T cells were reduced in lymphoid tissue and peripheral blood in all six evaluable patients. There were no significant differences between the groups in the clearance rates of plasma virus and of HIV DNA-positive cells. CONCLUSIONS: Combined antiretroviral therapy rapidly suppressed active HIV replication in plasma and lymphoid tissue. Latently infected cells were cleared at a slower rate. Viral clearance did not appear to be markedly affected by additional IL-2 therapy.

Adult↗

Asymptomatic HIV infection is characterized by rapid turnover of HIV RNA in plasma and lymph nodes but not of latently infected lymph-node CD4+ T cells.

OBJECTIVES: To study the kinetics of plasma viraemia and HIV-infected lymph-node cells in stable asymptomatic HIV infection with high CD4+ T-cell counts. METHODS: Nine asymptomatic HIV-infected patients with stable CD4+ T-cell counts (510-1350 x 10(6)/l) were treated with a triple-drug combination. Plasma viraemia was determined at days 0, 3, 7, 10, 14, 21 and 28 of treatment [Roche polymerase chain reaction (PCR) and ultrasensitive PCR assay]. Sequential lymph-node biopsies were examined in four patients before and after 4 weeks of treatment. Productively infected cells were counted in lymph-node sections (in situ hybridization). The infection rates of FACS-sorted CD4+ lymph-node T cells and the expression of single-spliced, double-spliced and full-length HIV transcripts were determined. RESULTS: HIV plasma RNA half-lives ranged from 1.4 to 2.7 days. Viral turnover varied between 0.07 and 7.54 x 10(8) copies per day. The number of productively infected lymph-node cells as well as the amount of extracellular virus in germinal centres was markedly reduced during treatment, paralleled by a clearance of single-spliced, double-spliced and full-length HIV transcripts from CD4+ lymph-node T cells. Plasma viraemia remained detectable with an ultrasensitive PCR assay in three out of four patients. The percentage of lymph-node CD4+ T cells harbouring proviral DNA decreased only slightly. CONCLUSIONS: The kinetics of HIV replication are rapid in stable asymptomatic infection, and the magnitude of replication varies considerably. Productively infected lymph-node cells and extracellular virus in germinal centres undergo a rapid turnover, whereas latently infected CD4+ T cells have a lower rate of turnover. The latter may contribute substantially to viral persistence during therapy.

Adult↗

Germinal centre CD4+ T cells are an important site of HIV replication in vivo.

OBJECTIVE: CD4+ T cells are the main target for HIV. However, the highest HIV antigen concentration in infected subjects accumulates on the cell surface of follicular dendritic cells in the germinal centres of the lymphoid tissue. Germinal centres contain a T-helper cell subset which expresses CD57 molecules. Here we analysed virus replication and viral load in CD57+CD4+ germinal centre T cells and in the CD4+ T cells found mostly outside germinal centres (CD57-CD4+). METHODS: Peripheral blood mononuclear cells and lymph-node cells were prepared, stained for CD4 and CD57 and purified by FACS. Defined cell numbers of CD4+CD57+ cells and CD4+CD57- cells were sorted directly into polymerase chain reaction (PCR) tubes by FACS, equipped with an automated cell deposition unit and analysed by PCR to detect proviral DNA. Based on Poisson distribution, the expected level of infection was calculated. Viral replication was determined by amplifying double-spliced, single-spliced, and full-length transcripts of HIV using serially diluted cDNA of the FACS-sorted cells. RESULTS: An up to 10-fold higher frequency of infected cells was found in the CD57+CD4+ germinal centre T cells compared with CD57-CD4+ T cells. Furthermore, active viral replication was detected almost exclusively in the CD57+CD4+ T cells. CONCLUSIONS: The CD57+CD4+ germinal centre T cells are one of the sites of HIV infection and replication that may play a pivotal role in the pathogenesis of HIV infection.

Base Sequence↗

Coinfection of individual leukocytes with human cytomegalovirus and human immunodeficiency virus is a rare event in vivo.

Infection with the human cytomegalovirus (HCMV) accelerates disease progression in human immunodeficiency virus 1 (HIV-1)-infected individuals. This has been attributed to the transaction of HIV-1 gene expression by HCMV gene products. For transactivation to be effective in vivo both viruses must be present in the same cell. We therefore examined blood samples from 13 HIV-1-infected patients with HCMV viremia for coinfection of individual leukocytes. In four of the patients lymph nodes were also examined. Multiple samples contained defined numbers (between 10 and 1000) of CD4+ lymphocytes or CD14+ monocytes were sorted by a FACS-based automated cell deposition unit. Samples were then analysed by a multiplex nested polymerase chain reaction, which can detect simultaneously HCMV and HIV DNA. The percentage of infected cells was calculated for each virus using the Poisson distribution. Between 0.43% and 6.2% of the CD4+ lymphocytes were infected with HIV and less than 0.15% with HCMV. The level of infection in CD14+ monocytes was always < or = 0.11% for HIV and ranged between < 0.05% and 0.58% for HCMV. Only seven of 1030 sorted samples from blood were positive for both viruses. In lymphnodes, none of the 144 samples tested were double-positive. This clearly shows that coinfection of individual human leukocytes with HIV and HCMV is a very rare event in vivo. Therefore, direct transactivation of HIV by HCMV in coinfected cells obtained from blood and lymphnodes may not explain the effect of HCMV on the prognosis of HIV-infected individuals.

AIDS-Related Opportunistic Infections↗