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Christina Broström

Publications and source records attributed to Christina Broström.

5 recordsLinked to original sources

Short communication: HIV type 2 dynamics.

To gain a better understanding of why HIV-2 is less virulent than HIV-1 the viral dynamics of HIV-2 were studied in two Swedish HIV-2-infected patients after starting antiretroviral therapy. Linear regression analysis of log virus levels in plasma showed that virus decline during the first 2 weeks of therapy followed an exponential decay with half-lives of 2.2 and 2.0 days, respectively. These half-life measurements reflect the decline in the number of cells actively producing the virus, but may represent an underestimation of the true turnover of HIV-2. In one patient, preliminary estimates of the first and second phase of virus decline (halflife 1.3 and 15 days, respectively) were made. The viral dynamics of HIV-2 infection are strikingly similar to those for HIV-1. Thus, HIV-1 and HIV-2 appear to have similar rates of production and clearance in vivo. Consequently, the large differences in plasma virus levels, virulence, and natural course of the disease between the two infections are due to other factors that are yet to be identified.

Adult↗

Evolution of human immunodeficiency virus type 2 coreceptor usage, autologous neutralization, envelope sequence and glycosylation.

To investigate why human immunodeficiency virus type 2 (HIV-2) is less virulent than HIV-1, the evolution of coreceptor usage, autologous neutralization, envelope sequence and glycosylation was studied in sequentially obtained virus isolates and sera from four HIV-2-infected individuals. Neutralization of primary HIV-2 isolates was tested by a cell line-based assay and IgG purified from patients' sera. Significant autologous neutralization was observed for the majority (39 of 54) of the HIV-2 serum-virus combinations tested, indicating that neutralization escape is rare in HIV-2 infection. Furthermore, sera from 18 HIV-2 patients displayed extensive heterologous cross-neutralization when tested against a panel of six primary HIV-2 isolates. This indicates that HIV-2 is intrinsically more sensitive to antibody neutralization than HIV-1. In line with earlier reports, HIV-2 isolates could use several alternative receptors in addition to the major coreceptors CCR5 and CXCR4. Intrapatient evolution from CCR5 use to CXCR4 use was documented for the first time. Furthermore, CXCR4 use was linked to the immunological status of the patients. Thus, all CXCR4-using isolates, except one, were obtained from patients with CD4 counts below 200 cells microl(-1). Sequence analysis revealed an association between coreceptor usage and charge of the V3 loop of the HIV-2 envelope, as well as an association between the rate of disease progression and the glycosylation pattern of the envelope protein. Furthermore, HIV-2 isolates had fewer glycosylation sites in the V3 domain than HIV-1 (two to three versus four to five). It is proposed here that HIV-2 has a more open and accessible V3 domain than HIV-1, due to differences in glycan packing, and that this may explain its broader coreceptor usage and greater sensitivity to neutralizing antibodies.

Amino Acid Sequence↗

Suppression of leukemia inhibitor factor in lymphoid tissue in primary HIV infection: absence of HIV replication in gp130-positive cells.

BACKGROUND: Leukemia inhibitor factor (LIF), a member of the interleukin-6 cytokine family, has recently been shown to inhibit HIV-1 replication both in vivo and in vitro. OBJECTIVE: LIF and its corresponding receptors gp130 and LIF receptor-alpha (LIFR-alpha) were studied in lymphoid tissue (LT) to reveal potential systemic immunoregulatory effects during the course of HIV-1 infection. METHODS: LIF, gp130, LIFR-alpha and HIV-1 replicating cells were identified at the single cell level by immunohistochemistry and quantified by computerized in situ imaging in tonsil and lymph nodes biopsies (LT) from patients with primary HIV-1 infection (PHI), chronic HIV-1 infection (cHI), long-term non-progressors (LTNP) and HIV-1 seronegative controls. RESULTS: LIF and its receptors, gp130 and LIFR-alpha were significantly (P < 0.005) upregulated in LT from PHI patients as compared with HIV-1 seronegative controls. Expression of LIF in cHI was comparable to LIF levels in HIV-1 seronegative controls whereas LTNP showed significantly reduced LIF expression (P < 0.05). LIF receptors, gp130 and LIFR-alpha were significantly upregulated in cHI (P < 0.005) but downregulated in LTNP (P < 0.05 and P < 0.005, respectively). LIF expressing cells could be demonstrated in LT 2 days after onset of acute retroviral syndrome. LIF expression was evident in CD3, CD4 and CD8 cells. Furthermore, high plasma viral load was associated with high expression of LIF in LT. Finally, no HIV-1 replication could be found in CD4 gp130-positive cells in PHI. CONCLUSIONS: LIF, gp130 and LIFR-alpha showed increased expression in LT from patients with PHI. Furthermore, HIV-1 replication did not occur in cells expressing the LIF signaling receptor, gp130, indicating that LIF may be associated with control of HIV-1 replicating cells in vivo.

Adolescent↗

pol gene sequence variation in Swedish HIV-2 patients failing antiretroviral therapy.

There is limited knowledge about how to treat and interpret results from genotypic resistance assays in HIV-2 infection. Here, genetic variation in HIV-2 pol gene was studied in 20 of 23 known HIV-2 cases in Sweden. Five patients with signs of virological treatment failure were longitudinally studied. Clinical, virological and immunological data were collected and the protease (PR) and first half of the reverse transcriptase (RT) was amplified and directly sequenced from plasma samples. Moderate to extensive genetic evolution was observed in four of the five patients who failed treatment. Some mutations occurred at positions known to confer resistance in HIV-1, but many occurred at other positions in PR and RT. All patients had been treated with zidovudine alone or in combination with other antiretroviral drugs, but none displayed a mutation at position 215, which is the primary zidovudine resistance site in HIV-1. Instead, a E219D mutation evolved in virus from two patients and a Q151M mutation evolved in two other patients. A M184V mutation indicative of lamivudine resistance was detected in three patients. The virus of one patient who had been treated with ritonavir, nelfinavir, and lopinavir successively acquired nine unusual mutations in the protease gene, most of which are not considered primary or secondary resistance mutations in HIV-1. Our data indicate that the evolutionary pathways that lead to antiretroviral resistance in HIV-2 and HIV-1 exhibit both similarities and differences. Genotypic HIV-2 resistance assays cannot be interpreted using algorithms developed for HIV-1, instead new algorithms specific for HIV-2 have to be developed.

Adolescent↗

Accumulation of DC-SIGN+CD40+ dendritic cells with reduced CD80 and CD86 expression in lymphoid tissue during acute HIV-1 infection.

BACKGROUND: Dendritic cells (DC) are target cells for HIV-1 and play a key role in antigen presentation and activation of T cells. OBJECTIVE: To characterize interdigitating DC in lymphoid tissue (LT) with regard to maturation, expression of cytokines and co-stimulatory molecules in HIV-1-positive patients. METHODS: DC were characterized by immunohistochemistry and in situ imaging in LT from patients with acute HIV-1 infection (aHI), antiretroviral treated patients, long-term non-progressors/slow progressors with HIV-1 infection (LTNP/SLP), patients with AIDS, HIV-1-negative controls and patients with acute Epstein-Barr virus (EBV) infection. RESULTS: A significant increase of interdigitating DC expressing CD1a, S-100b, CD83 and DC-SIGN was found in LT from patients with aHI (P < 0.02). The co-stimulatory molecules CD80 and CD86 were, however, only partially upregulated and the complete parafollicular network found in acute EBV infection was not generated, despite increased expression of interleukins 1alpha, 1beta, 12; interleukin 1alpha receptor antagonist; interferon alpha; and CD40 expression. LTNP/SLP and treated aviremic subjects had increased frequency of interdigitating DC, albeit lower than in aHI, and low expression of CD80 and CD86. In contrast, patients with AIDS had fewer DC and reduced cytokine expression in LT. CONCLUSIONS: In the early phase of HIV-1 infection, there was a migration of DC to LT comparable to that found in acute EBV infection. The infiltration of DC in LT in acute EBV infection was accompanied by upregulation of CD80 and CD86 expression, which did not occur in aHI. This co-stimulatory defect in aHI may have an impact on the development of HIV-1-specific T cell immunity.

Acute Disease↗