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Biomedical subjects

B Nath

Publications and source records attributed to B Nath.

9 recordsLinked to original sources

IL-4 increases Simian immunodeficiency virus replication despite enhanced SIV immune responses in infected rhesus macaques.

It is widely believed that a Th1 type CD4 response is critical for enhancement of CD8 immunity and for controlling HIV-1 infection. Th2 type responses, such as what might be seen in a chronic parasitic infection, would sacrifice cellular immunity and thus benefit the virus at the expense of the host. However, there has been little direct examination of the hypothesis in a primate model system. Accordingly, the simian immunodeficiency virus (SIV) infected rhesus macaque model was used to investigate the impact of immunisation with SIV expressing DNA constructs and co-injection with IL-4 on the SIV specific immunological responses, lymphocyte cell counts, as well as the impact on viral load. IL-4 is a Th2 type cytokine, which enhances antibody production and inhibits a CD4 Th1 phenotype. Rhesus macaques were infected with 10 AID50 of SIVmac239 and treated with 9-[2-(phosphonomethoxy)propyl]adenine (PMPA) 9 weeks post-infection. During PMPA treatment, animals were immunised with plasmids that expressed the SIV proteins, env, rev, gag and pol. In addition, they were immunised with a construct that encoded the gene for IL-4. IL-4 co-immunisation increased the neutralizing antibody titres in this group. Importantly, the viral loads in animals vaccinated with IL-4 expressing plasmid increased during the immunisation regimens despite the higher neutralizing antibody titres. In addition, neutralizing antibodies did not correlate with viral set point prior to PMPA treatment, however, there was a correlation between viral loads and antibody titres following the treatment with PMPA. Antibody titres decreased following the suppression of viral load. Importantly, vaccination in the absence of IL-4 protected CD4 levels without increasing viral load. The data support the hypothesis that inappropriate immune bias toward a Th2 pathway would ultimately enhance disease progression.

Animals↗

Therapeutic immunization of HIV-infected chimpanzees using HIV-1 plasmid antigens and interleukin-12 expressing plasmids.

OBJECTIVE: To assess HIV-1 DNA vaccination and co-immunization with interleukin (IL)-12 and IL-10 as immunotherapy in the HIV-1 infected chimpanzee model system. METHODS: Four chimpanzees that were infected with HIV-1-IIIB for longer than 4 years and remained symptom free were immunized with HIV-1 plasmid vaccines. Two chimpanzees were immunized with DNA plasmids that encoded env/rev, gag/pol along with a plasmid that encoded both chains of human IL-12. A third animal was immunized with HIV-1 DNA vaccine constructs and co-immunized with an IL-10 expressing plasmid. Finally a control animal received the HIV-1 DNA vaccine constructs alone. RESULTS: There was no evidence of systemic toxicity associated with the administration of the DNA vaccines or the cytokine-expressing plasmids. We observed that the IL-12/HIV-1 DNA vaccinated animals had enhanced proliferative responses to multiple HIV-1 antigens at multiple time points. The animal that was co-immunized with HIV-1 and IL-10 did not have any changes in the proliferative responses. Finally, the control chimpanzee demonstrated moderate increases in the proliferative responses to HIV-1 antigens. The animal that received HIV-1 vaccines alone and the animals co-immunized with IL-12 all had declines in viral load over the course of the study, however, the decrease in viral loads were transient in all animals. CONCLUSION: Immunization of HIV-1 infected chimpanzees with DNA based vaccines containing the env, gag and pol genes can transiently boost the env specific proliferative responses. Co-administration of IL-12 expressing plasmids further leads to transient boosting of the proliferative response to the core protein, p24 as well. However, at these doses the impact on viral load is minimal.

AIDS Vaccines↗

Vaccination of seronegative volunteers with a human immunodeficiency virus type 1 env/rev DNA vaccine induces antigen-specific proliferation and lymphocyte production of beta-chemokines.

There is a pressing need to test novel vaccine concepts in an effort to develop an effective vaccine for human immunodeficiency virus (HIV) type 1. A phase I clinical study was done to test the immunogenicity of an HIV env/rev DNA vaccine, which was administered intramuscularly to HIV-1-seronegative persons. Subjects received 3 doses of vaccine at a single concentration (100 or 300 microgram) at 0, 4, 8, and 24 weeks. In at least 1 of multiple assays, the 6 subjects who received the 300-microgram dose had DNA vaccine-induced antigen-specific lymphocyte proliferative responses and antigen-specific production of both interferon-gamma and beta-chemokine. Furthermore, 4 of 5 subjects in the 300 microgram-dose group responded to both the rev and env components of the vaccine. The responses did not persist within inoculated individuals and scored in different individuals at different times in the trial. This study supports that HIV-1 DNA vaccine antigens can stimulate multiple immune responses in vaccine-naive individuals, and it warrants additional studies designed to enhance DNA vaccine immunogenicity.

AIDS Vaccines↗

Micronucleus induction and phagocytosis in mammalian cells treated with diesel emission particles.

Micronucleus induction and phagocytosis in V79 and CHO cells treated with diesel emission particles (DEP) were studied. After separation of the sample into supernatant and sediment fractions, the genotoxic activity of DEP was shown to reside in the supernatant fraction for the DMSO-extracted sample, and in the sedimented fraction for the dipalmitoyl lecithin (DPL), a primary component of pulmonary surfactant, dispersed sample. More particles from DMSO sediment samples were phagocytized than DPL sediment by both types of cells. This had no effect, however, on micronucleus induction. CHO cells phagocytized fewer particles, but gave a higher number of micronuclei than V79 cells. CHO cells seem to be more sensitive to DEP. Evidently, micronucleus induction is not the result of phagocytosis per se, but is due to the different response of the indicator cells to the DEP sample tested. These results further indicate that most, if not all, genotoxic compounds associated with DEP can be extracted by DMSO and that genotoxic activity associated with DEP inhaled into the lung may also be expressed by dispersion of particles in pulmonary surfactant.

1,2-Dipalmitoylphosphatidylcholine↗

Methimazole pharmacology in man: studies using a newly developed radioimmunoassay for methimazole.

A RIA for the antithyroid drug methimazole [1-methyl-2-mercaptoimidazole (MMI)] has been developed. A MMI derivative, 5-COOH-MMI, was conjugated to porcine thyroglobulin, and antibodies to the conjugate were raised in rabbits. [35S]MMI was used as the tracer. At a final antibody dilution of 1:100, the assay could detect MMI in amounts as low as 2.5 ng. The putative MMI metabolites 3-methyl-2-thiohydantoin and 1-methylimidazole had minor cross-reactivities of 2.1% and 0.5%, respectively. There was no effect of serum proteins on MMI immunoactivity. MMI was given orally to normal subjects (n = 6), hyperthyroid patients (n = 5), patients with hepatic cirrhosis (n = 4), and normal lactating women (n = 4). After a single dose of 60 mg, peak MMI levels were similar in the normal subjects and the hyperthyroid patients (approximately 1.5 micrograms/ml). Patients with hepatic cirrhosis had similar peak MMI serum levels [1.31 +/- 0.3 (+/- SEM) micrograms/ml], but the half-time of MMI disappearance from serum was significantly prolonged compared with the normal value (21.2 vs. 6.0 h; P less than 0.001). The lactating women received 40 mg MMI as a single dose. Over the next 8 h, mean MMI levels in serum and milk were nearly identical, with a mean serum to milk ratio of 1.03 +/- 0.16. A total of 70.0 +/- 6.0 micrograms MMI was excreted in the milk over the 8-h time period. This amount of MMI could affect neonatal thyroid function.

Adolescent↗