PubMed Health⌕ Search

PubMed · 2905180

Human retroviruses.

Abstract

After many unsuccessful years of searching, the first pathogenic human retrovirus, the human T-cell leukaemia lymphoma virus (HTLV-I), was reported as recently as 1980 and since that time has been causally linked to the adult T-cell leukaemia lymphoma syndrome. A second HTLV (HTLV-II) isolated shortly afterwards is less clearly linked to some leukaemic and chronic lymphoid malignancies. The second major family of human retroviruses are the human immunodeficiency viruses (HIV) the first group of isolates (HIV-I) of which cause the acquired deficiency syndrome (AIDS). A second group of these viruses (HIV-II), have recently been identified in West Africa. They appear to be less clearly associated with disease and more similar in molecular structure to the Simian immunodeficiency viruses. AIDS has now become a major global pandemic, and vaccine and therapeutic strategies are urgently being investigated in an effort to control the disease. Unfortunately, current results are not very encouraging. In the meantime, preventative and educational measures are of utmost priority in order to prevent further spread. It is not unlikely that new human retroviruses will be discovered over the next few years.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

B J Thomson, A G Dalgleish. 1988. Human retroviruses.. https://doi.org/10.1016/0268-960x(88)90010-0

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Characterization of mannose-binding lectin gene polymorphism among human T-cell lymphotropic virus 1 and 2-infected asymptomatic subjects.

The present study investigated the association between mannose-binding lectin (MBL) gene polymorphism and the susceptibility to human T-cell lymphotropic virus (HTLV) infection in a group of 83 HTLV-infected asymptomatic subjects (62 HTLV-1 and 21 HTLV-2) and 99 healthy controls. Detection of MBL*A, MBL*B, and MBL*C was performed by amplifying a fragment of 349 bp (exon 1) and submitting the product to restriction fragment length polymorphism analysis with BanI and MboII endonucleases. Allele MBL*D was investigated by sequence-specific primer-polymerase chain reaction. The frequency of MBL*A, MBL*B, and MBL*D was 63%, 22%, and 15% among seropositive subjects and 70%, 14%, and 16% among healthy controls, respectively. Genotype differences were statistically significant (chi2 = 11.57; p = 0.04); the presence of genotype BB was 9.6% among HTLV-infected patients compared with 1% among controls (chi2 = 7.151; p = 0.019). A significant difference of the genotype frequencies between HTLV-1 and HTLV-2 infections was observed, but this result could be attributed to the number of investigated HTLV-1-infected subjects. The odds ratio to the presence of BB genotype was 10.453 (1.279 < or = IC95% < or = 85.40; p = 0.019). Results reveal a strong association between MBL polymorphism and HTLV infection. Presence of genotype BB may be associated with the susceptibility to HTLV, but further studies, with a larger number of individuals, will be necessary. MBL polymorphism could possibly have an impact on diseases associated with HTLV infection.

Deltaretrovirus Infections↗