Related Experiment Videos
In vivo cell and tissue tropism of SIVsmmPBj14-bcl.3
S P O'Neil1, S P Mossman, D H Maul
1Department of Pathology, Colorado State University, Fort Collins 80523, USA.
Abstract:
To gain insight into the unique pathogenicity of simian immunodeficiency virus (SIV) variant PBj14, which produces an acutely lethal enteropathic syndrome in infected pigtail macaques, we investigated the cell and tissue tropisms of a highly pathogenic biologic clone (bcl.3) of SIVsmmPBj14. To compare the relative amount of viral antigen in lymphoid organs of infected macaques we used an objective semiquantitative immunohistochemistry (sQIHC) assay. We found that in all animals viral antigen load was greater in alimentary-associated lymphoid tissues (gut-associated lymphoid tissue [GALT], tonsil, mesenteric and retropharyngeal lymph nodes) than in non-alimentary-associated lymphoid tissues (spleen, thymus, inguinal and axillary lymph nodes). Moreover, in six of nine animals examined, virus load in GALT was greater than that in any other lymphoid tissue. To determine whether the acute pathogenicity and prolific replication of SIVsmmPBj14 might be explained by a broader in vivo cell tropism than is typical of SIVs, we used cell subset separation and nested PCR. We found that the primary target cells in mesenteric lymph node for SIVsmmPBj14 were CD4+ T lymphocytes. However, the virus also infected macrophages, as well as CD8+ T cells and B cells, albeit at low frequencies. These results suggest that alimentary lymphoid tissue localization rather than unusual cell phenotype tropism distinguishes the singular pathogenesis of SIVsmmPBj14.
Insights
Simian immunodeficiency virus (SIV) PBj14 preferentially targets gut-associated lymphoid tissues (GALT) in macaques. This localization, rather than unusual cell targeting, explains its severe enteropathic syndrome and high pathogenicity.
Area of Science:
- Virology
- Immunology
- Pathogenesis
Background:
- Simian immunodeficiency virus (SIV) PBj14 causes a lethal enteropathic syndrome in pigtail macaques.
- Understanding the tropism of SIV variants is crucial for deciphering disease pathogenesis.
Purpose of the Study:
- To investigate the cell and tissue tropisms of a highly pathogenic SIVsmmPBj14 biologic clone (bcl.3).
- To determine factors contributing to the unique pathogenicity of SIV PBj14.
Main Methods:
- Semiquantitative immunohistochemistry (sQIHC) to assess viral antigen load in lymphoid tissues.
- Cell subset separation and nested PCR to identify primary target cells in vivo.
Main Results:
- Viral antigen load was significantly higher in alimentary-associated lymphoid tissues (GALT, tonsil, mesenteric, retropharyngeal lymph nodes) compared to non-alimentary ones.
- Gut-associated lymphoid tissue (GALT) showed the highest virus load in most animals.
- Primary target cells were CD4+ T lymphocytes, with low-frequency infection of macrophages, CD8+ T cells, and B cells.
Conclusions:
- Alimentary lymphoid tissue localization distinguishes the pathogenesis of SIV PBj14.
- The singular pathogenesis is linked to tissue tropism, not an unusual cell phenotype tropism.