The circumstances that predispose to development of HIV and SIV encephalitis (SIVE) are not known; current evidence underscores the importance of the CNS macrophage. The role of CNS macrophages as a target of HIV and SIV infection, and their contribution to the development of CNS lesions is well established. However the identification of distinct monocyte/macrophage subpopulations that carry virus to the CNS and macrophage subsets within the CNS that are the target for infection is not resolved. We have used immunohistochemistry to define phenotypic differences between the resident parenchymal microglia, perivascular macrophages, and multinucleated giant cells. All of these cells express antigens of myeloid lineage including complement receptor 3 (CD11b), CD4, and CD68. Perivascular macrophages and multinucleated giant cells (MNGC) but not parenchymal microglia expressed LPS receptor (CD14) and LCA (CD45). Perivascular macrophages and parenchymal microglia upregulate or express de novo CD11b, CD40, and B7-2 (CD86) with higher level of expression of these antigens within the subcortical white matter. In several cases we observed that macrophages making up MNGC had either lost or down regulated CD4. Using this immunophenotype pattern to differentiate between brain macrophages and either double staining for viral protein or in situ hybridization for viral nucleic acid, we found that a population of perivascular brain macrophages is the major cell infected in the CNS of animals with SIVE. We further demonstrate based upon immunohistochemistry for CD14 and CD45 that the MNGC are derived from a population of perivascular macrophages and not the parenchymal microglia. These studies demonstrate the ability to differentiate between subpopulations of brain macrophages underscoring the primary role of the perivascular macrophage as an early and major target of SIV.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Primate Research Center Grants (P51)
Project #
2P51RR000168-37
Application #
6277751
Study Section
Project Start
1998-05-01
Project End
1999-04-30
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
37
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Harvard University
Department
Type
DUNS #
082359691
City
Boston
State
MA
Country
United States
Zip Code
02115
Shang, L; Smith, A J; Reilly, C S et al. (2018) Vaccine-modified NF-kB and GR signaling in cervicovaginal epithelium correlates with protection. Mucosal Immunol 11:512-522
Sonntag, Kai-Christian; Woo, Tsung-Ung W (2018) Laser microdissection and gene expression profiling in the human postmortem brain. Handb Clin Neurol 150:263-272
Almodovar, Sharilyn; Swanson, Jessica; Giavedoni, Luis D et al. (2018) Lung Vascular Remodeling, Cardiac Hypertrophy, and Inflammatory Cytokines in SHIVnef-Infected Macaques. Viral Immunol 31:206-222
Duke, Angela N; Meng, Zhiqiang; Platt, Donna M et al. (2018) Evidence That Sedative Effects of Benzodiazepines Involve Unexpected GABAA Receptor Subtypes: Quantitative Observation Studies in Rhesus Monkeys. J Pharmacol Exp Ther 366:145-157
Kamberov, Yana G; Guhan, Samantha M; DeMarchis, Alessandra et al. (2018) Comparative evidence for the independent evolution of hair and sweat gland traits in primates. J Hum Evol 125:99-105
Seth, Nitin; Simmons, Heather A; Masood, Farah et al. (2018) Model of Traumatic Spinal Cord Injury for Evaluating Pharmacologic Treatments in Cynomolgus Macaques (Macaca fasicularis). Comp Med 68:63-73
Mauney, Sarah A; Woo, Tsung-Ung W; Sonntag, Kai C (2018) Cell Type-Specific Laser Capture Microdissection for Gene Expression Profiling in the Human Brain. Methods Mol Biol 1723:203-221
Termini, James M; Church, Elizabeth S; Silver, Zachary A et al. (2017) Human Immunodeficiency Virus and Simian Immunodeficiency Virus Maintain High Levels of Infectivity in the Complete Absence of Mucin-Type O-Glycosylation. J Virol 91:
Ma, Qi; Ruan, Hongyu; Peng, Lisheng et al. (2017) Proteasome-independent polyubiquitin linkage regulates synapse scaffolding, efficacy, and plasticity. Proc Natl Acad Sci U S A 114:E8760-E8769
Shang, L; Duan, L; Perkey, K E et al. (2017) Epithelium-innate immune cell axis in mucosal responses to SIV. Mucosal Immunol 10:508-519

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