By Altering Ocular Immune Privilege, Bone Marrow–derived Cells Pathogenically Contribute to DBA/2J Pigmentary Glaucoma
Open Access
- 19 May 2003
- journal article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 197 (10) , 1335-1344
- https://doi.org/10.1084/jem.20022041
Abstract
Pigment dispersion syndrome causes iris pigment release and often progresses to elevated intraocular pressure and pigmentary glaucoma (PG). Because melanin pigment can have adjuvant like properties and because the Gpnmb gene, which contributes to pigment dispersion in DBA/2J (D2) mice, is expressed in dendritic cells, we tested the hypothesis that ocular immune abnormalities participate in PG phenotypes. Strikingly, we show that D2 eyes exhibit defects of the normally immunosuppressive ocular microenvironment including inability of aqueous humor to inhibit T cell activation, failure to support anterior chamber (AC)-associated immune deviation, and loss of ocular immune privilege. Histologic analysis demonstrates infiltration of inflammatory leukocytes into the AC and their accumulation within the iris, whereas clinical indications of inflammation are typically very mild to undetectable. Importantly, some of these abnormalities precede clinical indications of pigment dispersal, suggesting an early role in disease etiology. Using bone marrow chimeras, we show that lymphohematopoietic cell lineages largely dictate the progression of pigment dispersion, the ability of the eye to support induction of AC-associated immune deviation, and the integrity of the blood/ocular barrier. These results suggest previously unsuspected roles for bone marrow–derived cells and ocular immune privilege in the pathogenesis of PG.Keywords
This publication has 38 references indexed in Scilit:
- Membrane Fas Ligand Activates Innate Immunity and Terminates Ocular Immune PrivilegeThe Journal of Immunology, 2002
- Mutations in genes encoding melanosomal proteins cause pigmentary glaucoma in DBA/2J miceNature Genetics, 2001
- A Gene Responsible for the Pigment Dispersion Syndrome Maps to Chromosome 7q35-q36Archives of Ophthalmology (1950), 1997
- Outflow Obstruction in Pigmentary and Primary Open Angle GlaucomaArchives of Ophthalmology (1950), 1992
- Purification of an autoantigenic 75‐kDa human melanosomal glycoproteinInternational Journal of Cancer, 1991
- Risk Factors for the Development and Severity of Glaucoma in the Pigment Dispersion SyndromeAmerican Journal of Ophthalmology, 1989
- Differentiation Antigens of Melanocytes and Melanoma: Analysis of Melanosome and Cell Surface Markers of Human Pigmented Cells With Monoclonal AntibodiesJournal of Investigative Dermatology, 1988
- Long-term Analysis of Pigmentary Dispersion Syndrome and Piegmentary GlaucomaOphthalmology, 1986
- Pigmentary Dispersion Syndrome and Pigmentary GlaucomaArchives of Ophthalmology (1950), 1986
- Genetic effects on fine structure and development of pigment granules in mouse hair bulb melanocytesDevelopmental Biology, 1968