International Journal of Molecular Sciences · 2020 · 18 citations · 46 references
Different Expression PatternPeritoneal LymphocytesImmunologyImmune RegulationPathologyGynecologyImmunotherapyPeripheral Cd4+ TImmune DysregulationInflammationGal-9 PositivityImplantation (Embryology)Nk SubsetsImmunopathologyMyometrial ContractilityGalectin-9 MoleculesAutoimmune DiseaseImmune SurveillanceAutoimmunityCytokineMedicine
Endometriosis is a gynecological condition that is associated with chronic pelvic inflammation, pain, and infertility. Although substantial evidence supports that immunological alterations contribute to its pathogenesis and we previously posed a pivotal role of Galectin-9 (Gal-9) in this disorder, the involvement of the TIM-3/Gal-9 pathway in the development of endometriosis-associated immunological abnormalities is not yet known. In the present study, multicolor flow cytometry was used to compare the immunophenotype and cell surface expression of TIM-3 and Gal-9 molecules on peripheral blood (PB) and peritoneal fluid (PF) lymphocytes of women with and without endometriosis. We found an altered distribution of different lymphocyte subpopulations, a markedly decreased TIM-3 labeling on all T and NK subsets and a significantly increased Gal-9 positivity on peripheral CD4+ T and Treg cells of the affected cohort. Furthermore, a significantly increased TIM-3 expression on CD4+T-cells and elevated Gal-9 labeling on all T and NK subsets was also revealed in the PF of the examined patients. In conclusion, our results suggest a persistent activation and disturbed TIM-3/Gal-9-dependent regulatory function in endometriosis, which may be involved in the impaired immune surveillance mechanisms, promotes the survival of ectopic lesions, and aids the evolution of reproductive failures in endometriosis.
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Stephanie Jemielity, Jinyize J. Wang, Ying Chan et al. · PLoS Pathogens · 2013 · 343 citations · Full text
Multiple Enveloped Viruses, Molecular Virology, Virion-associated Phosphatidylserine +14
Galectin-9 Induces Apoptosis Through the Calcium-Calpain-Caspase-1 Pathway
Yumiko Kashio, Kazuhiro Nakamura, Mohammad J. Abedin et al. · The Journal of Immunology · 2003 · 305 citations · Full text