ArticleParasites & vectors2019
Tim-3 signaling blockade with α-lactose induces compensatory TIGIT expression in Plasmodium berghei ANKA-infected mice.
Article in Parasites & vectors, 2019. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed, 18 citations in OpenAlex.
- Glucocorticoids in lung cancer: Navigating the balance between immunosuppression and therapeutic efficacy.Heliyon · 2024Review
- Galectins in Protozoan Parasitic Diseases: Potential Applications in Diagnostics and Therapeutics.Cells · 2023Review
- Dihydroartemisinin beneficially regulates splenic immune cell heterogeneity through the SOD3-JNK-AP-1 axis.Science China. Life sciences · 2022Article
- Dihydroartemisinin regulates immune cell heterogeneity by triggering a cascade reaction of CDK and MAPK phosphorylation.Signal transduction and targeted therapy · 2022Article
- Exhausted PD-1Frontiers in immunology · 2022Article
- Modulation of the Gal-9/TIM-3 Immune Checkpoint with α-Lactose. Does Anomery of Lactose Matter?Cancers · 2021Review
- Galectins in Cancer and the Microenvironment: Functional Roles, Therapeutic Developments, and Perspectives.Biomedicines · 2021Review
- Tim-3 suppresses autoimmune hepatitis via the p38/MKP-1 pathway in Th17 cells.FEBS open bio · 2021Article
- Dynamic Expressions of TIGIT on Splenic T Cells and TIGIT-Mediated Splenic T Cell Dysfunction of Mice With ChronicFrontiers in microbiology · 2021Article
- Expression of TIGIT in splenic and circulatory T cells from mice acutely infected with Toxoplasma gondii.Parasite (Paris, France) · 2021Article
- Accelerator or Brake: Immune Regulators in Malaria.Frontiers in cellular and infection microbiology · 2020Review
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Authors and funding
8 authors at 2 institutions in 1 country.
Funding
Abstract
backgroundMalaria, one of the largest health burdens worldwide, is caused by Plasmodium spp. infection. Upon infection, the host's immune system begins to clear the parasites. However, Plasmodium species have evolved to escape the host's immune clearance. T-cell immunoglobulin and mucin domain 3 (Tim-3), a surface molecule on most immune cells, is often referred to as an exhaustion marker. Galectin (Gal)-9 is a Tim-3 ligand and the T helper (Th) 1 cell response is inhibited when Gal-9 binds to Tim-3. In the present study, dynamic expression of Tim-3 on key populations of lymphocytes during infection periods of Plasmodium berghei and its significance in disease resistance and pathogenesis were explored.
methodsTim-3 expression on critical lymphocyte populations and the proportion of these cells, as well as the levels of cytokines in the sera of infected mice, were detected by flow cytometry. Further, in vitro anti-Tim-3 assay using an anti-Tim-3 antibody and in vivo Tim-3-Gal-9 signaling blockade assays using α-lactose (an antagonist of Gal-9) were conducted. An Annexin V Apoptosis Detection Kit with propidium iodide was used to detect apoptosis. In addition, proteins associated with apoptosis in lung and spleen tissues were confirmed by Western blotting assays.
resultsIncreased Tim-3 expression on splenic CD8
conclusionsTim-3 on lymphocytes negatively regulates cell-mediated immunity against Plasmodium infection, and blocking Tim-3-galectin 9 signaling using α-lactose did not significantly protect the mice; however, it induced the compensatory expression of TIGIT. Further investigations are required to identify whether combined blockade of Tim-3 and TIGIT signaling could achieve a better protective effect.
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