An Emerging Role for Galectins in Tuning the Immune Response: Lessons from Experimental Models of Inflammatory Disease, Autoimmunity and Cancer
Новая роль галектинов в регуляции иммунного ответа: уроки экспериментальных моделей воспалительных заболеваний, аутоиммунных заболеваний и рака
2007-07-16
SCID: 54.1/aw358p3d
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autoimmune diseasescancer immunologygalectinsimmune regulationinflammatory microenvironments
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Abstract (AI)
Inflammation is a critical process for eliminating pathogens, but can lead to serious deleterious effects if left unchecked. Identifying the endogenous factors that control immune tolerance and inflammation is a key goal in the field of immunology. Galectins, a family of endogenous lectins with affinity for beta-galactoside-containing oligosaccharides, are expressed by several cells of the immune system and tissue-resident stromal cells. According to their architecture, this family of glycan-binding proteins is classified in those containing one-carbohydrate-recognition domain (CRD) (proto-type), those containing two-CRD joined by a linker non-lectin domain (tandem-repeat) and those that have one-CRD attached to an N-terminal peptide (chimera-type). Accumulating evidence indicates that galectins play critical regulatory roles in immune cell response and homeostasis. In this review, we summarize recent developments in our understanding of the galectins' roles within different immune cell compartments, and in the broader context of the inflammatory microenvironments. In particular we illustrate the immunoregulatory role of three representative members of each galectin subfamily: galectin-1, -3 and -9. This body of knowledge, documenting the coming of age of galectins as potential immunosuppressive agents or targets for anti-inflammatory drugs, represents a sound basis to further explore their potential as novel therapies for autoimmune diseases, chronic inflammation and cancer.
Key Findings
1
Experimental evidence identifies galectins-1, -3, and -9 as representative regulators of immune-cell compartments and inflammatory microenvironments.
2
Galectin biology provides a rationale for developing therapies for autoimmune diseases, chronic inflammation, and cancer.
3
Galectins are endogenous beta-galactoside-binding lectins expressed by immune and tissue-resident stromal cells that regulate immune responses and homeostasis.
4
Galectins are structurally classified into proto-type, tandem-repeat, and chimera-type proteins according to their carbohydrate-recognition-domain organization.
5
Galectins can tune immune tolerance and inflammation, suggesting potential use as immunosuppressive agents or targets for anti-inflammatory drugs.
Research Object
Galectins in immune cells and tissue-resident stromal cells within inflammatory microenvironments and experimental models of inflammatory disease, autoimmunity, and cancer
Research Subject
The immunoregulatory roles of galectins—particularly galectin-1, galectin-3, and galectin-9—in tuning immune-cell responses, homeostasis, tolerance, and inflammation
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2007-07-16
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