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Unraveling galectin-1 as a novel therapeutic target for cancer
Lucile Astorgues-Xerri1, Maria E Riveiro, Annemilaï Tijeras-Raballand
1Oncology Therapeutic Development, 100 rue Martre, 92110 Clichy, France.
Abstract:
Galectins belong to a family of carbohydrate-binding proteins with an affinity for β-galactosides. Galectin-1 is differentially expressed by various normal and pathologic tissues and displays a wide range of biological activities. In oncology, galectin-1 plays a pivotal role in tumor growth and in the multistep process of invasion, angiogenesis, and metastasis. Evidence indicates that galectin-1 exerts a variety of functions at different steps of tumor progression. Moreover, it has been demonstrated that galectin-1 cellular localization and galectin-1 binding partners depend on tumor localization and stage. Recently, galectin-1 overexpression has been extensively documented in several tumor types and/or in the stroma of cancer cells. Its expression is thought to reflect tumor aggressiveness in several tumor types. Galectin-1 has been identified as a promising drug target using synthetic and natural inhibitors. Preclinical data suggest that galectin-1 inhibition may lead to direct antiproliferative effects in cancer cells as well as antiangiogenic effects in tumors. We provide an up-to-date overview of available data on the role of galectin-1 in different molecular and biochemical pathways involved in human malignancies. One of the major challenges faced in targeting galectin-1 is the translation of current knowledge into the design and development of effective galectin-1 inhibitors in cancer therapy.
Insights
Galectin-1, a key protein in cancer, drives tumor growth, invasion, and metastasis. Inhibiting galectin-1 shows promise for cancer therapy by reducing proliferation and angiogenesis.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Galectins are carbohydrate-binding proteins, with galectin-1 exhibiting diverse biological activities.
- Galectin-1 is differentially expressed in normal and pathological tissues, playing a significant role in cancer progression.
Purpose of the Study:
- To provide an overview of galectin-1's role in molecular and biochemical pathways of human malignancies.
- To highlight galectin-1 as a potential therapeutic target in cancer treatment.
Main Methods:
- Review of existing scientific literature on galectin-1 in oncology.
- Analysis of preclinical data on galectin-1 inhibitors.
Main Results:
- Galectin-1 overexpression is linked to tumor aggressiveness and is found in various cancer types and their stroma.
- Galectin-1 influences tumor growth, invasion, angiogenesis, and metastasis.
- Preclinical studies indicate galectin-1 inhibition has antiproliferative and antiangiogenic effects.
Conclusions:
- Galectin-1 is a promising drug target for cancer therapy.
- Translating knowledge of galectin-1 into effective inhibitors remains a challenge.
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