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LAG-3 as a Potent Target for Novel Anticancer Therapies of a Wide Range of Tumors
by
Jonderko, Laura
, Oślizło, Małgorzata
, Kulbacka, Julita
, Karłowicz-Bodalska, Katarzyna
, Szlasa, Wojciech
, Sauer, Natalia
, Kunachowicz, Dominika
in
Ablation
/ Antibodies
/ Antigens
/ Cytotoxicity
/ Dendritic cells
/ Kinases
/ Ligands
/ Localization
/ Lymphocytes
/ Proteins
/ Review
/ T cell receptors
/ Tumors
2022
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LAG-3 as a Potent Target for Novel Anticancer Therapies of a Wide Range of Tumors
by
Jonderko, Laura
, Oślizło, Małgorzata
, Kulbacka, Julita
, Karłowicz-Bodalska, Katarzyna
, Szlasa, Wojciech
, Sauer, Natalia
, Kunachowicz, Dominika
in
Ablation
/ Antibodies
/ Antigens
/ Cytotoxicity
/ Dendritic cells
/ Kinases
/ Ligands
/ Localization
/ Lymphocytes
/ Proteins
/ Review
/ T cell receptors
/ Tumors
2022
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Do you wish to request the book?
LAG-3 as a Potent Target for Novel Anticancer Therapies of a Wide Range of Tumors
by
Jonderko, Laura
, Oślizło, Małgorzata
, Kulbacka, Julita
, Karłowicz-Bodalska, Katarzyna
, Szlasa, Wojciech
, Sauer, Natalia
, Kunachowicz, Dominika
in
Ablation
/ Antibodies
/ Antigens
/ Cytotoxicity
/ Dendritic cells
/ Kinases
/ Ligands
/ Localization
/ Lymphocytes
/ Proteins
/ Review
/ T cell receptors
/ Tumors
2022
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LAG-3 as a Potent Target for Novel Anticancer Therapies of a Wide Range of Tumors
Journal Article
LAG-3 as a Potent Target for Novel Anticancer Therapies of a Wide Range of Tumors
2022
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Overview
LAG-3 (Lymphocyte activation gene 3) protein is a checkpoint receptor that interacts with LSEC-tin, Galectin-3 and FGL1. This interaction leads to reduced production of IL-2 and IFN-γ. LAG-3 is widely expressed in different tumor types and modulates the tumor microenvironment through immunosuppressive effects. Differential expression in various tumor types influences patient prognosis, which is often associated with coexpression with immune checkpoint inhibitors, such as TIM-3, PD-1 and CTLA-4. Here, we discuss expression profiles in different tumor types. To date, many clinical trials have been conducted using LAG-3 inhibitors, which can be divided into anti-LAG-3 monoclonal antibodies, anti-LAG-3 bispecifics and soluble LAG-3-Ig fusion proteins. LAG-3 inhibitors supress T-cell proliferation and activation by disallowing for the interaction between LAG-3 to MHC-II. The process enhances anti-tumor immune response. In this paper, we will review the current state of knowledge on the structure, function and expression of LAG-3 in various types of cancer, as well as its correlation with overall prognosis, involvement in cell-based therapies and experimental medicine. We will consider the role of compounds targeting LAG-3 in clinical trials both as monotherapy and in combination, which will provide data relating to the efficacy and safety of proposed drug candidates.
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