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An updated patent review of autotaxin inhibitors (2017-present)
Zehui Tan1, Hongrui Lei1, Ming Guo1
1Key Laboratory of Structure-Based Drug Design and Discovery, Ministry of Education, Shenyang Pharmaceutical University, Shenyang, China.
Introduction:
The ATX-LPA axis is an attractive target for therapeutic intervention in a variety of diseases, such as tumor metastasis, fibrosis, pruritus, multiple sclerosis, inflammation, autoimmune conditions, metabolic syndrome, and so on. Accordingly, considerable efforts have been devoted to the development of new chemical entities capable of modulating the ATX-LPA axis.
Areas Covered:
This review aims to provide an overview of novel ATX inhibitors reported in patents from September 2016 to August 2020, discussing their structural characteristics and inhibitory potency in vitro and in vivo.
Expert Opinion:
In the past four years, the classification of ATX inhibitors based on binding modes has brought great benefits to the discovery of more efficacious inhibitors. In addition to GLPG1690 currently in phase III clinical studies for IPF, BBT-877, and BLD-0409 as potent ATX inhibitors have been enrolled in phase I clinical evaluation; meanwhile, many effective molecules were also reported successively. However, most emerging ATX inhibitors in the last four years are closely analogs of previous entities, such as GLPG1690 and PF-8380, which translate into the urgently identification of ATX inhibitors with diverse structural features and promising properties in the near future.
Insights
Novel autotaxin (ATX) inhibitors show promise for treating various diseases. Recent advancements focus on diverse structural features for more effective therapies targeting the ATX-lysophosphatidic acid (LPA) axis.
Area of Science:
- Biochemistry
- Medicinal Chemistry
- Pharmacology
Background:
- The autotaxin (ATX)-lysophosphatidic acid (LPA) axis is implicated in numerous diseases, including cancer metastasis, fibrosis, and inflammatory conditions.
- Modulating the ATX-LPA axis presents a significant therapeutic opportunity.
Purpose of the Study:
- To review novel autotaxin (ATX) inhibitors reported in patents between September 2016 and August 2020.
- To analyze the structural characteristics and inhibitory potency of these ATX inhibitors.
Main Methods:
- Patent literature review focusing on ATX inhibitors.
- Analysis of structural features and in vitro/in vivo inhibitory data.
Main Results:
- Classification of ATX inhibitors based on binding modes has aided in discovering more effective compounds.
- Several potent ATX inhibitors, including GLPG1690, BBT-877, and BLD-0409, are in clinical development.
Conclusions:
- While progress has been made, many recent ATX inhibitors are analogs of existing compounds.
- There is an urgent need for novel ATX inhibitors with distinct structural features and improved therapeutic properties.
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