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Novel pharmacological modulators of autophagy: an updated patent review (2012-2015)
1a Department of Biochemistry and Molecular Biology , School of Medicine, Kyung Hee University , Seoul , Korea.
Introduction:
Autophagy is a lysosome-dependent degradation pathway that maintains cellular homeostasis in response to a variety of cellular stresses. Accumulating reports based on animal models have indicated the importance of this catabolic program in many human pathophysiological conditions, including diabetes, neurodegenerative diseases, aging, and cancers. Therefore, autophagy has been highlighted as a novel therapeutic target with a wide range of beneficial effects on human diseases. Here, we review the recent advances of our knowledge toward autophagy, as well as the efforts for developing autophagy modulators. Areas covered: The relevant patents (published at 2012-2015) and the research literature claiming the pharmacological modulation of autophagy are reviewed. Also, their molecular mechanisms and potential therapeutic utilities are discussed. Expert opinion: Considering the molecular machinery involved in autophagy induction, the targeting of autophagy-specific protein is very important to design the therapeutic interventions for specifically treating a variety of autophagy-associated disorders. Many patents and the research literature described in this review have shown promising applications of the relevant autophagy modulators for cancer or neurodegeneration treatments, a few of which are already being considered for clinical evaluation. However, most patents have claimed the modulators of autophagy with little information regarding their mechanisms of action. To design highly potent therapeutics, further work, such as developing compounds that specifically target the autophagy-specific machinery, are required.
Insights
Autophagy, a cellular process, is crucial for maintaining health and treating diseases like cancer. Developing targeted autophagy modulators shows promise for various disorders, but more research is needed for effective therapeutics.
Area of Science:
- Cell Biology
- Molecular Biology
- Pharmacology
Background:
- Autophagy is a fundamental cellular degradation process essential for maintaining homeostasis under stress.
- Dysregulation of autophagy is implicated in numerous human diseases, including cancer, neurodegeneration, and diabetes.
- Autophagy modulators are emerging as a promising therapeutic strategy for a range of pathological conditions.
Purpose of the Study:
- To review recent advancements in understanding autophagy.
- To survey the development of pharmacological autophagy modulators.
- To discuss the molecular mechanisms and therapeutic potential of these modulators.
Main Methods:
- Review of relevant patents published between 2012 and 2015.
- Analysis of research literature on pharmacological autophagy modulation.
- Discussion of molecular mechanisms and therapeutic applications.
Main Results:
- Numerous patents and studies describe autophagy modulators with potential applications in cancer and neurodegeneration.
- Some modulators are under consideration for clinical evaluation.
- Many patented modulators lack detailed mechanistic information.
Conclusions:
- Targeting autophagy-specific proteins is critical for developing effective therapeutics for autophagy-associated disorders.
- Further research is required to design potent compounds with specific mechanisms of action.
- Autophagy modulation holds significant therapeutic promise, particularly for cancer and neurodegenerative diseases.
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