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Published on: September 8, 2021
An update on PTEN modulators - a patent review
Chandra S Boosani1, Palanikumar Gunasekar2, Devendra K Agrawal1
1Department of Translational Research, Western University of Health Sciences , Pomona , CA , USA.
Abstract:
Introduction: A multitude of cellular and physiological functions have been attributed to the biological activity of PTEN (Phosphatase and tensin homolog) such as inhibiting angiogenesis, promoting apoptosis, preventing cell proliferation, and maintaining cellular homeostasis. Based on whether cell growth is needed to be initiated or to be inhibited, enhancing PTEN expression or seeking to inhibit it was pursued. Areas covered: Here the authors provide recent updates to their previous publication on 'PTEN modulators: A patent review', and discuss on new specificities that affirm the therapeutic potential of PTEN in promoting neuro-regeneration, stem cell regeneration, autophagy, bone and cartilage regeneration. Also, targeting PTEN appears to be effective in developing new treatment strategies for Parkinson's disease, Alzheimer's disease, macular degeneration, immune disorders, asthma, arthritis, lupus, Crohn's disease, and several cancer types. Expert opinion: PTEN mainly inhibits the PI3k/Akt pathway. However, the PI3k/Akt pathway can be activated by other signaling proteins. Thus, novel treatment strategies that can regulate PTEN alone, or combinational treatment approaches that can induce PTEN and simultaneously affect downstream mediators in the PI3K/Akt pathway, are needed, which were not investigated in detail. Commercial interests associated with molecules that regulate PTEN are discussed here, along with limitations and new possibilities to improve them.
Insights
Phosphatase and tensin homolog (PTEN) plays a crucial role in cellular functions and regeneration. PTEN modulators show therapeutic potential for neurodegenerative diseases, immune disorders, and cancer.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- PTEN (Phosphatase and tensin homolog) is a key regulator of cellular functions, including proliferation, apoptosis, and homeostasis.
- Modulating PTEN activity is a growing area of therapeutic interest.
Purpose of the Study:
- To provide recent updates on PTEN modulators, focusing on their therapeutic potential.
- To discuss novel applications of PTEN targeting in regeneration and disease treatment.
Main Methods:
- Review of recent patents and literature on PTEN modulators.
- Analysis of PTEN's role in various physiological and pathological processes.
Main Results:
- PTEN targeting shows promise for neuro-regeneration, stem cell therapy, and treating conditions like Parkinson's, Alzheimer's, and various cancers.
- PTEN's inhibition of the PI3k/Akt pathway is central to its function, but alternative activation pathways exist.
Conclusions:
- Novel strategies are needed to regulate PTEN, potentially through combination therapies targeting downstream mediators.
- Further research into PTEN modulators could lead to improved treatments for a range of diseases.
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