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A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Targeting protein kinase-b3 (akt3) signaling in melanoma
SubbaRao V Madhunapantula1, Gavin P Robertson2,3,4,5,6,7
1a Center of Excellence in Molecular Biology and Regenerative Medicine (CEMR), Department of Biochemistry , JSS Medical College, Jagadguru Sri Shivarathreeshwara University (Accredited 'A' Grade by NAAC and Ranked 35 by National Institutional Ranking Framework (NIRF)-2015, Ministry of Human Resource Development, Government of India) , Mysuru , India.
Introduction:
Deregulated Akt activity leading to apoptosis inhibition, enhanced proliferation and drug resistance has been shown to be responsible for 35-70% of advanced metastatic melanomas. Of the three isoforms, the majority of melanomas have elevated Akt3 expression and activity. Hence, potent inhibitors targeting Akt are urgently required, which is possible only if (a) the factors responsible for the failure of Akt inhibitors in clinical trials is known; and (b) the information pertaining to synergistically acting targeted therapeutics is available. Areas covered: This review provides a brief introduction of the PI3K-Akt signaling pathway and its role in melanoma development. In addition, the functional role of key Akt pathway members such as PRAS40, GSK3 kinases, WEE1 kinase in melanoma development are discussed together with strategies to modulate these targets. Efficacy and safety of Akt inhibitors is also discussed. Finally, the mechanism(s) through which Akt leads to drug resistance is discussed in this expert opinion review. Expert opinion: Even though Akt play key roles in melanoma tumor progression, cell survival and drug resistance, many gaps still exist that require further understanding of Akt functions, especially in the (a) metastatic spread; (b) circulating melanoma cells survival; and
Insights
Targeting the Akt pathway is crucial for treating metastatic melanoma, as its dysregulation drives tumor growth and resistance. Understanding Akt inhibitor failures and synergistic therapies is key to developing effective treatments.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Deregulated Akt signaling is implicated in 35-70% of advanced metastatic melanomas.
- Elevated Akt3 expression and activity are common in melanoma.
- Akt pathway dysregulation promotes apoptosis inhibition, proliferation, and drug resistance.
Purpose of the Study:
- To review the PI3K-Akt pathway's role in melanoma.
- To discuss key Akt pathway members (PRAS40, GSK3, WEE1) in melanoma.
- To explore Akt inhibitor efficacy, safety, and drug resistance mechanisms.
Main Methods:
- Literature review of the PI3K-Akt signaling pathway in melanoma.
- Analysis of Akt pathway members' functions and therapeutic modulation strategies.
- Discussion of Akt inhibitor clinical trial outcomes and resistance mechanisms.
Main Results:
- Akt plays a critical role in melanoma progression, survival, and drug resistance.
- Significant knowledge gaps exist regarding Akt's role in metastasis and circulating tumor cell survival.
- Understanding Akt inhibitor failures and synergistic approaches is essential for therapeutic development.
Conclusions:
- Potent Akt inhibitors are urgently needed for melanoma treatment.
- Further research is required to address existing knowledge gaps in Akt signaling.
- Developing targeted therapeutics that synergize with Akt inhibition is a promising strategy.
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