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Signaling intermediates (MAPK and PI3K) as therapeutic targets in NSCLC
Ludovica Ciuffreda, Ursula Cesta Incani, Linda S Steelman
1Division of Medical Oncology A, Regina Elena National Cancer Institute, Via Elio Chianesi 53, 00144, Rome, Italy. michelemilella@hotmail.com.
Abstract:
The RAS/RAF/MEK/ ERK and the PI3K/AKT/mTOR pathways govern fundamental physiological processes, such as cell proliferation, differentiation, metabolism, cytoskeleton reorganization and cell death and survival. Constitutive activation of these signal transduction pathways is a required hallmark of cancer and dysregulation, on either genetic or epigenetic grounds, of these pathways has been implicated in the initiation, progression and metastastic spread of lung cances. Targeting components of the MAPK and PI3K cascades is thus an attractive strategy in the development of novel therapeutic approaches to treat lung cancer, although the use of single pathway inhibitors has met with limited clinical success so far. Indeed, the presence of intra- and inter-pathway compensatory loops that re-activate the very same cascade, either upstream or downstream the point of pharmacological blockade, or activate the alternate pathway following the blockade of one signaling cascade has been demonstrated, potentially driving preclinical (and possibly clinical) resistance. Therefore, the blockade of both pathways with combinations of signaling inhibitors might result in a more efficient anti-tumor effect, and thus potentially overcome and/or delay clinical resistance, as compared with single agent. The current review aims at summarizing the current status of preclinical and clinical research with regard to pathway crosstalks between the MAPK and PI3K cascades in NSCLC and the rationale for combined therapeutic pathway targeting.
Insights
Targeting both the RAS/RAF/MEK/ERK (MAPK) and PI3K/AKT/mTOR (PI3K) pathways may improve lung cancer treatment. Combined inhibition could overcome resistance seen with single-pathway drugs.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- The RAS/RAF/MEK/ERK (MAPK) and PI3K/AKT/mTOR (PI3K) pathways regulate critical cellular functions.
- Dysregulation of these pathways is a hallmark of cancer, driving lung cancer initiation, progression, and metastasis.
Purpose of the Study:
- To review preclinical and clinical research on pathway crosstalk between MAPK and PI3K signaling in non-small cell lung cancer (NSCLC).
- To explore the rationale for combined therapeutic targeting of these pathways in NSCLC.
Main Methods:
- Literature review of studies investigating MAPK and PI3K pathway interactions in NSCLC.
- Analysis of preclinical and clinical data on single and combination pathway inhibition.
Main Results:
- Single-agent inhibitors targeting MAPK or PI3K pathways show limited clinical success in NSCLC.
- Intra- and inter-pathway compensatory mechanisms can lead to resistance to targeted therapies.
- Combined blockade of both pathways shows potential for enhanced anti-tumor effects and overcoming resistance.
Conclusions:
- Targeting both MAPK and PI3K pathways simultaneously offers a promising strategy to improve NSCLC treatment outcomes.
- Combination therapy may overcome or delay clinical resistance observed with single-pathway inhibitors.
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