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p-21 Activated Kinase as a Molecular Target for Chemoprevention in Diabetes
Kyle Dammann1, Vineeta Khare2, Clyde Coleman3
1Department of Clinical Medicine, Medical University of the Americas, Devens, MA 01434, USA. dammannkw@gmail.com.
Hypothesis:
Anti-diabetic drugs modulate p-21 activated kinase (PAK) signaling. Introduction: Type 2 diabetes mellitus (T2DM) is a chronic inflammatory disease associated with increased cancer risk. PAK signaling is implicated in cellular homeostasis when regulated, and cancer when unrestrained. Recent reports provided a role for PAK signaling in glucose homeostasis, but the role of PAKs in the pathogenesis of T2DM is unknown. Here, we performed a mini-meta-analysis to explore if anti-diabetic drugs modify PAK signaling pathways, and provide insight regarding modulation of these pathways, to potentially reduce diabetes-associated cancer risk. Methods: PAK interacting partners in T2DM were identified using the online STRING database. Correlation studies were performed via systematic literature review to understand the effect of anti-diabetic drugs on PAK signaling. A mini-meta-analysis correlated multiple clinical studies and revealed the overall clinical response rate and percentage of adverse events in piogliazone (n = 53) and metformin (n = 91) treated patients with PAK-associated diseases. Results: A total of 30 PAK interacting partners were identified (10: reduced beta-cell mass; 10: beta-cell dysfunction; 10: obesity-insulin resistance), which were highly associated with Wnt, and G-protein signaling. The anti-diabetic drug metformin activated signaling pathways upstream; whereas pioglitazone inhibited pathways downstream of PAK. Overall, clinical response upon pioglitazone treatment was 53%. Seventy-nine percent of pioglitazone and 75% of metformin treated patients had adverse events. Pioglitazone reduced molecular-PAK biomarkers of proliferation (Ki67 and CyclinD1), and metformin had the opposite effect. Conclusions: PAK signaling in T2DM likely involves Wnt and G-protein signaling, which may be altered by the anti-diabetic drugs metformin and pioglitazone. Apart from the therapeutic limitations of adverse events, pioglitazone may be promising in chemoprevention. However long-term multi-centered studies, which initiate pioglitazone treatment early will be required to fully assess the full potential of these drugs.
Insights
Anti-diabetic drugs like metformin and pioglitazone modulate p-21 activated kinase (PAK) signaling pathways. Pioglitazone shows potential for cancer prevention in type 2 diabetes, despite adverse events.
Area of Science:
- Endocrinology and Metabolism
- Oncology
- Molecular Signaling
Background:
- Type 2 diabetes mellitus (T2DM) is a chronic inflammatory condition linked to increased cancer risk.
- p-21 activated kinase (PAK) signaling regulates cellular functions but is implicated in cancer when dysregulated.
- The role of PAK signaling in T2DM pathogenesis and its modulation by anti-diabetic drugs remains unclear.
Purpose of the Study:
- To investigate if common anti-diabetic drugs alter PAK signaling pathways.
- To explore the potential of these drugs in mitigating diabetes-associated cancer risk.
- To provide insights into PAK signaling's role in T2DM.
Main Methods:
- Identified PAK interacting partners in T2DM using the STRING database.
- Conducted a systematic literature review and mini-meta-analysis of clinical studies on metformin and pioglitazone.
- Assessed clinical response rates, adverse events, and molecular biomarkers of proliferation.
Main Results:
- Discovered 30 PAK interacting partners associated with T2DM, linked to Wnt and G-protein signaling.
- Metformin activated upstream pathways, while pioglitazone inhibited downstream PAK pathways.
- Pioglitazone reduced proliferation biomarkers (Ki67, CyclinD1), whereas metformin increased them; both drugs had high adverse event rates.
Conclusions:
- PAK signaling, involving Wnt and G-protein pathways, is likely altered in T2DM by metformin and pioglitazone.
- Pioglitazone demonstrates potential for cancer chemoprevention in T2DM, warranting further investigation.
- Long-term, multi-center studies are needed to confirm pioglitazone's chemopreventive efficacy, especially with early initiation.
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