Hydroquinidine Modulates Histopathological, Inflammatory, Apoptotic, EMT-Related, and PI3K/AKT/mTOR-Associated
İlknur Keskin1, Begüm Şahin2, Aziz Bülbül3
1Histology and Embryology Department, School of Medicine, İstanbul Medipol University, İstanbul 34810, Turkey.
Abstract:
Colon cancer remains a leading cause of cancer-related deaths, and drug repurposing offers a promising strategy to identify new therapies. Hydroquinidine (HQ), a class I antiarrhythmic agent, has recently been suggested to possess anticancer properties; however, its preclinical safety and efficacy in colorectal cancer are not well defined. The safety of HQ was evaluated in Wistar rats following OECD guidelines. Rats received daily intraperitoneal doses (2.5-25 mg/kg) for 90 days, with hematological, biochemical, and histopathological assessments performed. HQ was well tolerated up to 12.5 mg/kg, whereas 25 mg/kg caused signs of hepatotoxicity without lethality. A 1,2-dimethylhydrazine-induced colorectal cancer model was then used to assess HQ at safe doses (6.25 and 12.5 mg/kg) compared with cisplatin. Tissue histopathology and selected molecular markers associated with inflammation, apoptosis, epithelial-mesenchymal transition, and PI3K/AKT/mTOR pathway activity were analyzed. In the DMH-induced colon cancer model, HQ improved colonic tissue architecture and was associated with lower histopathological scores compared with untreated tumor controls. HQ also modulated tumor-associated markers by reducing IL-6 immunoreactivity, increasing caspase-3 expression, enhancing E-cadherin immunoreactivity, and decreasing vimentin expression. Moreover, HQ was associated with reduced immunoreactivity of mTOR pathway-related markers, suggesting attenuation of pathway activation in this experimental context. Overall, HQ showed an acceptable safety profile at the selected doses and exerted favorable histopathological and molecular modulatory effects, supporting further investigation as a potential repurposing candidate.
Insights
Hydroquinidine (HQ), an antiarrhythmic drug, shows promise for colon cancer treatment. Tested in rats, HQ demonstrated safety and reduced tumor markers, supporting its potential repurposing for colorectal cancer therapy.
Area of Science:
- Pharmacology
- Oncology
- Drug Repurposing
Background:
- Colorectal cancer is a significant cause of cancer mortality.
- Drug repurposing is a viable strategy for discovering novel cancer therapies.
- Hydroquinidine (HQ), an antiarrhythmic drug, has potential anticancer properties requiring preclinical evaluation.
Purpose of the Study:
- To assess the preclinical safety and efficacy of Hydroquinidine (HQ) in a colorectal cancer model.
- To investigate the molecular mechanisms underlying HQ's potential anticancer effects.
Main Methods:
- Safety evaluation of HQ in Wistar rats following OECD guidelines (90-day study).
- Assessment of HQ efficacy in a 1,2-dimethylhydrazine (DMH)-induced colorectal cancer model in rats.
- Analysis of histopathology and molecular markers (inflammation, apoptosis, EMT, PI3K/AKT/mTOR pathway).
Main Results:
- HQ was well-tolerated up to 12.5 mg/kg; 25 mg/kg induced hepatotoxicity but no lethality.
- In the DMH model, HQ (6.25 and 12.5 mg/kg) improved colonic tissue architecture and reduced histopathological scores.
- HQ modulated tumor markers by decreasing IL-6, increasing caspase-3, enhancing E-cadherin, and reducing vimentin.
- HQ treatment reduced the immunoreactivity of mTOR pathway markers, indicating pathway attenuation.
Conclusions:
- Hydroquinidine exhibits an acceptable safety profile at tested doses for potential colorectal cancer therapy.
- HQ demonstrates favorable histopathological and molecular modulatory effects in a preclinical colon cancer model.
- Further investigation of Hydroquinidine as a repurposed drug for colorectal cancer is warranted.
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