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Published on: June 28, 2018
Newly synthesized acridone derivatives targeting lung cancer: A toxicity and xenograft model study
Nilam Bhusare1, Tanuja Yadav2, Mukesh Nandave3
1Somaiya Institute for Research & Consultancy, Somaiya Vidyavihar University, Vidyavihar (E), Mumbai, India.
Abstract:
AKT is one of the overexpressed targets in nonsmall cell lung cancer (NSCLC) and plays an important role in its progression and offers an attractive target for the therapy. The PI3K/AKT/mTOR pathway is upregulated in NSCLC. Acridone is an important heterocycle compound which treats cancer through various mechanisms including AKT as a target. In the present work, the study was designed to evaluate the safety profile of three acridone derivatives (AC-2, AC-7, and AC-26) by acute and repeated dose oral toxicity. In addition to this, we also checked the pAKT overexpression and its control by these derivatives in tumor xenograft model. The results from acute and repeated dose toxicity showed these compounds to be highly safe and free from any toxicity, mortality, or significant alteration in body weight, food, and water intake in the rats. In the repeated dose toxicity, compounds showed negligible variations in a few hematological parameters at 400 mg/kg. The histopathology, biochemical, and urine parameters remained unchanged. The xenograft model study demonstrated AC-2 to be inhibiting HOP-62 induced tumor via reduction in p-AKT1 (Ser473) expression significantly. In immunofluorescence staining AC-2 treated tissue section showed 2.5 fold reduction in the expression of p-AKT1 (Ser473). Histopathology studies showed the destruction of tumor cells with increased necrosis after treatment. The study concluded that AC-2 causes cell necrosis in tumor cells via blocking the p-AKT1 expression. The findings may provide a strong basis for further clinical applications of acridone derivatives in NSCLC.
Insights
Acridone derivatives AC-2, AC-7, and AC-26 are safe and show potential for non-small cell lung cancer (NSCLC) therapy. AC-2 effectively inhibits tumor growth by reducing p-AKT1 expression, leading to cancer cell necrosis.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Akt is overexpressed in non-small cell lung cancer (NSCLC), driving tumor progression and representing a therapeutic target.
- The PI3K/AKT/mTOR pathway is frequently upregulated in NSCLC.
- Acridone derivatives are explored for cancer treatment, targeting pathways like Akt.
Purpose of the Study:
- To evaluate the safety profile of acridone derivatives (AC-2, AC-7, AC-26) via acute and repeated dose oral toxicity studies.
- To assess the efficacy of these derivatives in controlling p-AKT overexpression in a tumor xenograft model.
- To investigate the mechanism of action of promising acridone derivatives in NSCLC.
Main Methods:
- Acute and repeated dose oral toxicity studies in rats.
- Tumor xenograft model to evaluate p-AKT overexpression and inhibition.
- Biochemical, hematological, urine analysis, histopathology, and immunofluorescence staining.
Main Results:
- Acridone derivatives demonstrated a high safety profile with no observed toxicity, mortality, or significant alterations in physiological parameters.
- AC-2 significantly inhibited HOP-62 induced tumor growth by reducing p-AKT1 (Ser473) expression by 2.5-fold.
- Histopathology confirmed tumor cell destruction and increased necrosis in AC-2 treated tissues.
Conclusions:
- Acridone derivatives, particularly AC-2, are safe and exhibit anti-cancer activity in NSCLC models.
- AC-2 exerts its therapeutic effect by blocking p-AKT1 expression, leading to cancer cell necrosis.
- These findings support the potential clinical application of acridone derivatives for NSCLC treatment.
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