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Therapeutic Effect of Repurposed Temsirolimus in Lung Adenocarcinoma Model
Hsuen-Wen Chang1, Min-Ju Wu1, Zih-Miao Lin2
1Laboratory Animal Center, Office of Research and Development, Taipei Medical University, Taipei, Taiwan.
Abstract:
Lung cancer is one of the major cause of cancer-related deaths worldwide. The poor prognosis and resistance to both radiation and chemotherapy urged the development of potential targets for lung cancer treatment. In this study, using a network-based cellular signature bioinformatics approach, we repurposed a clinically approved mTOR inhibitor for renal cell carcinomans, temsirolimus, as the potential therapeutic candidate for lung adenocarcinoma. The PI3K-AKT-mTOR pathway is known as one of the most frequently dysregulated pathway in cancers, including non-small-cell lung cancer. By using a well-documented lung adenocarcinoma mouse model of human pathophysiology, we examined the effect of temsirolimus on the growth of lung adenocarcinoma in vitro and in vivo. In addition, temsirolimus combined with reduced doses of cisplatin and gemcitabine significantly inhibited the lung tumor growth in the lung adenocarcinoma mouse model compared with the temsirolimus alone or the conventional cisplatin-gemcitabine combination. Functional imaging techniques and microscopic analyses were used to reveal the response mechanisms. Extensive immunohistochemical analyses were used to demonstrate the apparent effects of combined treatments on tumor architecture, vasculature, apoptosis, and the mTOR-pathway. The present findings urge the further exploration of temsirolimus in combination with chemotherapy for treating lung adenocarcinoma.
Insights
Temsirolimus, an mTOR inhibitor, shows promise for treating lung adenocarcinoma. Combining it with chemotherapy significantly reduced tumor growth in mice, suggesting a new therapeutic strategy for lung cancer.
Area of Science:
- Oncology
- Pharmacology
- Bioinformatics
Background:
- Lung cancer is a leading cause of cancer mortality globally.
- Resistance to conventional therapies necessitates novel treatment strategies.
- The PI3K-AKT-mTOR pathway is frequently dysregulated in non-small-cell lung cancer.
Purpose of the Study:
- To investigate temsirolimus, an mTOR inhibitor, as a potential therapeutic agent for lung adenocarcinoma.
- To evaluate the efficacy of temsirolimus, alone and in combination with chemotherapy, in a lung adenocarcinoma mouse model.
Main Methods:
- Network-based cellular signature bioinformatics approach for drug repurposing.
- In vitro and in vivo studies using a lung adenocarcinoma mouse model.
- Functional imaging, microscopic, and immunohistochemical analyses to elucidate mechanisms of action.
Main Results:
- Temsirolimus demonstrated inhibitory effects on lung adenocarcinoma growth.
- Combination therapy with reduced-dose cisplatin and gemcitabine significantly enhanced tumor inhibition compared to monotherapy or conventional combination.
- Combined treatment impacted tumor architecture, vasculature, apoptosis, and the mTOR pathway.
Conclusions:
- Temsirolimus is a promising candidate for repurposing in lung adenocarcinoma treatment.
- Combination therapy with temsirolimus and chemotherapy offers a potentially superior treatment strategy.
- Further clinical exploration of this combination therapy for lung adenocarcinoma is warranted.
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