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Updated: Jun 26, 2025

Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
KiSS-1 Modulation by Epigenetic Agents Improves the Cisplatin Sensitivity of Lung Cancer Cells
Giovanni Luca Beretta1, Desirè Alampi1, Cristina Corno1
1Molecular Pharmacology Unit, Department of Experimental Oncology, Fondazione IRCCS Istituto Nazionale dei Tumori, 20133 Milan, Italy.
Abstract:
Epigenetic alterations my play a role in the aggressive behavior of Non-Small Cell Lung Cancer (NSCLC). Treatment with the histone deacetylase inhibitor suberoylanilide hydroxamic acid (SAHA, vorinostat) has been reported to interfere with the proliferative and invasive potential of NSCLC cells. In addition, the DNA methyltransferase inhibitor azacytidine (AZA, vidaza) can modulate the levels of the metastasis suppressor KiSS-1. Thus, since cisplatin is still clinically available for NSCLC therapy, the aim of this study was to evaluate drug combinations between cisplatin and SAHA as well as AZA using cisplatin-sensitive H460 and -resistant H460/Pt NSCLC cells in relation to KiSS-1 modulation. An analysis of drug interaction according to the Combination-Index values indicated a more marked synergistic effect when the exposure to SAHA or AZA preceded cisplatin treatment with respect to a simultaneous schedule. A modulation of proteins involved in apoptosis (p53, Bax) was found in both sensitive and resistant cells, and compared to the treatment with epigenetic agents alone, the combination of cisplatin and SAHA or AZA increased apoptosis induction. The epigenetic treatments, both as single agents and in combination, increased the release of KiSS-1. Finally, the exposure of cisplatin-sensitive and -resistant cells to the kisspeptin KP10 enhanced cisplatin induced cell death. The efficacy of the combination of SAHA and cisplatin was tested in vivo after subcutaneous inoculum of parental and resistant cells in immunodeficient mice. A significant tumor volume inhibition was found when mice bearing advanced tumors were treated with the combination of SAHA and cisplatin according to the best schedule identified in cellular studies. These results, together with the available literature, support that epigenetic drugs are amenable for the combination treatment of NSCLC, including patients bearing cisplatin-resistant tumors.
Insights
Combining epigenetic drugs like SAHA and AZA with cisplatin shows synergistic effects in Non-Small Cell Lung Cancer (NSCLC) treatment, enhancing apoptosis and KiSS-1 release, even in resistant tumors.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Epigenetic alterations contribute to Non-Small Cell Lung Cancer (NSCLC) aggressiveness.
- Histone deacetylase inhibitors (e.g., SAHA) and DNA methyltransferase inhibitors (e.g., AZA) impact NSCLC cell proliferation, invasion, and metastasis suppressor KiSS-1 levels.
- Cisplatin remains a key NSCLC therapeutic, but resistance is a clinical challenge.
Purpose of the Study:
- To evaluate the synergistic effects of combining cisplatin with epigenetic agents SAHA and AZA in NSCLC.
- To investigate the impact of these combinations on KiSS-1 modulation, apoptosis, and cisplatin resistance.
- To assess the in vivo efficacy of SAHA and cisplatin combination therapy in NSCLC models.
Main Methods:
- In vitro drug combination assays using cisplatin-sensitive (H460) and cisplatin-resistant (H460/Pt) NSCLC cell lines.
- Analysis of drug interactions using Combination-Index values, apoptosis markers (p53, Bax), and KiSS-1 release.
- In vivo studies in immunodeficient mice bearing subcutaneous NSCLC tumors treated with SAHA and cisplatin.
Main Results:
- Pre-treatment with SAHA or AZA followed by cisplatin demonstrated a more significant synergistic effect than simultaneous administration.
- Combinations of cisplatin with SAHA or AZA enhanced apoptosis induction and increased KiSS-1 release in both sensitive and resistant cells.
- In vivo treatment with SAHA and cisplatin significantly inhibited tumor volume in mice with advanced NSCLC, including resistant types.
Conclusions:
- Epigenetic agents SAHA and AZA can synergize with cisplatin in NSCLC treatment, overcoming cisplatin resistance.
- The combination therapy enhances apoptosis and modulates KiSS-1, offering a promising strategy for NSCLC management.
- These findings support the clinical utility of combining epigenetic drugs with cisplatin for NSCLC patients, including those with resistant disease.
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