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Melphalan inhibits adenoma development through modulating the expression of K-ras-specific markers in K-ras Tg mice
Sojung Lee1, Heesook Choi, Eunjin Kim
1Department of Bioscience and Biotechnology, Bio/Molecular Informatics Center, Konkuk University, Hwayang-dong 1, Gwangjin-gu, Seoul 143-701, Korea.
Abstract:
In previous research, we focused on the discovery of K-ras biomarkers, and effects of genotoxic carcinogens on their expression were investigated in this study. It is well-known that mutated K-ras gene is involved in approximately 30% of human cancers such as lung cancer. To search for K-ras oncogene-induced modulators in lung tissues of K-ras transgenic mice, we analyzed K-ras-specific genes and proteins related to cancer development, signal transduction, inflammation as well as tumor suppression in a previous study. In this study, we investigated the modulating effects of genotoxic carcinogen treatment on expression of K-ras-dependent modulated genes and proteins in lung tissues of K-ras Tg mice. In order to evaluate candidate K-ras markers modulated by genotoxic stress and to investigate whether a genotoxic carcinogen would enhance or inhibit carcinogenesis in lung tissues of the K-ras Tg mice, the anti-cancer drug melphalan was intraperitoneally injected into K-ras Tg mice every two days for four weeks. RT-qPCR and proteomics analyses were performed in order to confirm whether K-ras-specific biomarkers would be modulated by melphalan treatment in K-ras Tg mice. The decreased adenomas were histopathologically observed and K-ras expression was suppressed in melphalan-treated K-ras Tg mice. Melphalan also recovered the expression of K-ras-dependent modulated biomarkers. These results suggest that melphalan inhibits carcinogenesis via modulating K-ras-specific genes and proteins expressed in the lung tissues of K-ras Tg mice.
Insights
Melphalan treatment suppressed K-ras expression and reduced lung adenomas in K-ras transgenic mice. This anti-cancer drug also restored K-ras-dependent biomarkers, suggesting it inhibits carcinogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Carcinogenesis
Background:
- Mutated K-ras gene is implicated in approximately 30% of human cancers, including lung cancer.
- K-ras oncogene-induced modulators in lung tissues are crucial for understanding cancer development.
- Genotoxic stress effects on K-ras expression require further investigation.
Purpose of the Study:
- To investigate the modulating effects of genotoxic carcinogen treatment on K-ras-dependent genes and proteins in K-ras transgenic (Tg) mouse lung tissues.
- To evaluate K-ras markers modulated by genotoxic stress.
- To determine if a genotoxic carcinogen enhances or inhibits lung carcinogenesis in K-ras Tg mice.
Main Methods:
- K-ras Tg mice were treated with the anti-cancer drug melphalan.
- Quantitative real-time PCR (RT-qPCR) and proteomics analyses were employed.
- Histopathological examination of lung tissues was performed.
Main Results:
- Melphalan treatment led to decreased adenomas in K-ras Tg mice.
- K-ras expression was suppressed following melphalan administration.
- Melphalan treatment recovered the expression of K-ras-dependent modulated biomarkers.
Conclusions:
- Melphalan inhibits lung carcinogenesis in K-ras Tg mice.
- The anti-cancer drug modulates K-ras-specific genes and proteins in lung tissues.
- Melphalan shows potential as a therapeutic agent for K-ras-driven lung cancers.
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