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Published on: November 19, 2019
Interplay between smoking-induced genotoxicity and altered signaling in pancreatic carcinogenesis
Navneet Momi1, Sukhwinder Kaur, Moorthy P Ponnusamy
1Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, NE 68198-5870, USA.
Abstract:
Despite continuous research efforts directed at early diagnosis and treatment of pancreatic cancer (PC), the status of patients affected by this deadly malignancy remains dismal. Its notoriety with regard to lack of early diagnosis and resistance to the current chemotherapeutics is due to accumulating signaling abnormalities. Hoarding experimental and epidemiological evidences have established a direct correlation between cigarette smoking and PC risk. The cancer initiating/promoting nature of cigarette smoke can be attributed to its various constituents including nicotine, which is the major psychoactive component, and several other toxic constituents, such as nitrosamines, 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone, and polycyclic aromatic hydrocarbons. These predominant smoke-constituents initiate a series of oncogenic events facilitating epigenetic alterations, self-sufficiency in growth signals, evasion of apoptosis, sustained angiogenesis, and metastasis. A better understanding of the molecular mechanisms underpinning these events is crucial for the prevention and therapeutic intervention against PC. This review presents various interconnected signal transduction cascades, the smoking-mediated genotoxicity, and genetic polymorphisms influencing the susceptibility for smoking-mediated PC development by modulating pivotal biological aspects such as cell defense/tumor suppression, inflammation, DNA repair, as well as tobacco-carcinogen metabolization. Additionally, it provides a large perspective toward tumor biology and the therapeutic approaches against PC by targeting one or several steps of smoking-mediated signaling cascades.
Insights
Cigarette smoking significantly elevates pancreatic cancer (PC) risk by initiating oncogenic events through its toxic constituents. Understanding these molecular mechanisms is crucial for developing targeted prevention and therapies for PC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Pancreatic cancer (PC) remains a deadly malignancy with poor diagnosis and treatment outcomes.
- Accumulating signaling abnormalities contribute to PC's resistance to chemotherapy and lack of early detection.
- Epidemiological evidence strongly links cigarette smoking to increased PC risk.
Purpose of the Study:
- To review the molecular mechanisms by which cigarette smoking contributes to pancreatic cancer development.
- To explore the role of specific smoke constituents and their oncogenic signaling pathways.
- To discuss genetic polymorphisms and their influence on susceptibility to smoking-induced PC.
Main Methods:
- Review of experimental and epidemiological evidence on smoking and PC.
- Analysis of molecular signaling cascades involved in PC initiation and progression.
- Examination of genotoxicity and genetic factors influencing PC susceptibility.
Main Results:
- Cigarette smoke constituents like nicotine, nitrosamines, and polycyclic aromatic hydrocarbons initiate oncogenic events.
- These events include epigenetic alterations, uncontrolled growth, apoptosis evasion, angiogenesis, and metastasis.
- Genetic polymorphisms affect cellular defense, inflammation, DNA repair, and carcinogen metabolism, modulating PC risk.
Conclusions:
- A comprehensive understanding of smoking-mediated signaling is vital for PC prevention and treatment.
- Targeting specific steps in these signaling cascades offers therapeutic potential for pancreatic cancer.
- Further research into molecular mechanisms can improve outcomes for patients with smoking-related PC.
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