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Molecular chess? Hallmarks of anti-cancer drug resistance
Ian A Cree1,2, Peter Charlton3
1Department of Pathology, University Hospitals Coventry and Warwickshire, Coventry, CV2 2DX, UK. iancreebmc@gmail.com.
Background:
The development of resistance is a problem shared by both classical chemotherapy and targeted therapy. Patients may respond well at first, but relapse is inevitable for many cancer patients, despite many improvements in drugs and their use over the last 40 years.
Review:
Resistance to anti-cancer drugs can be acquired by several mechanisms within neoplastic cells, defined as (1) alteration of drug targets, (2) expression of drug pumps, (3) expression of detoxification mechanisms, (4) reduced susceptibility to apoptosis, (5) increased ability to repair DNA damage, and (6) altered proliferation. It is clear, however, that changes in stroma and tumour microenvironment, and local immunity can also contribute to the development of resistance. Cancer cells can and do use several of these mechanisms at one time, and there is considerable heterogeneity between tumours, necessitating an individualised approach to cancer treatment. As tumours are heterogeneous, positive selection of a drug-resistant population could help drive resistance, although acquired resistance cannot simply be viewed as overgrowth of a resistant cancer cell population. The development of such resistance mechanisms can be predicted from pre-existing genomic and proteomic profiles, and there are increasingly sophisticated methods to measure and then tackle these mechanisms in patients.
Conclusion:
The oncologist is now required to be at least one step ahead of the cancer, a process that can be likened to 'molecular chess'. Thus, as well as an increasing role for predictive biomarkers to clinically stratify patients, it is becoming clear that personalised strategies are required to obtain best results.
Insights
Cancer drug resistance is a major challenge, with tumors employing multiple mechanisms for survival. Personalized treatment strategies and predictive biomarkers are crucial for overcoming resistance and improving patient outcomes.
Area of Science:
- Oncology
- Cancer Biology
- Pharmacology
Background:
- Drug resistance is a significant challenge in both classical chemotherapy and targeted cancer therapy.
- Despite advancements in cancer drugs over 40 years, relapse remains inevitable for many patients.
- Resistance mechanisms are complex, involving both cancer cells and the tumor microenvironment.
Purpose of the Study:
- To review the multifaceted mechanisms of anti-cancer drug resistance.
- To highlight the heterogeneity of resistance mechanisms within and between tumors.
- To emphasize the need for personalized treatment strategies in oncology.
Main Methods:
- Review of established and emerging mechanisms of acquired drug resistance in neoplastic cells.
- Analysis of the contribution of tumor microenvironment and host immunity to resistance.
- Exploration of predictive biomarkers and sophisticated methods for measuring resistance.
Main Results:
- Cancer cells acquire resistance through mechanisms such as target alteration, drug pump expression, and reduced apoptosis.
- Tumor microenvironment, stromal cells, and local immunity also play critical roles in resistance development.
- Tumor heterogeneity necessitates individualized treatment approaches, utilizing predictive biomarkers.
Conclusions:
- Overcoming cancer drug resistance requires oncologists to anticipate tumor evolution, akin to 'molecular chess'.
- Personalized treatment strategies, guided by predictive biomarkers, are essential for optimizing patient outcomes.
- Advanced methods for measuring and targeting resistance mechanisms are increasingly important in clinical practice.
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