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Updated: Jan 10, 2026

Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
The Three Musketeers in Cancer Therapy: Pharmacokinetics, Pharmacodynamics and Personalised Approach
Milan Zarić1, Petar Čanović1, Radica Živković Zarić2
1Department of Biochemistry, Faculty of Medical Sciences, University of Kragujevac, Svetozara Markovića 69, 34000 Kragujevac, Serbia.
Abstract:
Cancer therapy is rapidly evolving from a one-size-fits-all paradigm toward highly personalized approaches. Traditional chemotherapies and radiotherapies, while broadly applied, often yield suboptimal outcomes due to tumor heterogeneity and are limited by significant toxicities. In contrast, precision oncology tailors prevention, diagnosis, and treatment to the individual patient's genetic and molecular profile. Key advancements underscore this shift: molecularly targeted drugs (e.g., trastuzumab for HER2-positive breast cancer, EGFR and ALK inhibitors for lung cancer) have improved efficacy and reduced toxicity compared to conventional therapy. Pharmacokinetic (PK) and pharmacodynamic (PD) considerations are central to personalizing treatment, explaining variability in drug exposure and response among patients and guiding dose optimization. Modern strategies like therapeutic drug monitoring and model-informed precision dosing seek to maintain drug levels in the therapeutic range, improving outcomes. Immunotherapies, including checkpoint inhibitors and CAR-T cells, have transformed oncology, though patient selection via biomarkers (such as PD-L1 expression or tumor mutational burden) is critical to identify likely responders. Innovative drug delivery systems, notably nanomedicine, address PK challenges by enhancing tumor-specific drug accumulation and enabling novel therapeutics. Furthermore, rational combination regimens (informed by PK/PD and tumor biology) are being designed to achieve synergistic efficacy and overcome resistance. Key barriers include the high cost of biomarker testing, insufficient laboratory infrastructure, and inconsistent reimbursement policies. Operational inefficiencies such as long turnaround times or lack of clinician awareness further limit the use of precision diagnostics. Regulatory processes also remain complex, particularly around the co-development of targeted drugs and companion diagnostics, and the evidentiary requirements for rare subgroups. Addressing these barriers will require harmonized policies, investment in infrastructure, and educational initiatives to ensure that the promise of personalized medicine becomes accessible to all patients. Ensuring that advances are implemented responsibly-guided by pharmacological insights, supported by real-world evidence, and evaluated within ethical and economic frameworks-will be critical to realizing the full potential of personalized cancer medicine.
Insights
Precision oncology personalizes cancer treatment using genetic profiles, improving efficacy and reducing toxicity. Advances in targeted drugs, immunotherapies, and nanomedicine are key, but cost and infrastructure barriers remain for accessibility.
Area of Science:
- Oncology
- Pharmacology
- Genomics
Background:
- Traditional cancer therapies face limitations due to tumor heterogeneity and toxicity.
- Precision oncology offers tailored treatments based on individual genetic and molecular profiles.
- Key advancements include molecularly targeted drugs and immunotherapies.
Purpose of the Study:
- To review the evolution of cancer therapy towards personalized approaches.
- To highlight key advancements and challenges in precision oncology.
- To discuss strategies for optimizing treatment efficacy and accessibility.
Main Methods:
- Review of molecularly targeted drugs and immunotherapies.
- Discussion of pharmacokinetic (PK) and pharmacodynamic (PD) principles in treatment personalization.
- Analysis of drug delivery systems, combination regimens, and biomarker-driven patient selection.
- Examination of barriers to precision oncology implementation.
Main Results:
- Molecularly targeted drugs and immunotherapies have improved cancer treatment outcomes.
- Pharmacokinetic/pharmacodynamic considerations and nanomedicine enhance drug delivery and efficacy.
- Biomarker selection is critical for immunotherapy response.
- Significant barriers include cost, infrastructure, operational inefficiencies, and complex regulatory processes.
Conclusions:
- Precision oncology represents a paradigm shift in cancer care, offering tailored and more effective treatments.
- Overcoming implementation barriers requires policy harmonization, infrastructure investment, and education.
- Responsible implementation guided by pharmacological insights and real-world evidence is crucial for realizing personalized medicine's full potential.
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