Polypharmacy, polypharmacology, and polypharmacotherapy: clarifying definitions and complementary roles in cancer
Aurora Gonzalez-Fierro1, Alma Chavez-Blanco1, Guadalupe Dominguez-Gomez1
1Subdireccion de Investigación Básica, Instituto Nacional de Cancerología, Mexico City, Mexico.
Introduction:
Cancer treatment is predominantly guided by the Somatic Mutation Theory (SMT), which focuses on highly selective drugs targeting driver mutations. This approach has transformed outcomes in specific cancers, including chronic myeloid leukemia, advanced melanoma, renal cell carcinoma, and HER2-positive breast cancer. However, its overall impact remains limited: cancer drug development has an approximately 5.2% success rate, with a median overall survival benefit of only 2.8 months across 124 FDA-approved drugs (374 indications) from 2003 to 2021. These limitations underscore the need for complementary strategies.
Areas Covered:
This narrative review examines three interrelated concepts in cancer care: Polypharmacy: concurrent use of multiple drugs for different conditions in one patient. Polypharmacology: design of single drugs that engage multiple molecular targets within one disease, often via multitarget-directed ligands (MTDLs) to disrupt redundant pathways and delay resistance. Polypharmacotherapy: simultaneous use of multiple (often repurposed non-oncology) drugs to target diverse pathways in a cancer patient.
Expert Opinion:
Polypharmacy requires optimization to minimize risks. Polypharmacology should advance through computational design of balanced MTDLs. Polypharmacotherapy provides a pragmatic and equitable complement to SMT-based precision oncology. Urgent clinical trials are needed to validate this approach, overcome commercial and structural barriers, and improve treatment efficacy, accessibility, and equity worldwide.
Insights
Precision cancer therapy faces limitations, necessitating complementary strategies. This review explores polypharmacy, polypharmacology, and polypharmacotherapy as pragmatic approaches to enhance cancer treatment efficacy and equity.
Area of Science:
- Oncology
- Pharmacology
- Drug Development
Background:
- Somatic Mutation Theory (SMT) guides current cancer treatment with targeted therapies.
- Despite SMT successes, cancer drug development has a low success rate (5.2%) and limited survival benefits.
- Existing limitations highlight the need for alternative and complementary cancer treatment strategies.
Purpose of the Study:
- To review three interrelated concepts in cancer care: polypharmacy, polypharmacology, and polypharmacotherapy.
- To discuss the potential of these approaches as complements to SMT-based precision oncology.
- To advocate for clinical trials to validate and implement these strategies.
Main Methods:
- This is a narrative review examining existing literature and concepts.
- The review defines and discusses polypharmacy, polypharmacology (multi-target-directed ligands), and polypharmacotherapy.
- Expert opinion is provided on the optimization and application of these concepts.
Main Results:
- Polypharmacy requires careful optimization to mitigate risks.
- Polypharmacology offers potential through computational design of multi-target-directed ligands (MTDLs).
- Polypharmacotherapy presents a practical and equitable strategy to complement SMT.
Conclusions:
- Polypharmacotherapy is a viable complement to SMT, offering improved efficacy, accessibility, and equity.
- Further research and clinical trials are crucial to validate polypharmacotherapy.
- Addressing commercial and structural barriers is essential for global implementation.
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