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Updated: Mar 29, 2026

Author Spotlight: Integrating Computational and Experimental Approaches in Precision Oncology
Published on: December 1, 2023
Designing a broad-spectrum integrative approach for cancer prevention and treatment
Keith I Block1, Charlotte Gyllenhaal1, Leroy Lowe2
1Block Center for Integrative Cancer Treatment, Skokie, IL, United States.
Abstract:
Targeted therapies and the consequent adoption of "personalized" oncology have achieved notable successes in some cancers; however, significant problems remain with this approach. Many targeted therapies are highly toxic, costs are extremely high, and most patients experience relapse after a few disease-free months. Relapses arise from genetic heterogeneity in tumors, which harbor therapy-resistant immortalized cells that have adopted alternate and compensatory pathways (i.e., pathways that are not reliant upon the same mechanisms as those which have been targeted). To address these limitations, an international task force of 180 scientists was assembled to explore the concept of a low-toxicity "broad-spectrum" therapeutic approach that could simultaneously target many key pathways and mechanisms. Using cancer hallmark phenotypes and the tumor microenvironment to account for the various aspects of relevant cancer biology, interdisciplinary teams reviewed each hallmark area and nominated a wide range of high-priority targets (74 in total) that could be modified to improve patient outcomes. For these targets, corresponding low-toxicity therapeutic approaches were then suggested, many of which were phytochemicals. Proposed actions on each target and all of the approaches were further reviewed for known effects on other hallmark areas and the tumor microenvironment. Potential contrary or procarcinogenic effects were found for 3.9% of the relationships between targets and hallmarks, and mixed evidence of complementary and contrary relationships was found for 7.1%. Approximately 67% of the relationships revealed potentially complementary effects, and the remainder had no known relationship. Among the approaches, 1.1% had contrary, 2.8% had mixed and 62.1% had complementary relationships. These results suggest that a broad-spectrum approach should be feasible from a safety standpoint. This novel approach has potential to be relatively inexpensive, it should help us address stages and types of cancer that lack conventional treatment, and it may reduce relapse risks. A proposed agenda for future research is offered.
Insights
A new broad-spectrum cancer therapy approach using low-toxicity treatments simultaneously targets multiple cancer pathways, aiming to reduce relapse and costs associated with personalized oncology.
Area of Science:
- Oncology
- Pharmacology
- Biochemistry
Background:
- Personalized oncology has shown success but faces challenges including high toxicity, extreme costs, and frequent patient relapse.
- Relapse is often driven by tumor genetic heterogeneity and therapy-resistant cells adopting compensatory pathways.
- Current targeted therapies are limited in addressing the complexity of cancer biology.
Purpose of the Study:
- To explore a low-toxicity, broad-spectrum therapeutic approach for cancer.
- To identify and nominate high-priority targets and corresponding low-toxicity interventions.
- To evaluate the safety and feasibility of simultaneously targeting multiple cancer pathways.
Main Methods:
- An international task force of 180 scientists reviewed cancer hallmark phenotypes and the tumor microenvironment.
- Teams nominated 74 high-priority targets and suggested low-toxicity therapeutic approaches, including phytochemicals.
- Relationships between targets, hallmarks, and approaches were analyzed for complementary and contrary effects.
Main Results:
- Approximately 67% of target-hallmark relationships showed complementary effects, with low percentages of contrary or mixed effects.
- Among therapeutic approaches, 62.1% demonstrated complementary relationships, with minimal contrary or mixed effects.
- Analysis suggests a broad-spectrum approach is feasible from a safety perspective.
Conclusions:
- A low-toxicity, broad-spectrum therapeutic strategy is a feasible and potentially cost-effective alternative to current personalized oncology.
- This approach may improve outcomes for various cancer types and stages, including those lacking conventional treatments.
- Further research is needed to develop and validate this novel therapeutic paradigm to reduce cancer relapse risks.
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