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Updated: Oct 3, 2025

Generation of Heterogeneous Drug Gradients Across Cancer Populations on a Microfluidic Evolution Accelerator for Real-Time Observation
Published on: September 19, 2019
Treatment-driven tumour heterogeneity and drug resistance: Lessons from solid tumours
Stefania Crucitta1, Federico Cucchiara1, Ron Mathijssen2
1Unit of Clinical Pharmacology and Pharmacogenetics, Department of Clinical and Experimental Medicine, University of Pisa, Pisa, Italy.
Abstract:
Molecular heterogeneity characterizes tumours' evolution and adaptation and, because of its dynamics and continuous changes under external pressure, it is one of the major causes of drug resistance, contributing to therapy failure. Several studies reported evidence of molecular events occuring in individual tumours, including monoclonal or polyclonal resistance, and primary or secondary resistance mechanisms. While primary resistance is a phenomenon already present at the diagnosis of a tumor, the acquired one is strongly related to the selective pressure of treatments administered. Therefore, the pharmacological characteristics of a drug, including its potency, binding affinity and structure, largely influence the mechanism of resistance that will arise at the progression of the disease. As an example, the lung cancer experience clearly demonstrated that the highest is the potency of a drug on its target, the more are the possibilities that the mechanism of resistance will arise independently of the target itself. The present review is focused on tumour heterogeneity and its relation to resistance to targeted-therapy, based on treatment selective pressure across different tumour types, including lung, colorectal, prostate, breast cancer and melanoma. The mechanisms of resistance based on the drug potency and the selective pressure of treatments are discussed, leading to new drug developments or new therapeutic combinations.
Insights
Tumor molecular heterogeneity drives drug resistance and therapy failure. Understanding how drug potency and treatment pressure influence resistance mechanisms is key to developing new cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Tumor molecular heterogeneity fuels cancer evolution and adaptation.
- This heterogeneity is a primary driver of drug resistance and treatment failure.
- Resistance mechanisms can be intrinsic (primary) or acquired during therapy.
Purpose of the Study:
- To review tumor heterogeneity in relation to targeted-therapy resistance.
- To explore how drug characteristics and treatment selective pressure influence resistance.
- To discuss implications for novel drug development and combination therapies.
Main Methods:
- Literature review focusing on tumor heterogeneity and drug resistance.
- Analysis of resistance mechanisms across various cancer types (lung, colorectal, prostate, breast, melanoma).
- Examination of the interplay between drug potency, binding affinity, structure, and resistance evolution.
Main Results:
- Drug resistance is a complex consequence of tumor evolution under therapeutic pressure.
- Highly potent drugs can induce resistance mechanisms independent of the drug's direct target.
- Diverse resistance mechanisms arise based on specific drug properties and tumor biology.
Conclusions:
- Targeted-therapy resistance is significantly influenced by tumor molecular heterogeneity.
- Drug potency and selective pressure are critical factors in determining resistance pathways.
- Insights into resistance mechanisms can guide the development of more effective cancer treatments and combinations.
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