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Published on: March 20, 2021
Discovery of small molecule cancer drugs: successes, challenges and opportunities
Swen Hoelder1, Paul A Clarke, Paul Workman
1Cancer Research UK Cancer Therapeutics Unit, Division of Cancer Therapeutics, The Institute of Cancer Research, Haddow Laboratories, 15 Cotswold Road, Sutton, Surrey SM2 5NG, UK. swen.hoelder@icr.ac.uk
Abstract:
The discovery and development of small molecule cancer drugs has been revolutionised over the last decade. Most notably, we have moved from a one-size-fits-all approach that emphasized cytotoxic chemotherapy to a personalised medicine strategy that focuses on the discovery and development of molecularly targeted drugs that exploit the particular genetic addictions, dependencies and vulnerabilities of cancer cells. These exploitable characteristics are increasingly being revealed by our expanding understanding of the abnormal biology and genetics of cancer cells, accelerated by cancer genome sequencing and other high-throughput genome-wide campaigns, including functional screens using RNA interference. In this review we provide an overview of contemporary approaches to the discovery of small molecule cancer drugs, highlighting successes, current challenges and future opportunities. We focus in particular on four key steps: Target validation and selection; chemical hit and lead generation; lead optimization to identify a clinical drug candidate; and finally hypothesis-driven, biomarker-led clinical trials. Although all of these steps are critical, we view target validation and selection and the conduct of biology-directed clinical trials as especially important areas upon which to focus to speed progress from gene to drug and to reduce the unacceptably high attrition rate during clinical development. Other challenges include expanding the envelope of druggability for less tractable targets, understanding and overcoming drug resistance, and designing intelligent and effective drug combinations. We discuss not only scientific and technical challenges, but also the assessment and mitigation of risks as well as organizational, cultural and funding problems for cancer drug discovery and development, together with solutions to overcome the 'Valley of Death' between basic research and approved medicines. We envisage a future in which addressing these challenges will enhance our rapid progress towards truly personalised medicine for cancer patients.
Insights
The discovery of small molecule cancer drugs has shifted to personalized medicine, targeting cancer cell vulnerabilities. Key steps include target validation and biomarker-led trials to accelerate progress and reduce drug development failure.
Area of Science:
- Oncology
- Pharmacology
- Genomics
Background:
- Cancer drug discovery has evolved from cytotoxic chemotherapy to personalized medicine.
- Understanding cancer cell genetics and biology, aided by genome sequencing and functional screens, reveals new drug targets.
- This shift emphasizes molecularly targeted drugs exploiting cancer-specific vulnerabilities.
Purpose of the Study:
- To review contemporary approaches in small molecule cancer drug discovery.
- To highlight successes, challenges, and future opportunities in the field.
- To focus on critical steps: target validation, hit/lead generation, lead optimization, and clinical trials.
Main Methods:
- Review of current scientific literature and industry practices in cancer drug discovery.
- Analysis of key stages: target validation, chemical hit/lead generation, lead optimization, and clinical trials.
- Discussion of challenges including druggability, resistance, drug combinations, and development hurdles.
Main Results:
- Personalized medicine strategies are revolutionizing cancer drug discovery.
- Target validation and biology-directed clinical trials are crucial for success.
- Overcoming challenges in druggability, resistance, and development is essential for progress.
Conclusions:
- Accelerating the transition from gene discovery to approved cancer medicines requires focused effort on target validation and clinical trial design.
- Addressing scientific, technical, and organizational challenges is vital to reduce attrition rates.
- Future advancements promise enhanced personalized medicine for cancer patients.
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