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Updated: Feb 1, 2026

Method for Novel Anti-Cancer Drug Development using Tumor Explants of Surgical Specimens
Published on: July 29, 2011
A framework for the development of effective anti-metastatic agents
Robin L Anderson1,2,3, Theo Balasas4, Juliana Callaghan5
1Translational Breast Cancer Program, Olivia Newton-John Cancer Research Institute, Heidelberg, Victoria, Australia.
Abstract:
Most cancer-related deaths are a result of metastasis, and thus the importance of this process as a target of therapy cannot be understated. By asking 'how can we effectively treat cancer?', we do not capture the complexity of a disease encompassing >200 different cancer types - many consisting of multiple subtypes - with considerable intratumoural heterogeneity, which can result in variable responses to a specific therapy. Moreover, we have much less information on the pathophysiological characteristics of metastases than is available for the primary tumour. Most disseminated tumour cells that arrive in distant tissues, surrounded by unfamiliar cells and a foreign microenvironment, are likely to die; however, those that survive can generate metastatic tumours with a markedly different biology from that of the primary tumour. To treat metastasis effectively, we must inhibit fundamental metastatic processes and develop specific preclinical and clinical strategies that do not rely on primary tumour responses. To address this crucial issue, Cancer Research UK and Cancer Therapeutics CRC Australia formed a Metastasis Working Group with representatives from not-for-profit, academic, government, industry and regulatory bodies in order to develop recommendations on how to tackle the challenges associated with treating (micro)metastatic disease. Herein, we describe the challenges identified as well as the proposed approaches for discovering and developing anticancer agents designed specifically to prevent or delay the metastatic outgrowth of cancer.
Insights
Effective cancer treatment requires targeting metastasis, the primary cause of cancer deaths. New strategies are needed to combat metastatic disease, independent of primary tumor response.
Area of Science:
- Oncology and Cancer Research
- Translational Medicine
Background:
- Metastasis is responsible for the majority of cancer-related deaths.
- Cancer complexity, including over 200 types and subtypes with intratumoral heterogeneity, complicates treatment efficacy.
- Limited understanding of metastatic pathophysiology compared to primary tumors hinders effective therapeutic development.
Framework:
- A collaborative Metastasis Working Group was established by Cancer Research UK and Cancer Therapeutics CRC Australia.
- The group includes diverse representation from non-profit, academic, government, industry, and regulatory sectors.
- The objective is to develop actionable recommendations for treating (micro)metastatic disease.
Implementation:
- Focus on inhibiting fundamental metastatic processes.
- Develop novel preclinical and clinical strategies specifically targeting metastasis.
- Strategies should not be solely reliant on primary tumor response.
Implications:
- Advances in understanding and treating metastatic cancer.
- Development of novel anticancer agents to prevent or delay metastatic outgrowth.
- Improved patient outcomes through targeted anti-metastasis therapies.
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