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New Agents, Emerging Late Effects, and the Development of Precision Survivorship
Eric J Chow1, Zoltan Antal1, Louis S Constine1
1Eric J. Chow and Rebecca Gardner, Fred Hutchinson Cancer Research Center, Seattle Children's Hospital, and University of Washington, Seattle, WA; Zoltan Antal, Weill Cornell Medical College, New York Presbyterian Hospital, and Memorial Sloan Kettering Cancer Center, New York; Louis S. Constine, Wilmot Cancer Institute, University of Rochester Medical Center, Rochester, NY; W. Hamish Wallace, Royal Hospital for Sick Children, University of Edinburgh, Edinburgh, United Kingdom; Brent R. Weil and Jennifer M. Yeh, Boston Children's Hospital, Harvard Medical School, Boston, MA; and Elizabeth Fox, Children's Hospital of Philadelphia, University of Pennsylvania, Philadelphia, PA.
Abstract:
Incremental improvements in the treatment of children and adolescents with cancer have led to 5-year survival rates reaching nearly 85%. In the past decade, impressive progress has been made in understanding the biology of many pediatric cancers. With that understanding, multiple new agents have become available that offer the promise of more-effective and less-toxic treatment. These include agents that target various cell surface antigens and engage the adaptive immune system, as well as those that interfere with key signaling pathways involved in tumor development and growth. For local control, surgery and radiation techniques also have evolved, becoming less invasive or featuring new techniques and particles that more precisely target the tumor and limit the dose to normal tissue. Nevertheless, targeted agents, like conventional chemotherapy, radiotherapy, and surgery, may have off-target effects and deserve long-term follow-up of their safety and efficacy. These include injury to the endocrine, cardiovascular, and immunologic systems. New radiation and surgical techniques that theoretically reduce morbidity and improve long-term quality of life must also be validated with actual patient outcomes. Finally, with advances in genomics, information on host susceptibility to late effects is beginning to emerge. Such knowledge, coupled with improved metrics that better describe the spectrum of potential late effects across the entire lifespan, can lead to the development of decision models that project the potential long-term health outcomes associated with various treatment and follow-up strategies. These developments will help extend the current focus on precision medicine to precision survivorship, where clinicians, patients, and families will have a better grasp of the potential risks, benefits, and tradeoffs associated with the growing number of cancer treatment options.
Insights
Pediatric cancer survival is improving due to targeted therapies and advanced techniques. Long-term follow-up is crucial to manage potential late effects and ensure precision survivorship for better patient outcomes.
Area of Science:
- Pediatric Oncology
- Cancer Biology
- Immunotherapy
Background:
- Pediatric cancer survival rates have significantly improved, nearing 85% for 5-year survival.
- Advances in understanding cancer biology have led to novel, less toxic therapeutic agents.
- Evolving surgical and radiation techniques aim for less invasive tumor targeting.
Purpose of the Study:
- To highlight progress in pediatric cancer treatment and the emergence of new therapeutic strategies.
- To emphasize the need for long-term safety and efficacy follow-up of novel treatments.
- To explore the integration of genomics and improved metrics for precision survivorship.
Main Methods:
- Review of advancements in targeted therapies, immunotherapy, and surgical/radiation techniques.
- Discussion of potential off-target effects and late toxicities (endocrine, cardiovascular, immunologic).
- Exploration of genomics in identifying host susceptibility to late effects.
Main Results:
- New agents targeting cell surface antigens and signaling pathways offer more effective, less toxic treatments.
- Less invasive surgical and radiation techniques aim to reduce morbidity.
- Genomic insights are emerging for predicting late effects.
Conclusions:
- Long-term follow-up is essential for validating the safety and efficacy of new pediatric cancer treatments.
- Integrating genomic data and improved outcome metrics can enhance precision survivorship.
- Developing decision models will aid clinicians and families in navigating treatment risks and benefits.
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