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Published on: July 14, 2023
Pharmacovigilance in Cell and Gene Therapy: Evolving Challenges in Risk Management and Long-Term Follow-Up
Emile Youssef1, Kari Weddle2, Lisa Zimmerman2
1Kapadi, Inc., 9650 Strickland Road, Raleigh, NC, 27615, USA. emile.youssef@kapadi.com.
Abstract:
Cell and gene therapies, including CAR T-cells, CRISPR-based genome editing, and next-generation viral and non-viral delivery platforms, are transforming treatment paradigms across cancer, rare genetic disorders, immune dysregulation, and neurodegenerative disease. These therapies offer curative potential but also present safety challenges owing to prolonged biological activity, systemic immune engagement, and lasting genomic alterations. This review examines the range of related toxicities, including immune complications, genotoxicity, and organ-specific effects, with attention to atypical presentations, gaps in clinical trial safety capture, and disparities in global long-term follow-up infrastructure. Central to our analysis is a risk-adaptive, digitally enabled pharmacovigilance model that incorporates real-world data, artificial intelligence-based signal detection, and seamless pediatric-to-adult follow-up to proactively protect patients while supporting innovation. Integrated safety dashboards, pediatric transition roadmaps, and predictive monitoring tools are proposed as practical solutions to improve coordination among sponsors, regulators, and clinical sites. We also outline best practices for aligning risk evaluation and mitigation strategies with risk management plans and examine how wearable biosensors, electronic patient-reported outcomes, and multi-omics biomarkers contribute to near real-time safety surveillance. Ethical priorities such as informed consent, data privacy, and equitable access are addressed throughout. By positioning pharmacovigilance as a proactive and predictive foundation within the therapeutic landscape, this review offers a forward-looking blueprint to advance innovation while ensuring long-term patient safety.
Insights
Cell and gene therapies offer cures but pose safety risks. A proactive, digitally enhanced pharmacovigilance model is crucial for long-term patient safety and innovation.
Area of Science:
- Advanced therapeutic modalities
- Regenerative medicine
- Genomic medicine
Background:
- Cell and gene therapies (CGT), including CAR T-cells and CRISPR, are revolutionizing treatments for cancer, genetic disorders, and neurodegenerative diseases.
- While offering curative potential, CGT present significant safety challenges due to prolonged activity, immune responses, and genomic alterations.
Purpose of the Study:
- To review toxicities associated with CGT, identify gaps in safety monitoring, and propose a novel pharmacovigilance framework.
- To enhance patient safety and support ongoing innovation in CGT development and application.
Main Methods:
- Comprehensive review of CGT-related toxicities, including immune, genotoxic, and organ-specific effects.
- Analysis of current clinical trial safety data capture and long-term follow-up infrastructure limitations.
- Development of a risk-adaptive, digitally enabled pharmacovigilance model integrating real-world data and AI.
Main Results:
- Identified immune complications, genotoxicity, and organ-specific effects as key CGT toxicities.
- Highlighted gaps in safety data collection and global long-term follow-up for CGT.
- Proposed a pharmacovigilance model leveraging digital tools, AI, and multi-modal data for proactive safety surveillance.
Conclusions:
- A digitally enabled, risk-adaptive pharmacovigilance system is essential for managing CGT safety.
- Integrated tools like AI, biosensors, and electronic patient outcomes can improve near real-time safety surveillance.
- Proactive pharmacovigilance is vital for balancing innovation with long-term patient safety and ethical considerations in CGT.
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