Sep 2026· Cell and Gene Therapy Insights· Vol 12, pp. 831–842· 0 citations
TL;DR
This review examines emerging manufacturing technologies and system architectures from a systems-engineering perspective and proposes Design for Translation (DfT) as a future equipment R&D objective: to develop closed and automated platforms that support multiplexed process development while allowing the same validated unit operation to be replicated for clinical manufacture and commercial scale-out.
Abstract
Ex vivo cell and gene therapies have demonstrated remarkable clinical efficacy, yet their widespread adoption remains constrained by the complexity and cost of translation and manufacture. Current development commonly progresses through different equipment architectures: standard tissue-culture systems for process development, integrated patient-scale systems for early clinical manufacture, and factory-integrated systems for high-volume commercial production. Each transition can require process re-optimization, comparability, validation, and technology transfer. This review examines emerging manufacturing technologies and system architectures from a systems-engineering perspective. Drawing on Quality by Design, it proposes Design for Translation (DfT) as a future equipment R&D objective: to develop closed and automated platforms that support multiplexed process development while allowing the same validated unit operation to be replicated for clinical manufacture and commercial scale-out. By preserving the relevant cell microenvironment, critical process parameters, control logic and, digital records throughout the product lifecycle, DfT seeks to reduce platform-change costs and improve the affordability and accessibility of ex vivo cell and gene therapies.
This review covers the manufacturing issues in the CGT life cycle, ranging from development to commercial manufacturing, and places them in a changing global regulatory landscape, and covers new manufacturing paradigms, such as decentralized point-of-care manufacturing, Quality by Design, automation, closed-system proc...
Rajath Samaga, U. Singh, S. D. Pawar· Biotechnology and Bioenginee...· 0 citations
The clinical translation of cell therapies in the People's Republic of China has experienced unprecedented growth, transitioning from early experimental stages to the industrialization of automated cell production. This review comprehensively analyzes the evolving regulatory framework governing cell and gene therapies...
Jia-Wen Deng· Journal of Health Sciences a...· 0 citations
mRNA therapeutics have emerged as a transformative platform for vaccines and protein replacement therapies, yet their broader clinical and commercial translation remains constrained by challenges in product stability, safety, potency, and delivery efficiency. This review provides a comprehensive overview of the current...
Yong-Dan Wang, Saeyoun Kim, Zhen Qin et al.· Trends in Biotechnology· 0 citations
mRNA therapy has emerged as one of the most promising therapeutic approaches in recent years. In this study, we identified key technological challenges and issues and examined organizational requirements necessary to address them and drive the expansion of clinical development. Key technological challenges and issues f...
Masashi Abe, Yuri Sano-Fujimoto, Y. Nishida et al.· Drug Discovery Today· 0 citations
Cell-free protein synthesis (CFPS) has emerged as an attractive technology for decentralized manufacturing of proteins, offering the ability to decouple lysate production from protein synthesis, enabling flexible batch sizing, rapid deployment, and compatibility with a broad range of biological targets. Despite recent...
M. Aucoin, Emma Jackson, Jonathan Jones et al.· Vaccine Insights· 0 citations
This Review evaluates the technological and translational trajectories that have defined the iPSC era and analyzes the operational barriers to therapeutic development, envisioning a paradigm shift in which iPSC-derived interventions transition from bespoke experimental models toward standardized, engineered biological...
Jaecheol Lee, Todd J. Herron, L. Studer et al.· Nature Medicine· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.