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Quantitative High-throughput Single-cell Cytotoxicity Assay For T Cells
Published on: February 2, 2013
Concise review: mind the gap: challenges in characterizing and quantifying cell- and tissue-based therapies for
Erin A Rayment1, David J Williams
1Healthcare Engineering Research Group, Centre for Biological Engineering, Loughborough University, Loughborough LE11 3TU, United Kingdom. e.a.rayment@lboro.ac.uk
Abstract:
There are many challenges associated with characterizing and quantifying cells for use in cell- and tissue-based therapies. From a regulatory perspective, these advanced treatments must not only be safe and effective but also be made by high-quality manufacturing processes that allow for on-time delivery of viable products. Although sterility assays can be adapted from conventional bioprocessing, cell- and tissue-based therapies require more stringent safety assessments, especially in relation to use of animal products, immune reaction, and potential instability due to extended culture times. Furthermore, cell manufacturers who plan to use human embryonic stem cells in their therapies need to be particularly stringent in their final purification steps, due to the unrestricted growth potential of these cells. This review summarizes the current issues in characterization and quantification for cell- and tissue-based therapies, dividing these challenges into the regulatory themes of safety, potency, and manufacturing quality. It outlines current assays in use, as well as highlights the limits of many of these product release tests. Mode of action is discussed, with particular reference to in vitro surrogate assays that can be used to provide information to correlate with proposed in vivo patient efficacy. Importantly, this review highlights the requirement for basic research to improve current knowledge on the in vivo fate of these treatments; as well as an improved stakeholder negotiation process to identify the measurement requirements that will ensure the manufacture of the best possible cell- and tissue-based therapies within the shortest timeframe for the most patient benefit.
Insights
Characterizing and quantifying cells for cell and tissue therapies presents regulatory challenges. Improved assays and basic research are needed to ensure safety, potency, and quality for timely patient benefit.
Area of Science:
- Biotechnology
- Regenerative Medicine
- Cellular Therapy
Background:
- Cell and tissue-based therapies require rigorous characterization and quantification for regulatory approval.
- Current manufacturing processes face challenges in ensuring safety, efficacy, and timely delivery of viable products.
- Stringent safety assessments are necessary, particularly concerning animal products, immune reactions, and extended cell culture.
Purpose of the Study:
- To review current challenges in cell and tissue therapy characterization and quantification.
- To analyze issues related to regulatory themes: safety, potency, and manufacturing quality.
- To highlight limitations of existing product release tests and propose areas for improvement.
Main Methods:
- Literature review of current characterization and quantification assays for cell and tissue therapies.
- Analysis of regulatory requirements for advanced therapeutic products.
- Discussion of in vitro surrogate assays and their correlation with in vivo efficacy.
Main Results:
- Existing assays for sterility are insufficient for advanced cell therapies, requiring more stringent safety evaluations.
- Human embryonic stem cell therapies demand heightened purification due to their unrestricted growth potential.
- Current product release tests have significant limitations in fully assessing cell therapy quality.
Conclusions:
- Further basic research is essential to understand the in vivo fate of cell therapies.
- Enhanced stakeholder negotiation is required to define optimal measurement requirements for cell therapy manufacturing.
- Improvements in characterization and quantification will accelerate the development and delivery of effective cell and tissue-based therapies.
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