Designing of an extract production protocol for industrial application of cell‐free protein synthesis technology: Building from a current best practice to a quality by design approach

Author:

Melinek Beatrice Judith1ORCID,Tuck Jade23,Probert Philip2,Branton Harvey24,Bracewell Daniel G.1

Affiliation:

1. Department of Biochemical Engineering UCL London UK

2. CPI Darlington UK

3. Merck KGaA Darmstadt Germany

4. eXmoor Pharma Concepts Ltd Darlington UK

Abstract

AbstractCell‐Free Protein Synthesis (CFPS) has, over the past decade, seen a substantial increase in interest from both academia and industry. Applications range from fundamental research, through high‐throughput screening to niche manufacture of therapeutic products. This review/perspective focuses on Quality Control in CFPS. The importance and difficulty of measuring the Raw Material Attributes (RMAs) of whole cell extract, such as constituent protein and metabolite concentrations, and of understanding and controlling these complicated enzymatic reactions is explored, for both centralised and distributed industrial production of biotherapeutics. It is suggested that a robust cell‐free extract production process should produce cell extract of consistent quality; however, demonstrating this is challenging without a full understanding of the RMAs and their interaction with reaction conditions and product. Lack of technology transfer and knowledge sharing is identified as a key limiting factor in the development of CFPS. The article draws upon the experiences of industrial process specialists, discussions within the Future Targeted Healthcare Manufacturing Hub Specialist Working Groups and evidence drawn from various sources to identify sources of process variation and to propose an initial guide towards systematisation of CFPS process development and reporting. These proposals include the development of small scale screening tools, consistent reporting of selected process parameters and analytics and application of industrial thinking and manufacturability to protocol development.

Funder

Innovate UK

Engineering and Physical Sciences Research Council

University College London

Publisher

Institution of Engineering and Technology (IET)

Subject

General Engineering

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