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The use of plants as bioreactors has gained increasing interest in the past few years as they offer several advantages over other heterologous systems, including low cost biomass production, considerable scale up potential and the ability to undertake complex post-translational modifications that are essential for the stabilization and/or functionality of some proteins [ 25].
Furthermore, the scale up potential in EHDA technologies indicate a viable route to enhance drug encapsulation and dissolution rate of loaded porous inorganic materials.
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For either PMAS or MAS, the manufacture state of the technique is also reviewed to establish their scale-up potential.
Process optimization also led to about 40% savings in hydrolysis time, indicating scale-up potential for the process.
In a mainstream of a large-scale synthesis, soft chemical methods can be chosen due to a low growth temperature and a good scale-up potential [2, 3].
Topics in process engineering including immobilized cell bioreactor configurations and the scale-up potential of the various immobilization supports and techniques are also discussed.
In order to study the scale-up potential of this approach, kinetics of hydrate growth at temperatures close to ambient conditions and moderate pressures is required.
The versatility of these approaches suggests that, in the near future, they will become the dominant methods for designing and selection of novel affinity ligands with scale-up potential.
The results presented here enhance the scale-up potential of microbial VLP processing, and suggest that TEVp may be a preferable enzyme for use in other bioprocess settings, including those related to the processing of less complex biologics.
The current work shows that the above strategy severely curtails the scale-up potential of existing state of the art planners which can be overcome by leveraging the loose coupling.
Finally, high cell-density cultivations of the recombinant strains were carried out, demonstrating stable protein production levels at similar relative yields (42 1298 mg per L of culture; 3.8 11.6 mg per OD600nm unit) as in shaking flasks, and showing the scale-up potential of the system.
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