Process Intensification for Recombinant Marburg Virus Glycoprotein Production Using Drosophila S2 Cells
Real‐Time Auto Controlling of Viable Cell Density in Perfusion Cultivation Aided by In‐Line Dielectric Spectroscopy With Segmented Adaptive PLS Model
Impact of fed-batch process intensification on the productivity and product quality of two CHO cell lines expressing unique novel molecular format proteins
A modular and multi-functional purification strategy that enables a common framework for manufacturing scale integrated and continuous biomanufacturing
An automated high inoculation density fed-batch bioreactor, enabled through N-1 perfusion, accommodates clonal diversity and doubles titers
Reduction of medium consumption in perfusion mammalian cell cultures using a perfusion rate equivalent concentrated nutrient feed
How capacitance measurement can improve viral vector and virus-based vaccine production – BPI Special report
Real-time monitoring and control of CHO cell apoptosis by in situ multifrequency scanning dielectric spectroscopy
Case study: The characterization and implementation of dielectric spectroscopy (biocapacitance) for process control in a commercial GMP CHO manufacturing process
Development of Capacitance Tools: At-Line Method for Assessing Biomass of Mammalian Cell Culture and Fixed Cell Calibration Standard
Advanced process monitoring and feedback control to enhance cell culture process production and robustness, Biotechnology and Bioengineering
The effects of alternating tangential flow (ATF) residence time, hydrodynamic stress, and filtration flux on high-density perfusion cell culture
Isotope labeling to determine the dynamics of metabolic response in CHO cell perfusion bioreactors using MALDI-TOF-MS
On-line Measurements and Control of Viable Cell Density in Cell Culture Manufacturing Processes using Radio-frequency Impedance
Optimization and control of perfusion cultures using a viable cell probe and cell specific perfusion rates