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Process Intensification in High-Density Biomanufacturing

As cell densities reach $10^{12}$ cells/mL, traditional batch fermentation faces severe bottlenecks. Process Intensification (PI) strategies are crucial for maintaining high yields by enhancing mass transfer, controlling metabolic waste, and optimizing reactor design.

Optimizing Bioreactor Performance for Perfusion Culture

This article details the critical operational considerations for optimizing perfusion culture, focusing on media strategy, fluid dynamics, and advanced gas exchange techniques to maximize cell viability and productivity.

Design and Validation of Continuous Chromatography Systems

Continuous chromatography systems, such as Simulated Moving Bed (SMB) chromatography, represent a paradigm shift from traditional batch methods. By simulating counter-current flow, these systems maximize resin utilization and throughput, offering a highly efficient and resource-conservative… 

Advanced Control Strategies for Bioprocess Optimization

Traditional open-loop control systems fail to manage the dynamic variability inherent in bioprocesses. Implementing closed-loop, model-predictive control (MPC) systems is essential for maintaining optimal operational windows, maximizing yields, and ensuring robust process stability.

CRISPR-Cas System Engineering for Industrial Microbial Chassis Optimization

CRISPR-Cas systems are revolutionizing industrial biotechnology by providing unprecedented precision for optimizing microbial hosts (chassis). By enabling targeted, high-throughput genome modification, these systems overcome metabolic bottlenecks and strain instability, accelerating the development of robust bioproduction…