This article provides a comprehensive overview of modern high-throughput screening (HTS) methodologies for microbial mutant libraries, a critical process in strain engineering and drug discovery.
Cell-free metabolic engineering (CFME) has emerged as a powerful platform for rapid prototyping of biosynthetic pathways, bypassing the constraints of living cells.
This comprehensive review explores cutting-edge cofactor engineering approaches for enhancing NADPH availability in microbial cell factories.
This article provides a systematic overview of the principles and practices for successful heterologous pathway expression in Escherichia coli, a cornerstone technology for biopharmaceutical and therapeutic protein production.
Genome-scale metabolic models (GEMs) provide a powerful, computational framework for predicting the metabolic capabilities of organisms, revolutionizing rational strain design for biotechnology and biomedicine.
This article provides a comprehensive review of microbial metabolic pathways for the conversion of lignocellulosic biomass into valuable biofuels and chemicals.
This article provides a comprehensive comparative analysis of materials used in microfluidic devices for biological applications, tailored for researchers, scientists, and drug development professionals.
This article provides a comprehensive cost-benefit analysis for researchers and drug development professionals evaluating microfluidic against traditional macroscale approaches in synthetic biology.
This article provides a comprehensive evaluation of the performance of microfluidic biosensors against conventional methods, targeting researchers and drug development professionals.
This article provides a strategic roadmap for early-career Principal Investigators (PIs) in biomedical and drug development fields to establish a resource-efficient and high-impact microfluidic laboratory.