This article provides a comprehensive overview of the current state of genetic circuit design for biocomputing, tailored for researchers and drug development professionals.
The synthesis of large DNA constructs is a cornerstone of synthetic biology and therapeutic development, yet achieving high efficiency and fidelity remains a significant challenge.
The predictable engineering of genetic circuits is fundamentally challenged by compositional context-dependence, where a device's function is altered by its interconnected parts and host cellular environment.
The revolutionary accuracy of AI models like AlphaFold has transformed structural biology, but their effective application in research and drug discovery hinges on rigorous validation.
This article provides a comprehensive comparative analysis of microbial host systems for the synthesis of bioactive natural products, which are crucial for drug development.
This article provides a comprehensive framework for benchmarking synthetic biology simulation tools, essential for researchers, scientists, and drug development professionals who rely on computational predictions.
This article provides a comprehensive framework for the validation of biosensors targeting metabolites, crucial biomarkers in medical diagnostics, drug development, and personalized medicine.
This article provides a systematic comparison of constitutive and inducible promoter systems, essential tools for controlling gene expression in synthetic biology and biopharmaceutical development.
This article provides a comprehensive evaluation of contemporary genome editing technologies, including CRISPR-Cas systems, TALENs, and base editors, for synthetic biology and therapeutic applications.
This article provides a comprehensive analysis of the performance of metabolic pathway optimization methods, tailored for researchers, scientists, and drug development professionals.