Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
列表数据实时取自 GET /api/v1/paths,仅包含存在已发布版本的 Path。
共 7800 条 Path · 第 43 / 780 页
This advanced learning path equips university students with the knowledge and skills to design synthetic ecosystems, integrating ecology, synthetic biology, and bioengineering. It covers foundational ecological concepts, genetic circuit design, microbial consortia engineering, community modeling, and real-world applications, culminating in a capstone design project.
A comprehensive learning path for synthetic biology and engineering students to understand biomanufacturing, covering the biological foundations, bioprocess engineering principles, fermentation, scale-up, and downstream processing.
This advanced learning path bridges synthetic biology and medicine, guiding learners through the design, engineering, and application of living systems for therapeutic, diagnostic, and biomanufacturing purposes. It covers foundational concepts in molecular biology and genetic engineering, progresses through synthetic biology design principles and mammalian cell engineering, and culminates in clinical applications and regulatory considerations.
This advanced learning path guides synthetic biology and bioengineering students through the systematic construction of artificial cells. It covers the essential molecular biology, lipid chemistry, and cell-free expression systems required to assemble functional synthetic cells, followed by applications in biotechnology and medicine.
A comprehensive learning path covering the principles, methods, and applications of minimal genome design, from foundational genomics to advanced construction and analysis.
A comprehensive learning path covering the principles, engineering, and applications of cell-free systems. Starting from molecular biology fundamentals, progressing through cell-free extract preparation and expression mechanisms, and culminating in advanced applications and design strategies. Designed for advanced university students in synthetic biology and biochemistry.
This learning path equips synthetic biology and engineering students with the knowledge to design complex genetic circuits, covering foundational molecular biology, mathematical modeling, and advanced circuit architectures. It progresses from basic genetic parts to sophisticated systems involving logic, communication, memory, and computation, culminating in a comprehensive design project.
This learning path guides synthetic biology students through the systematic characterization of engineered biological systems, covering experimental assays, data analysis, standardization, and reproducibility. It progresses from foundational concepts in genetic circuits and measurement to advanced topics in high-throughput techniques and data-driven modeling.
This learning path equips synthetic biology and computational students with the knowledge and skills to use computational tools for designing biological systems. It covers programming fundamentals, modeling and simulation, design algorithms, and practical tool usage, progressing from foundational concepts to advanced applications.
A structured learning path for university students in synthetic biology and biochemistry to master the fundamentals of metabolic engineering, from core biochemistry to pathway design, flux analysis, and optimization. The path emphasizes practical application and systematic learning, preparing learners to engineer metabolic pathways for production.