Strategic Objectives
• Quantify intracellular reaction rates with mathematical precision.
• Master isotopic labeling techniques to track molecular pathways.
• Identify metabolic bottlenecks that limit cellular productivity.
• Bridge the gap between raw genomic data and functional phenotypes.
The Core Challenge
Traditional genetics tells you what is possible, but it fails to measure what is actually happening within complex metabolic networks.
01
The Foundations of Flux
02
The Cellular Map
03
Balance and Flow
04
The Steady State
05
Isotopic Tracers
06
Matrix Algebra for Biologists
07
The Fluxome
08
Central Carbon Metabolism
09
Gas Chromatography-Mass Spectrometry
10
Nuclear Magnetic Resonance
11
Optimization Theory
12
Degree of Freedom
13
Metabolic Control Analysis
14
Pathway Thermodynamics
15
Non-Stationary Flux
16
Genome-Scale Models
17
Computational Flux Software
18
Industrial Biotechnology
19
Medical Fluxomics
20
Synthetic Biology Integration
21