D-Fructose 1,6-Bisphosphate Trisodium Salt: A Key Metabolic Intermediate for Research and Diagnostics
Unlock critical insights into cellular energy pathways with our high-purity D-Fructose 1,6-bisphosphate trisodium salt.
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D-Fructose 1,6-Bisphosphate Trisodium Salt
As a key metabolic intermediate in glycolysis and gluconeogenesis pathways, this high-purity biochemical is instrumental for advancing scientific understanding. It serves as an essential substrate for enzymes like aldolase and fructose-1,6-bisphosphatase, making it invaluable for various scientific disciplines.
- Enhance your glycolysis research with this vital biochemical, crucial for understanding energy production in cells.
- Utilize this compound in metabolic studies to uncover complex cellular processes and regulatory mechanisms.
- Facilitate the development of accurate diagnostic reagents by employing this high-purity FBP trisodium salt.
- Investigate cardioprotective mechanisms and ischemia-reperfusion injury with this essential research tool for metabolic studies.
Key Advantages
Research Purity and Reliability
Benefit from a high-purity biochemical essential for precise enzymatic assays and reliable metabolic research outcomes.
Broad Application Spectrum
Its utility spans from fundamental glycolysis research to the development of cutting-edge diagnostic reagents.
Stable Trisodium Salt Form
Ensures consistent performance and stability for your biochemical assays and cell culture applications.
Key Applications
Glycolysis Research
Explore the intricacies of cellular energy production by utilizing D-Fructose 1,6-bisphosphate trisodium salt in your glycolysis research projects.
Metabolic Studies
Gain deeper insights into cellular metabolic pathways and their regulation through comprehensive metabolic studies with this biochemical.
Diagnostic Reagent Development
Contribute to advancements in healthcare by using this compound in the development of sensitive and accurate diagnostic reagents.
Enzyme Assays
Serve as a critical substrate for essential enzymes in biochemical assays, facilitating enzyme kinetic studies.