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Fructose-6-phosphate

Updated: 2026-08-06

Overview

Fructose-6-phosphate (F6P) is a fundamental phosphorylated sugar intermediate in central carbon metabolism. In rat physiology, it occupies a pivotal position at the junction of glycolysis and the pentose phosphate pathway. Researchers frequently study rodent F6P dynamics to understand metabolic disorders, diabetes mechanisms, and energy homeostasis. As a research chemical, rat-derived or rat-compatible F6P preparations are essential for in vitro and ex vivo studies modeling mammalian biochemistry. The compound's rapid turnover in vivo necessitates careful handling in laboratory settings to prevent degradation during storage and experimentation.

Physical and Chemical Properties

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Fructose-6-phosphate typically presents as a white, hygroscopic powder that requires strict moisture control. The disodium salt form (C6H11Na2O9P) is most common in commercial preparations. In solution, F6P exists in equilibrium between furanose and open-chain forms, with pH-dependent stability. Thermal decomposition occurs before melting, precluding standard melting point determination. Aqueous solutions are moderately stable at pH 6-8 when refrigerated, but undergo rapid hydrolysis under acidic conditions. The phosphate ester group confers negative charge at physiological pH, affecting membrane permeability and enzyme binding characteristics.

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Main Applications

In rat metabolic studies, F6P serves as a critical substrate for phosphofructokinase-1 (PFK-1), the key regulatory enzyme of glycolysis. Researchers use isotopically labeled F6P (e.g., 13C or 32P) to trace metabolic fluxes in hepatocytes, myocytes, and other rat-derived cell cultures. Pharmaceutical research employs F6P in screening compounds that modulate glycolytic activity. Toxicology studies monitor F6P levels as biomarkers for metabolic disruption. Recent applications include nutrient metabolism research in rat models of obesity and metabolic syndrome, where F6P/PFK-1 dynamics are often dysregulated.

Safety and Storage

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While not highly toxic, F6P powder can cause eye and respiratory irritation. Standard laboratory PPE including nitrile gloves and safety goggles is recommended. Spills should be cleaned with damp cloths to prevent airborne dispersion of fine particles. Long-term storage requires airtight containers with desiccant at -20°C under argon or nitrogen atmosphere. For frequent-use aliquots, neutral pH buffer solutions may be stored at -80°C for up to 3 months. Avoid repeated freeze-thaw cycles, which accelerate phosphate ester hydrolysis and formation of degradation products.

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B2B Procurement Guide

Research-grade F6P is typically sold in 100mg to 10g quantities, with purity levels ranging from 95% to 99% (HPLC). Buyers should verify biological compatibility - rat studies generally require mammalian-grade preparations free of bacterial endotoxins. Leading manufacturers provide certificates of analysis specifying enantiomeric purity (D-form required for mammalian systems), residual solvent content, and microbiological testing results. Bulk purchases (100g+) for longitudinal rodent studies may qualify for 15-30% discounts, but require validation of stability under proposed storage conditions.

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