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Levoglucosan (Standard)

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Catalog No. TMSM-1457Cas No. 498-07-7
Alias 1.6-Anhydro-β-D-glucose (Standard)

Levoglucosan (Standard) is the standard substance of Levoglucosan, and it is applicable for quantitative analysis, quality control, and related research in biochemical experiments. Levoglucosan (1,6-anhydro-b-D-Glucose) is an anhydrohexose that is the 1,6-anhydro-derivative of beta-D-glucopyranose. It is formed from the pyrolysis of carbohydrates, such as starch and cellulose. Levoglucosan can also be utilized in the synthesis of chiral polymers such as unhydrolysable glucose polymers. Levoglucosan is also produced via caramelization of sugar. Consumption of caramel or caramel-containing sweets can lead to a short-term 5X increase in urinary levels of levoglucosan (from 20 uM/mM creatinine to 100 uM/mM creatinine).

Levoglucosan (Standard)

Levoglucosan (Standard)

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Catalog No. TMSM-1457Alias 1.6-Anhydro-β-D-glucose (Standard)Cas No. 498-07-7
Levoglucosan (Standard) is the standard substance of Levoglucosan, and it is applicable for quantitative analysis, quality control, and related research in biochemical experiments. Levoglucosan (1,6-anhydro-b-D-Glucose) is an anhydrohexose that is the 1,6-anhydro-derivative of beta-D-glucopyranose. It is formed from the pyrolysis of carbohydrates, such as starch and cellulose. Levoglucosan can also be utilized in the synthesis of chiral polymers such as unhydrolysable glucose polymers. Levoglucosan is also produced via caramelization of sugar. Consumption of caramel or caramel-containing sweets can lead to a short-term 5X increase in urinary levels of levoglucosan (from 20 uM/mM creatinine to 100 uM/mM creatinine).
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100 mg$947-10 days7-10 days
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Product Introduction

Bioactivity
Description
Levoglucosan (Standard) is the standard substance of Levoglucosan, and it is applicable for quantitative analysis, quality control, and related research in biochemical experiments. Levoglucosan (1,6-anhydro-b-D-Glucose) is an anhydrohexose that is the 1,6-anhydro-derivative of beta-D-glucopyranose. It is formed from the pyrolysis of carbohydrates, such as starch and cellulose. Levoglucosan can also be utilized in the synthesis of chiral polymers such as unhydrolysable glucose polymers. Levoglucosan is also produced via caramelization of sugar. Consumption of caramel or caramel-containing sweets can lead to a short-term 5X increase in urinary levels of levoglucosan (from 20 uM/mM creatinine to 100 uM/mM creatinine).
Synonyms1.6-Anhydro-β-D-glucose (Standard)
Chemical Properties
Molecular Weight162.14
FormulaC6H10O5
Cas No.498-07-7
SmilesO[C@@H]1[C@H]2CO[C@H](O2)[C@H](O)[C@H]1O
Relative Density.1.2132 g/cm3 (Estimated)
Storage & Solubility Information
Storage-20°C for 20 months

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In Vivo Formulation Calculator (Clear solution)

Please enter your animal experiment information in the following box and click Calculate to obtain the stock solution preparation method and in vivo formula preparation method:
TargetMol | Animal experiments For example, if the intended dosage is 10 mg/kg for animals weighing 20 g , with a dosing volume of 100 μL per animal, TargetMol | Animal experiments and a total of 10 animals are to be administered, using a formulation of TargetMol | reagent 10% DMSO+ 40% PEG300+ 5% Tween 80+ 45% Saline/PBS/ddH2O , the resulting working solution concentration would be 2 mg/mL.
Stock Solution Preparation:

Dissolve 2 mg of the compound in 100 μL DMSOTargetMol | reagent to obtain a stock solution at a concentration of 20 mg/mL . If the required concentration exceeds the compound's known solubility, please contact us for technical support before proceeding.

Preparation of the In Vivo Formulation:

1) Add 100 μL of the DMSOTargetMol | reagent stock solution to 400 μL PEG300TargetMol | reagent and mix thoroughly until the solution becomes clear.

2) Add 50 μL Tween 80 and mix well until fully clarified.

3) Add 450 μL Saline,PBS or ddH2OTargetMol | reagent and mix thoroughly until a homogeneous solution is obtained.

This example is provided solely to demonstrate the use of the In Vivo Formulation Calculator and does not constitute a recommended formulation for any specific compound. Please select an appropriate dissolution and formulation strategy based on your experimental model and route of administration.
All co-solvents required for this protocol, includingDMSO, PEG300/PEG400, Tween 80, SBE-β-CD, and Corn oil, are available for purchase on the TargetMol website.
1 Enter information below:
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2 Enter the in vivo formulation:
% DMSO
%
% Tween 80
% Saline/PBS/ddH2O

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Please see Inhibitor Handling Instructions for more frequently ask questions. Topics include: how to prepare stock solutions, how to store products, and cautions on cell-based assays & animal experiments, etc
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