α-D-Galactose Pentaacetate CAS 4163-59-1 Assay >98.0% (HPLC)
Ruifu Chemical is the leading manufacturer of α-D-Galactose Pentaacetate (CAS: 4163-59-1) with high quality. Ruifu Chemical has 15 years experience in carbohydrate chemistry. Our R&D center is located in Shanghai and has two factories in China. Ruifu Chemical can provide worldwide delivery, competitive price, excellent service. Purchase α-D-Galactose Pentaacetate or other carbohydrates, Please contact: alvin@ruifuchem.com
Chemical Name | α-D-Galactose Pentaacetate |
Synonyms | alpha-D-Galactose Pentaacetate; 1,2,3,4,6-Penta-O-Acetyl-α-D-Galactopyranose; 1,2,3,4,6-Penta-o-Acetyl-alpha-D-Galactopyranose; Pentaacetyl-α-D-Galactopyranose; Pentaacetyl α-D-Galactose |
Stock Status | In Stock, Commercial Production |
Source | Synthetic |
CAS Number | 4163-59-1 |
Molecular Formula | C16H22O11 |
Molecular Weight | 390.34 g/mol |
Melting Point | 90.0~94.0℃ |
Density | 1.30 |
Store Under Inert Gas | Store Under Inert Gas (Nitrogen or Argon) at 2-8℃ |
Solubility | Soluble in Methanol at Approximately 50mg/ml |
COA & MSDS | Available |
Origin of Product | Shanghai, China |
Product Categories |
Carbohydrates |
Brand | Ruifu Chemical |
Items | Specifications | Results |
Appearance | White Crystalline Powder, Odorless | Complies |
Melting Point | 90.0~94.0℃ | 92.0~94.0℃ |
Loss on Drying | <1.00% | 0.21% |
Residue on Ignition | <0.50% | 0.07% |
Heavy Metals (Pb) | <10ppm | <10ppm |
Assay / Analysis Method | >98.0% (HPLC) | 98.5% |
Infrared Spectrum | Consistent with Structure | Complies |
Conclusion | The product has been tested and complies with the given specifications |
Package: Bottle, Aluminium foil bag, 25kg/Cardboard drum with inner plastic bags, or according to requirement.
Storage Condition: Keep the container tightly closed and store in a cool, dry (2~8℃), well-ventilated warehouse away from incompatible substances. Keep away from sunshine; avoid fire and heat sources; avoid moisture.
Shipping: Deliver to worldwide by air, by FedEx / DHL Express. Provide fast and reliable delivery.
How to Purchase? Please contact Dr. Alvin Huang: sales@ruifuchem.com or alvin@ruifuchem.com
15 Years Experience? We have more than 15 years of experience in the manufacture and export of a wide range of high quality pharmaceutical intermediates or fine chemicals.
Main Markets? Sell to domestic market, North America, Europe, India, Korea, Japanese, Australia, etc.
Advantages? Superior quality, affordable price, professional services and technical support, fast delivery.
Quality Assurance? Strict quality control system. Professional equipment for analysis include NMR, LC-MS, GC, HPLC, ICP-MS, UV, IR, OR, K.F, ROI, LOD, MP, Clarity, Solubility, Microbial limit test, etc.
Samples? Most products provide free samples for quality evaluation, shipping cost should be paid by customers.
Factory Audit? Factory audit welcome. Please make an appointment in advance.
MOQ? No MOQ. Small order is acceptable.
Delivery Time? If within stock, three days delivery guaranteed.
Transportation? By Express (FedEx, DHL), by Air, by Sea.
Documents? After sales service: COA, MOA, ROS, MSDS, etc. can be provided.
Custom Synthesis? Can provide custom synthesis services to best fit your research needs.
Payment Terms? Proforma invoice will be sent first after confirmation of order, enclosed our bank information. Payment by T/T (Telex Transfer), PayPal, Western Union, etc.
Risk Codes 22 - Harmful if swallowed
Safety Description 36/37 - Wear suitable protective clothing and gloves.
HS Code 2940009090
α-D-Galactose Pentaacetate (CAS: 4163-59-1) is a carbohydrate compound that is structurally similar to alpha-D-galactose, a monosaccharide. The molecule consists of five acetate groups attached to the hydroxyl groups of the galactose molecule, making it a glycosylated compound. It has been studied extensively for its potential applications in biochemistry and physiology, due to its unique properties and structure.
α-D-Galactose Pentaacetate (CAS: 4163-59-1) has been studied extensively for its potential applications in biochemistry and physiology. It has been used as an inhibitor of a variety of enzymes, such as glycosidases, glycosyltransferases, and glycosyl hydrolases. It has also been used in the study of carbohydrate metabolism, as well as in the development of novel drugs and drug delivery systems. Additionally, it has been used to study the structure and function of cell membranes, and to study the structure and function of proteins.
α-D-Galactose Pentaacetate has been used in various scientific experiments, such as the synthesis of alpha-gal epitopes, which are potential targets for cancer immunotherapy. The compound has also been used in the development of antiviral and antibacterial agents, as well as in the study of carbohydrate-protein interactions.
α-D-Galactose Pentaacetate (CAS: 4163-59-1) has the potential to be used in various fields of research and industry, such as medicine, biotechnology, and food science. The compound can be used as a precursor for synthesizing other galactose derivatives, which can be used in the development of drugs and vaccines. Additionally, α-D-Galactose Pentaacetate can be used in the development of new biomaterials, such as hydrogels and nanoparticles, for drug delivery and tissue engineering applications. In the food industry, α-D-Galactose Pentaacetate can be used as a food additive and flavor enhancer.
α-D-Galactose Pentaacetate (CAS: 4163-59-1) has a wide range of potential future applications. It could be used to develop new drugs and drug delivery systems, as well as to study the structure and function of proteins and cell membranes. Additionally, it could be used to study carbohydrate metabolism and to develop inhibitors of glycosidases, glycosyltransferases, and glycosyl hydrolases. Finally, it could be used to study the structure and function of enzymes and to develop novel inhibitors of enzyme activity.
For research on α-D-Galactose Pentaacetate include the development of new synthetic methods for its derivatives, the study of its biological activities in vivo, and the exploration of its potential applications in various fields, such as drug delivery, tissue engineering, and food science.