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Catalog | name | Description | price |
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R-R-0250 | NH2-PEG3-CH2COOtBu Cas 189808-70-6 | NH2-PEG3-CH2COOtBu/Cas 189808-70-6/Amino-PEG3-CH2CO2-t-butyl ester from ruixi. Applicated in medical research, drug-release, nanotechnology and new materials research, cell culture. In the study of ligand, polypeptide synthesis support, a graft polymer compounds, new materials, and polyethylene glycol-modified functional coatings and other aspects of the active compound. | price> |
R-XASYS-00251 | CPI-613,cas:95809-78-2 | CPI-613(C22H28O2S2,388.6) is a lipoic acid analog that inhibits α-ketoglutarate dehydrogenase, particularly in tumor cells.At 60-240 µM, CPI-613 induces a strong mitochondrial burst of reactive oxygen species, resulting in cell death. | price> |
R-R-0251 | Aspergillus niger disaccharide | Aspergillus niger is a type of fungus that is commonly found in nature and has been extensively studied for its ability to produce a wide range of enzymes and metabolites. The ability of Aspergillus niger to metabolize disaccharides plays a crucial role in its ecological niche as it allows the fungus to efficiently utilize available carbon sources for growth and survival. Additionally, this metabolic capability has been harnessed in various industrial applications, such as the production of enzymes, organic acids, and other valuable products through fermentation processes. | price> |
R-XASYS-00252 | 4-hydroxy Hexenal-d3,cas:148706-05-2 | 4-hydroxy Hexenal-d3(C6H7D3O2,117.2) contains three deuterium atoms at the 6, 6, and 6 positions. It is intended for use as an internal standard for the quantification of 4-hydroxy hexenal by GC- or LC-mass spectrometry. | price> |
R-R-0252 | 5-Thio-D-Glucose CAS 20408-97-3 | 5-Thio-D-glucose is a thiosugar hexokinase inhibitor. It acts as a potent, competitive inhibitor of the cellular transport of D-glucose and D-glucose mediated insulin release. Thus, 5-Thio-D-glucose can be utilized to control/reduce the rate of glycolysis. It also functions as an inhibitor of spermatogenesis. | price> |
R-XASYS-00253 | A1-Phytoprostane-I,cas:1035557-09-5 | A1-Phytoprostane-I(C18H28O4,308.4) is a cyclopentenone isoprostane produced by the action of reactive oxygen species on α-linolenic acid in plants.There are two A1-phytoprostanes, both having the single ketone group on the ring structure. | price> |
R-R-0253 | Mal-PEG12-NHS CAS: 756525-92-5 | Mal-PEG12-NHS/CAS: 756525-92-5/ alpha-Maleimidopropionyl-oMega-succinimidyl-12(ethylene glycol) from ruixi. A heterobifunctional linker containing a maleimide moiety for sulfhydryl conjugation and an NHS activated ester with a spacer of PEG12. | price> |
R-XASYS-00254 | Piericidin A,cas:2738-64-9 | Piericidin A(C25H37NO4,415.6) is an irreversible inhibitor of mitochondrial complex I that strongly associates with ubiquinone binding sites in both mitochondrial and bacterial forms of the enzyme. | price> |
R-R-0254 | 2-Azido-2-deoxy-D-glucose CAS 56883-39-7 | 2-Azido-2-deoxy-D-glucose has been used to study the substrate specificity of galactokinase. 2-Azido-2-deoxy-D-glucose is the azido analogue of D-glucosamine and may be used as a metabolic chemical reporter by direct labelling of glycans. The azide group is used to link to a fluorescent marker, enabling secondary visualisation and identification of glycoproteins. The azide moiety of 2-azido-2-deoxy-D-glucose has been used to form triazoles via a 1,3-dipolar cycloaddition reaction in the synthesis of molecules with improved solubility used to inhibit p38a MAPK for anti-inflammation. | price> |
R-XASYS-00255 | Sanguinarine (chloride),cas:5578-73-4 | Sanguinarine(C20H14NO4•Cl,367.8) is a benzylisoquinoline alkaloid isolated from plants belonging to the family Papaveraceae.It exhibits antimicrobial, anti-inflammatory, and anti-oxidant properties and demonstrates antiproliferative and pro-apoptotic effects in some cancer cell lines. | price> |
R-R-0255 | 1-O-Alpha-D-glucopyranosyl-D-fructose | 1-O-Alpha-D-glucopyranosyl-D-fructose/Trehalulose/CAS 51411-23-5 is a sugar that is found in plants, animals, and fungi. It is a reaction product of glucose with the enzyme trehalase, which cleaves off two molecules of water to form one molecule of glucose and one molecule of trehalulose. Trehalulose has been shown to be an inhibitor of phosphofructokinase, an enzyme involved in glycolysis. This inhibition can be reversed by the addition of ATP or pyruvate kinase. Trehalulose also has been shown to inhibit the growth of cells by interfering with protein synthesis. Trehalulose may have biological functions including dietary uses as a replacement for sucrose or lactose due to its low calorie content and high level of sweetness. | price> |
R-XASYS-00256 | QD-394,cas:2132411-21-1 | QD-394(C19H19N5O2,349.4) is an inducer of reactive oxygen species (ROS) production.It induces lipid peroxidation, increases in intracellular accumulation of reactive oxygen species (ROS), and decreases in the reduced glutathione (GSH) to oxidized GSH (GSSG) ratio in MIA PaCa-2 pancreatic cancer cells. | price> |
R-R-0256 | D-Fructose-6-phosphate CAS : 643-13-0 | D-Fructose-6-phosphate/CAS : 643-13-0/Fructose-6-phosphate is an important intermediate in the metabolic pathways of both animals and plants. This molecule is derived from glucose and is an important starting point for the synthesis of other carbohydrates, such as glycogen and starch. The synthesis of fructose-6-phosphate takes place through the action of the enzyme, glucose-6-phosphate isomerase, which converts glucose-6-phosphate to fructose-6-phosphate. This reaction is important for the generation of energy in the body, as fructose-6-phosphate can be used in the production of ATP, the primary energy molecule for cells. | price> |
R-XASYS-00257 | 6-Formylpterin,cas:712-30-1 | 6-Formylpterin(C7H5N5O2,191.1) is an oxidized pterin produced by photolytic breakdown of folic acid.It binds to one of two active sites on XO nearly quantitatively and irreversibly and prevents the metabolism of other substrates at the second site. | price> |
R-R-0257 | Fitc-Corn Starch | FITC (fluorescein isothiocyanate) corn starch refers to corn starch labeled with fluorescent group FITC. FITC is a widely used green fluorescent dye that can bind to various molecules. The FITC labeling process typically involves a reaction between the isothiocyanate group of FITC and the nucleophilic group (such as amine or hydroxyl) on corn starch molecules. After successful conjugation, FITC labeled corn starch can be studied under a fluorescence microscope or used for other fluorescence assays. | price> |
R-XASYS-00258 | 7-Azido-4-methylcoumarin,cas:95633-27-5 | 7-Azido-4-methylcoumarin (AzMC)(C10H7N3O2,201.2) is a coumarin fluorescent probe for hydrogen sulfide (H2S).AzMC selectively fluoresces in the presence of H2S over a panel of reactive nitrogen, oxygen, and sulfur species. | price> |
R-R-0258 | Blood Group A trisaccharide, N-aminoethyl nonanamide | Blood Group A trisaccharide, N-aminoethyl nonanamide CAS 170298-33-6 from ruixi. Blood Group A trisaccharide refers to a specific sugar structure found on the surface of red blood cells in individuals with blood type A. N-aminoethyl nonanamide is a small molecule that contains an amine group (NH2) and an amide group (CONH2). | price> |
R-XASYS-00259 | LysoFP-NO2,cas:69408-75-9 | LysoFP-NO2(C18H17N3O5,355.3) is a turn-on fluorescent probe for carbon monoxide (CO) that localizes to the lysosome.In the presence of lysosomal CO, lysoFP-NO2 is transformed into lysoFP-NH2, which is highly fluorescent. | price> |
R-R-0259 | Methyl 6-amino-deoxy-galactoyranoside CAS 5155-47-5 | Methyl 6-Amino-6-deoxy-α-D-glucopyranoside is an intermediate in synthesizing Ranimustine (R120030), a nitrosourea alkylating agent approved in Japan for the treatment of chronic myelogenous leukemia and polycythemia vera. It can be used in biological study of synthesis of anti-EGFR antibody-drug conjugates. It can also be used in therapeutic use and biological study of BCMA (B-Cell Maturation Antigen) antigen binding proteins. | price> |
R-XASYS-00260 | Jacaric Acid,cas:28872-28-8 | Jacaric acid(C18H30O2,278.4) is a conjugated polyunsaturated fatty acid first isolated from seeds of Jacaranda plants.Structurally, it is an 18-carbon ω-6 triene isomer of γ-linolenic acid. Jacaric acid induces cell cycle arrest and apoptosis in a variety of cancer cell lines (GI50 = 1-5 µM). | price> |