Catalog name Description price
R-R-5689 5-Amino-N,N-dimethyl-1,2,4-oxadiazole-3-methanamine Hydrochloric Acid CAS No.:1987045-85-1 5-Amino-N,N-dimethyl-1,2,4-oxadiazole-3-methanamine Hydrochloric Acid/3-[(Dimethylamino)methyl]-1,2,4-oxadiazol-5-amine hydrochloride/CAS No.:1987045-85-1 is a versatile building block that is used as an intermediate in the synthesis of fine chemicals . It is also a useful scaffold for the synthesis of biologically active compounds . price>
R-R-5697 Paclitaxel IMpurity O CAS 219783-77-4 Paclitaxel Impurity O/CAS 219783-77-4 is one of the known impurities that can be generated during the synthesis and formulation of paclitaxel, a chemotherapeutic agent used primarily in the treatment of various cancers including ovarian and breast cancer. price>
R-R-5701 3-(2-azidoethyl)-2-methyl-4,5,6,7-tetrahydro-2H-indazole CAS No.:2098021-96-4 3-(2-azidoethyl)-2-methyl-4,5,6,7-tetrahydro-2H-indazole/CAS No.:2098021-96-4, or 2-azidoethyl-2-methyl-indazole (AEMI), is an organic compound that has been researched for its potential applications in the pharmaceutical and biomedical fields. AEMI is an azido derivative of the indazole class of compounds, which are heterocyclic aromatic molecules that contain a six-membered ring of nitrogen, carbon, and hydrogen atoms. AEMI is a relatively new compound and is currently being studied for its potential applications in drug design, drug delivery, and medical imaging. We will also discuss the advantages and limitations of using AEMI in laboratory experiments, and list potential future directions. price>
R-M2g-9173 Methyl 3-Aminobicyclo[1.1.1]pentane-1-carboxylate Hydrochloride Methyl 3-aminobicyclo[1.1.1]pentane-1-carboxylate hydrochloride is a chemical compound belonging to the class of bicyclic compounds that contain an amino group and an ester functional group.This type of compound may have applications in medicinal chemistry, organic synthesis, or as a building block for more complex molecules. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>
R-M2g-9174 5-Aminolevulinic acid,Cas106-60-5 5-Aminolevulinic acid(5-ALA),Cas106-60-5 is a non protein amino acid, an intermediate in heme synthesis, and a chemical in the porphyrin synthesis pathway Complex. It is a photosensitizer, anti-tumor agent, and prodrug. It can also be used in combination with blue light illumination (in the form of hydrochloride) to treat mild to moderate thickness actinic keratosis on the face or scalp. In fluorescence-guided surgery, particularly in neurosurgery and urology, 5-ALA is employed to differentiate between healthy and cancerous tissue. When administered to a patient prior to surgery, the cancer cells preferentially take up 5-ALA and metabolize it to form fluorescent porphyrins, leading to their fluorescence under specific light, thereby aiding in the identification and removal of malignant tissue. Furthermore, the pharmaceutical industry uses 5-ALA for the synthesis of various medications. The compound has also shown potential beneficial effects in research related to neurodegenerative diseases and other medical conditions. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>
R-M2g-9179 Biotin-9-Methoxycamptothecin Biotin-9-Methoxycamptothecin can potentially be directed to cells that overexpress biotin receptors,offering a method for more targeted and efficient drug delivery. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>
R-M2g-9180 N-(5-(2-azidoacetamido)pentyl)acrylamid The presence of the azide group and the amide functionality in N-(5-(2-azidoacetamido)pentyl)acrylamid suggests potential use in organic synthesis, particularly in the preparation of polymerizable monomers or in the construction of more complex organic molecules. Azides in organic chemistry are often used as precursors to a wide variety of compounds. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>
R-M2g-9183 4,4-disulfanediyldipentanoic acid 4,4-disulfanediyldipentanoic acid, CAS: 857481-16-4, is a compound that can be used as a raw material for synthesis. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>
R-M2g-9186 1-(3-Aminopyrrolidin-1-yl)-2-hydroxyethanone 1-(3-Aminopyrrolidin-1-yl)-2-hydroxyethanone can potentially be used in the design and development of new drugs, catalysts, or other biologically active compounds. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>
R-M2-9188 Naringenin chalcone,CasNo:25515-46-2 Naringenin chalcone/CasNo:25515-46-2 also known as 2,3,4,6-tetrahydroxychalcone ,it is a chemical compound found in various plant sources, notably citrus fruits. It is a type of chalcone, which is a member of the flavonoid family. Naringenin chalcone is often studied for its potential health benefits, including its antioxidant and anti-inflammatory properties. Additionally, it has been investigated for its potential role in various biological activities, including its effects on enzymes and its potential as a chemopreventive agent due to its ability to inhibit certain pathways involved in cancer progression. This compound is the precursor to naringenin, a flavanone which is the aglycone of the flavonoid glycosides in grapefruit and related citrus species. Naringenin chalcone is converted to naringenin by the enzyme chalcone isomerase, as a part of the flavonoid biosynthesis pathway in plants. Research on naringenin chalcone continues to explore its potential pharmacological and health-promoting effects, making it a subject of interest in the fields of nutrition, pharmacology, and medicinal chemistry. We can mass produce (kg level), process scaling up, pilot supply, raw material supply, and intermediate production. Our production technology is mature and more cost-effective. Feel free to inquire at any time. price>