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Dihydrozeatin Dihydrozeatin can be used in biological study for cytokinin abundance, interconversions and formation of new trans-zeatin metabolic product with weak anticytokinin activity in maize during cytokinin metabolism. Group: Biochemicals. Alternative Names: Racemic Dihydrozeatin; (±)-Dihydrozeatin; 6- (4-Hydroxy-3-methylbutylamino) purine; (±) -6- (4-Hydroxy-3-methylbutylamino) purine; 2-Methyl-4-(9H-purin-6-ylamino)-1-butanol; 2-Methyl-4-(purin-6-ylamino)-1-butanol; 2-Methyl-4-(1H-purin-6-ylamino)-1-butanol. Grades: Highly Purified. CAS No. 14894-18-9. Pack Sizes: 1mg, 2mg, 5mg, 10mg, 25mg. Molecular Formula: C??H??N?O, Molecular Weight: 221.26. US Biological Life Sciences. USBiological 7
Worldwide
Dihydrozeatin-7-glucoside This cutting-edge compound, Dihydrozeatin-7-glucoside, stands as a remarkable biomedicine with immense therapeutic potential. Harnessing its robust antioxidative properties, this marvel of pharmacology serves as a formidable agent in combating oxidative stress and inflammation. From the realms of cancer, diabetes, to even neurodegenerative disorders, this multifaceted compound offers hope for patients suffering from these debilitating conditions. Delving into drug development and biomedical research, Dihydrozeatin-7-glucoside emerges as an indispensable component, paving the path towards improved medical interventions. Synonyms: 6-(4-hydroxy-3-methylbutylamino)-7-b-Dglucopyranosylpurine. CAS No. 91599-03-0. Molecular formula: C16H25N5O6. Mole weight: 383.40. BOC Sciences 12
Dihydrozeatin-9-glucoside Dihydrozeatin-9-glucoside is a compound product known for its potential in studying age-related diseases. Derived from zeatin, it exhibits antioxidant properties that can help study oxidative stress and prevent cellular damage. Its ability to enhance cellular metabolism makes it promising for anti-aging therapies and studying neurodegenerative disorders like Alzheimer's disease. Synonyms: 6-(4-hydroxy-3-methylbutylamino)-9-b-Dglucopyranosylpurine. CAS No. 73263-99-7. Molecular formula: C16H25N5O6. Mole weight: 383.40. BOC Sciences 11
Dihydrozeatin-O-glucoside riboside Dihydrozeatin-O-glucoside riboside is a prodigious and influential chemical entity, recognized for its inhibitory efficacy in studying a manifold of ailments encompassing diabetes, cancer and neurodegenerative afflictions. This extraordinary compound functions as a regulator of glucose, facilitating the secretion of insulin whilst augmenting cellular energy metabolism. Synonyms: 6-(4-b-D-glucopyranosyloxy-3-methylbutyl)amino-9-b-D-ribofuranosyl purine. CAS No. 62512-95-2. Molecular formula: C21H33N5O10. Mole weight: 515.51. BOC Sciences 11
Dihydrozeatin riboside Introducing Dihydrozeatin riboside is a profoundly efficacious compound functioning as a cytokinin. It exhibits remarkable anti-inflammatory attributes. Remarkably, this product has showcased auspicious outcomes in studying inflammatory states encompassing rheumatoid arthritand Crohn's disease. Its inhibitory efficacy resides in its immunomodulatory prowess, orchestrating immune responses. Synonyms: 6-(4-hydroxy-3-methylbutylamino)-9-b-D-ribofuranosylpurine. Grades: ≥ 98% (TLC). CAS No. 22663-55-4. Molecular formula: C15H23N5O5. Mole weight: 353.37. BOC Sciences 2
Dihydrozeatin riboside-5'-monophosphate sodium salt Dihydrozeatin riboside-5'-monophosphate sodium salt is a biomedical compound assuming a pivotal role in modulating distinct cellular signaling pathways. Synonyms: 6-(4-hydroxy-3-methylbutylamino)-9-b-D-ribofuranosyl purine-5'-monophosphate disodium monohydrate. Grades: ≥ 95% (TLC). CAS No. 31284-94-3. Molecular formula: C15H22N5Na2O8P·H2O. Mole weight: 495.33. BOC Sciences 3
(±)-Dihydrozeatin (±)-Dihydrozeatin can be used for biological studies of the abundance of cytokinin during cytokinin metabolism, interconversion and formation of new trans-zetin metabolites [1]. Uses: Scientific research. Group: Natural products. CAS No. 23599-75-9. Pack Sizes: 5 mg; 10 mg. Product ID: HY-119349. MedChemExpress MCE

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