Items 21 to 30 of 305 total
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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N-Butyldeoxynojirimycin·HCl | 210110-90-0 | sc-201398 sc-201398A sc-201398B | 5 mg 25 mg 50 mg | $148.00 $492.00 $928.00 | 4 | |
N-Butyldeoxynojirimycin·HCl exhibits intriguing properties as an acid halide, characterized by its ability to form stable complexes with various nucleophiles. The presence of a quaternary ammonium group enhances its solubility in polar solvents, facilitating rapid reaction kinetics. Its unique stereochemistry allows for selective binding interactions, influencing reaction pathways. This compound's reactivity is further modulated by its ionic nature, promoting diverse synthetic applications. | ||||||
Kinetin riboside | 4338-47-0 | sc-221789 sc-221789A | 500 mg 5 g | $138.00 $680.00 | ||
Kinetin riboside is a cytokinin derivative that plays a pivotal role in plant growth regulation. Its unique ribosyl moiety enhances its stability and bioavailability, allowing for effective signaling in cellular processes. The compound engages in specific interactions with receptor proteins, modulating gene expression and influencing cell division. Its ability to form transient complexes with nucleic acids further underscores its role in regulating developmental pathways, showcasing distinct kinetic behavior in biological systems. | ||||||
Glycyrrhizin Acid Ammonium Salt | 53956-04-0 | sc-203059 | 25 g | $67.00 | 4 | |
Glycyrrhizin Acid Ammonium Salt is a unique compound known for its ability to interact with cellular membranes, enhancing permeability and facilitating the transport of other molecules. Its amphiphilic nature allows it to form stable complexes with proteins, influencing their conformation and activity. The salt form exhibits distinct solubility characteristics, promoting its reactivity in aqueous environments. Additionally, it can modulate ion channel activity, impacting cellular signaling pathways. | ||||||
R-848 | 144875-48-9 | sc-203231 sc-203231A sc-203231B sc-203231C | 5 mg 25 mg 100 mg 500 mg | $100.00 $300.00 $500.00 $1528.00 | 12 | |
R-848 is notable for its role as a potent immune modulator, engaging specific Toll-like receptors to activate innate immune pathways. This interaction triggers a cascade of signaling events, enhancing the production of pro-inflammatory cytokines. Its unique molecular structure allows for selective binding, influencing downstream gene expression and immune cell activation. The compound's stability and reactivity in biological systems further contribute to its distinct immunological effects, making it a key player in immune response modulation. | ||||||
Amprenavir | 161814-49-9 | sc-207287 sc-207287A | 5 mg 10 mg | $217.00 $394.00 | 2 | |
Amprenavir is a potent inhibitor of HIV protease, exhibiting unique molecular interactions that disrupt viral replication. Its structure allows for specific binding to the active site of the enzyme, leading to conformational changes that hinder substrate processing. The compound's lipophilic nature enhances its membrane permeability, facilitating rapid distribution within cellular environments. Additionally, its kinetic profile reveals a competitive inhibition mechanism, making it a critical focus in antiviral research. | ||||||
Psoralen | 66-97-7 | sc-205965 sc-205965A | 25 mg 100 mg | $101.00 $315.00 | 1 | |
Psoralen, as an acid halide, showcases remarkable reactivity due to its electrophilic nature, enabling it to undergo nucleophilic attack by various reagents. Its conjugated system contributes to a pronounced electron-withdrawing effect, which stabilizes transition states during reactions. Additionally, the compound's ability to form stable adducts with nucleophiles is influenced by steric factors, allowing for regioselective outcomes in synthetic transformations. This behavior underscores its versatility in organic synthesis. | ||||||
Cytosine β-D-arabinofuranoside hydrochloride | 69-74-9 | sc-221454 sc-221454A | 25 mg 1 g | $38.00 $160.00 | 2 | |
Cytosine β-D-arabinofuranoside hydrochloride is a nucleoside analog that exhibits unique interactions with nucleic acid polymerases, particularly influencing DNA and RNA synthesis. Its arabinofuranosyl configuration enhances binding affinity, altering enzyme kinetics and substrate specificity. This compound can also modulate the stability of nucleic acid structures, potentially affecting hybridization dynamics and influencing the overall conformation of nucleic acids in cellular environments. | ||||||
Oleanolic Acid | 508-02-1 | sc-205775 sc-205775A | 100 mg 500 mg | $84.00 $296.00 | 8 | |
Oleanolic Acid is a pentacyclic triterpenoid characterized by its ability to modulate various cellular pathways through specific interactions with membrane receptors and enzymes. Its hydrophobic nature allows it to integrate into lipid bilayers, influencing membrane fluidity and permeability. This compound also exhibits antioxidant properties, scavenging free radicals and stabilizing cellular structures. Its unique stereochemistry contributes to selective binding, impacting signaling cascades and metabolic processes. | ||||||
Vidarabine | 5536-17-4 | sc-205881 sc-205881A | 100 mg 500 mg | $52.00 $137.00 | 1 | |
Vidarabine, characterized by its unique structural features, exhibits intriguing reactivity patterns as an acid halide. Its ability to form hydrogen bonds enhances its interaction with nucleophiles, leading to the formation of stable adducts. The compound's distinct stereochemistry influences its reaction kinetics, allowing for selective pathways in acylation processes. Additionally, its solubility properties facilitate diverse reaction conditions, broadening its applicability in synthetic chemistry. | ||||||
Saquinavir, Mesylate | 149845-06-7 | sc-208383 sc-208383A | 10 mg 50 mg | $148.00 $326.00 | ||
Saquinavir, Mesylate is characterized by its unique ability to form hydrogen bonds and engage in hydrophobic interactions, which influence its solubility and stability in various environments. Its molecular structure facilitates specific conformational changes, impacting its reactivity and interaction with other compounds. The compound exhibits notable kinetic behavior, with distinct reaction pathways that can be influenced by temperature and solvent polarity, making it an intriguing subject for studying molecular dynamics. |