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β-Casomorphin, bovine
β-Casomorphin, bovine (β-Casomorphin-7 (bovine) ) is a opioid peptide with an IC50 of 14 μM in an Opioid receptors binding assay[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: β-Casomorphin-7 (bovine); Bovine β-casomorphin-7. CAS No. 72122-62-4. Pack Sizes: 5 mg; 10 mg; 25 mg. Product ID: HY-P0179.
β-catenin-IN-2
β-catenin-IN-2 (Compound H1B1) is a potent β-catenin inhibitor. β-catenin-IN-2 can be used for the study of colorectal cancer[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1458664-10-2. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-136464.
β-catenin-IN-3
β-catenin-IN-3 (Compound C2) is a selective β-catenin inhibitor. β-catenin-IN-3 binds to allosteric site on the surface of β-catenin with K D calculated at 54.96 nM. β-catenin-IN-3 selectively inhibits β-catenin via targeting a cryptic allosteric modulation site, lowers its cellular load. β-catenin-IN-3 significantly reduces viability of β-catenin driven cancer cells, and triggers β-catenin degradation via proteasome system in β-catenin-overexpressing cancer cells[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1005288-15-2. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-147007.
β-CGRP, human
β-CGRP, human (Human β-CGRP) is one of calcitonin peptides, acts via the complex of calcitonin-receptor-like receptor (CRLR) and receptor-activity-modifying protein (RAMP), with IC50s of 1 nM and 300 nM for CRLR/RAMP1 and CRLR/RAMP2 in cells[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Human β-CGRP; CGRP-II (Human). CAS No. 101462-82-2. Pack Sizes: 500 μg; 1 mg; 5 mg. Product ID: HY-P1548.
β-Cryptoxanthin
β-Cryptoxanthin ((3R)-β-Cryptoxanthin) is an orally active carotenoid found in fruits and vegetables such as angerines, red peppers, and pumpkin. β-Cryptoxanthin inhibits prevents osteoclast formation and inhibits bone resorption. β-Cryptoxanthin maintains retinol status in vivo. β-cryptoxanthin shows anti-inflammation and anticancer activity. β-Cryptoxanthin can be used for the researches of osteoporosis and bladder carcer[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: (3R)-β-Cryptoxanthin. CAS No. 472-70-8. Pack Sizes: 2 mg. Product ID: HY-108059.
β-cyano-L-Alanine
β-cyano-L-Alanine (Beta-cyano-l-alanine), a nitrile of widespread occurrence in higher plants, is enzymatically produced by cyanoalanine synthase from cyanide and cysteine as substrates[1]. β-cyano-L-Alanine abolishes the protective effect of ethanol on cerebral ischemia/reperfusion (I/R) injury[2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Beta-cyano-l-alanine. CAS No. 6232-19-5. Pack Sizes: 10 mM * 1 mL in Water; 50 mg; 100 mg. Product ID: HY-125773.
β-Cyclodextrin
β-Cyclodextrin is a cyclic polysaccharide composed of seven units of glucose (α-D-glucopyranose) linked by α-(1,4) type bonds. β-Cyclodextrin has often been used to enhance the solubility of agents. β-Cyclodextrin has anti-influenza virus H1N1 activities. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Betadex. CAS No. 7585-39-9. Pack Sizes: 10 g; 25 g; 50 g; 100 g; 500 g; 1 k g. Product ID: HY-107201.
β-D-Galactosyl-(1?3)-N-acetyl-D-galactosamine
β-D-Galactosyl-(1→3)-N-acetyl-D-galactosamine is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 3554-90-3. Pack Sizes: 1 mg; 5 mg. Product ID: HY-W551412.
β-D-Glucopyranosyl abscisate
β-D-Glucopyranosyl abscisate (ABA-GE) is a hydrolyzable abscisic acid (ABA) conjugate that accumulates in the vacuole and presumably also in the endoplasmic reticulum. The deconjugation of β-D-Glucopyranosyl abscisate allows the rapid formation of free ABA in response to abiotic stress conditions such as dehydration and salt stress. β-D-Glucopyranosyl abscisate contributes to the maintenance of ABA homeostasis[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: ABA-GE; (S)-cis,trans-Abscisic acid glucosyl ester. CAS No. 21414-42-6. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-111974.
β-D-Glucose
β-D-Glucose, also known as glucose, is a monosaccharide, the most important carbohydrate in biological systems, the main energy source of cells, and plays a key role in various metabolic processes. β-D-Glucose has unique chemical properties that make it an abundant component in plant and animal tissues and is readily metabolized by organisms to produce cellular energy. It is commonly used to improve hypoglycemia and dehydration, and as a sweetener and preservative in food and beverage production. Uses: Scientific research. Category: Signaling pathways. CAS No. 492-61-5. Pack Sizes: 10 mM * 1 mL in Water; 5 g; 10 g; 25 g. Product ID: HY-121965.
β-D-glucuronide-pNP-carbonate
β-D-glucuronide-pNP-carbonate is a cleavable ADC linker used in the synthesis of antibody-drug conjugates (ADCs)[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 894095-98-8. Pack Sizes: 50 mg; 100 mg; 250 mg; 1 g. Product ID: HY-136329.
β-Elemene
β-Elemene ((-)-β-Elemene; Levo-β-elemene) is isolated from natural plant Curcuma aromatica with an antitumor activity. β-Elemene can induce cell apoptosis. Uses: Scientific research. Category: Signaling pathways. Alternative Names: (-)-β-Elemene; Levo-β-elemene. CAS No. 515-13-9. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-107324.
β-Elemonic acid
β-Elemonic acid is a triterpene isolated from Boswellia carterii. β-Elemonic acid induces cell apoptosis, reactive oxygen species (ROS) and COX-2 expression and inhibits prolyl endopeptidase. β-Elemonic acid exhibits anticancer and anti-inflammatory effects[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 28282-25-9. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg. Product ID: HY-N2454.
β-Endorphin, human
β-Endorphin, human, a prominent endogenous peptide, existing in the hypophysis cerebri and hypothalamus, is an agonist of opioid receptor, with preferred affinity for μ-opioid receptor and δ-opioid receptor; β-Endorphin, human exhibits antinociception activity. Uses: Scientific research. Category: Signaling pathways. CAS No. 61214-51-5. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-P1502.
β-Estradiol 17-hemisuccinate
β-Estradiol 17-hemisuccinate is a synthetic derivative of estradiol (HY-B0141)[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 7698-93-3. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-148586.
β-Eudesmol
β-Eudesmol has anticancer and anti-inflammatory activities. Beta-Eudesmol can induce apoptosis. β-Eudesmol is a neostigmine antagonist. β-Eudesmol can antagonize neostigmine-induced neuromuscular failure. β-Eudesmoll can be used in the study of sepsis diseases. β-Eudesmol is a sesquiterpene-like compound that can be extracted from the rhizome of Atractylodes lancea[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. CAS No. 473-15-4. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N6018.
β-Funaltrexamine hydrochloride
β-Funaltrexamine (β-FNA) hydrochloride is a blood-brain barrier-permeable, selective and irreversible μ-opioid receptor antagonist with immunomodulatory, anti-inflammatory and neuroprotective activities. β-Funaltrexamine hydrochloride inhibits p38 MAPK and TLR4 signaling by blocking μ-opioid receptors, and reduces the transcriptional activities of NF-κB, AP-1, CREB and Stat. Furthermore, β-Funaltrexamine hydrochloride inhibits iNOS activation and pro-inflammatory microglial polarization, converting microglia to an anti-inflammatory phenotype, thereby downregulating neuroinflammation and ameliorating neuronal degeneration. β-Funaltrexamine hydrochloride is widely applicable to research related to stroke, cerebral ischemia/reperfusion injury and neurodegenerative diseases[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: β-FNA hydrochloride. CAS No. 72786-10-8. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-101318.
beta-Galactose dehydrogenase
Beta-galactose dehydrogenase is a selective catalyst for β-galactose. Under pH 8.6 conditions, beta-galactose dehydrogenase catalyzes the oxidation of β-galactose, produced by the hydrolysis of lactose by β-galactosidase, with nicotinamide adenine dinucleotide (NAD) to produce reduced nicotinamide adenine dinucleotide (NADH). Beta-galactose dehydrogenase specifically mediates this oxidation reaction for the quantitative detection of the substrate, used in the analysis of lactose concentration in samples such as breast milk[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9028-54-0. Pack Sizes: 10 U; 50 U; 100 U. Product ID: HY-P3185.
β-Glucogallin
β-Glucogallin is an orally active and selective aldose reductase (AKR1B1) inhibitor with an IC50 value of 58 μM when using Glyceraldehyde (HY-128748) as AKR1B1 substrate. β-Glucogallin reduces ROS, PDGF, RAGE, and NF-κB. β-Glucogallin increases SOD. β-Glucogallin has antioxidant and hepatoprotective effects. β-Glucogallin can be used in retinal research[1][2][3][4][5]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Glucogallin; 1-O-Galloyl-β-D-glucose. CAS No. 13405-60-2. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-133708.
β-Glucosidase, almond
β-Glucosidase, almond is the rate-limiting enzyme in cellulose degradation. β-Glucosidase is a major group among glycoside hydrolases. β-Glucosidase is involved in the degradation of cellulose in soils and has potential for monitoring soil quality[1][2][3]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9001-22-3. Pack Sizes: 50 mg; 100 mg. Product ID: HY-P2775.
Beta-glucuronidase (Escherichia coli)
Beta-glucuronidase is a glycosyl hydrolase that hydrolyzes β-glucuronic acid and sulfate esters in urine and other biological fluids, and then releases β-glucuronate[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9001-45-0. Pack Sizes: 25 KU; 50 KU; 100 KU. Product ID: HY-P2803.
Beta-glucuronidase (helix pomatia)
Beta-glucuronidase (helix pomatia) is a glycosyl hydrolase that hydrolyzes β-glucuronic acid and sulfate esters in urine and other biological fluids, and then releases β-glucuronate[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9001-45-0. Pack Sizes: 50 KU; 100 KU; 500 KU. Product ID: HY-P2803B.
β-Glucuronidase-IN-1
β-Glucuronidase-IN-1 is a potent, selective, uncompetitive, and orally active E. coli bacterial β-glucuronidase inhibitor, exhibiting an IC50 and a Ki of 283 nM and 164 nM, respectively[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 484006-66-8. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-103081.
β-Glycerophosphate disodium salt hydrate
β-Glycerophosphate disodium salt pentahydrate is a bioactive endogenous metabolite and a phosphatase inhibitor. β-Glycerophosphate disodium salt pentahydrate plays an important role in inducing and maintaining osteoblast differentiation, mineral metabolism and signal transduction, and can be used as a drug carrier to form heat-sensitive hydrogels. β-Glycerophosphate disodium salt hydrate accelerates the calcification of vascular smooth muscle cells[1][2][3]. Uses: Scientific research. Category: Signaling pathways. CAS No. 154804-51-0. Pack Sizes: 500 mg; 1 g; 5 g; 10 g; 25 g; 50 g. Product ID: HY-126304.
β-Glycerophosphate disodium salt pentahydrate
β-Glycerophosphate disodium salt pentahydrate is a bioactive endogenous metabolite and a phosphatase inhibitor. β-Glycerophosphate disodium salt pentahydrate plays an important role in inducing and maintaining osteoblast differentiation, mineral metabolism and signal transduction, and can be used as a drug carrier to form heat-sensitive hydrogels. β-Glycerophosphate disodium salt hydrate accelerates the calcification of vascular smooth muscle cells[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. CAS No. 13408-09-8. Pack Sizes: 5 g; 10 g; 25 g. Product ID: HY-D0886.
β-Hydroxyisovalerylshikonin
Beta-hydroxyisovalerylshikonin is a natural product isolated from Lithospermum erythrorhizon, acts as a potent inhibitor of protein tyrosine kinases (PTK), with IC50s of 0.7μM and 1μM for EGFR and v-Src receptor, respectively. Beta-hydroxyisovalerylshikonin is effective against a wide variety of tumor cell lines, and most efficiently induces cell-death in NCI-H522 and DMS114 cells[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 7415-78-3. Pack Sizes: 1 mg; 5 mg. Product ID: HY-N4201.
Betaine
Betaine (Trimethylglycine) is a natural compound found in many foods and also an active methyl-donor which can maintain normal DNA methylation patterns[1,2]. Betaine is found ubiquitously in plants, animals, microorganisms, and rich dietary sources including seafood, spinach, and wheat bran. Betaine also acts as an osmolyte, to maintain the avians cellular water and ion balance to improve the avians capacity against heat stress via preventing dehydration and osmotic inactivation. It helps in maintaining the protective osmolytic activity, especially in heat-stressed birds. Betaine may promote various intestinal microbes against osmotic variations and thus improve microbial fermentation activity[3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Trimethylglycine; carboxy-N,N,N-trimethylmethanaminium. CAS No. 107-43-7. Pack Sizes: 10 mM * 1 mL in Water; 5 g; 10 g; 25 g; 50 g; 100 g. Product ID: HY-B0710.
Betaine-d3 chloride
Betaine-d3 (chloride) is the deuterium labeled Betaine chloride[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1219349-47-9. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-N0739S.
β-Lactoglobulin, a major whey protein, is a small globular protein from the lipocalin family. β-Lactoglobulin is an important source of the essential and branched-chain amino acids (leucine, isoleucine, and valine). β-Lactoglobulin shows antioxidant properties, because it contains two disulfide bonds and one free thiol group. β-Lactoglobulin is a ligand transport agent. β-Lactoglobulin is one of the major allergens in milk and can be utilized in the research for developing safe hypoallergenic dairy products[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9045-23-2. Pack Sizes: 100 mg; 500 mg; 1 g; 5 g. Product ID: HY-NP008.
β-Lactose
β-Lactose is a disaccharide commonly found in milk and dairy products. It consists of two monosaccharides, glucose and galactose, linked by β-glycosidic bonds. β-Lactose has various applications in the food industry, especially as a sweetener and bulking agent. Furthermore, it can be used as a substrate for enzymes involved in lactose metabolism and as a model compound for studying carbohydrate-protein interactions. Uses: Scientific research. Category: Signaling pathways. CAS No. 5965-66-2. Pack Sizes: 10 mM * 1 mL in DMSO; 25 g; 50 g; 100 g. Product ID: HY-W150340.
β-Lapachone
β-Lapachone (ARQ-501;NSC-26326) is a naturally occurring O-naphthoquinone, acts as a topoisomerase I inhibitor, and induces apoptosis by inhibiting cell cycle progression. Uses: Scientific research. Category: Signaling pathways. Alternative Names: ARQ-501; NSC-26326. CAS No. 4707-32-8. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 50 mg; 100 mg. Product ID: HY-13555.
beta-Mangostin
beta-Mangostin (β-Mangostin) is a xanthone compound present in Cratoxylum arborescens, with antibacterial and antimalarial activities. beta-Mangostin exhibits antimycobacterial activity against Mycobacterium tuberculosis with an MIC of 6.25 μg/mL. beta-Mangostin possesses in vitro antimalarial activity against Plasmodium falciparum, with an IC50 of 3.00 μg/mL. beta-Mangostin has potent anticancer activity against various cancers (such as hepatocellular carcinoma, leukaemic)[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: β-Mangostin. CAS No. 20931-37-7. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg. Product ID: HY-N0941.
β-Melanocyte Stimulating Hormone (MSH), human
β-Melanocyte Stimulating Hormone (MSH), human, a 22-residue peptide, acts as an endogenous melanocortin-4 receptor (MC4-R) agonist[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Beta-MSH (1-22) (human). CAS No. 17908-57-5. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P1504.
Betamethasone
Betamethasone is a synthetic glucocorticoid with anti-inflammatory and immunosuppressive activities. Betamethasone accelerates fetal lung maturation and induces gene expression and apoptosis[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. CAS No. 378-44-9. Pack Sizes: 10 mM * 1 mL in DMSO; 100 mg; 500 mg. Product ID: HY-13570.
Betamethasone disodium phosphate
Betamethasone disodium phosphate (Betamethasone 21-phosphate disodium salt) is a kind of corticosteroid, which is commonly used in the intralesional research of keloids[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Betamethasone 21-phosphate disodium salt; Vista-Methasone. CAS No. 151-73-5. Pack Sizes: 10 mM * 1 mL in DMSO; 100 mg; 250 mg; 500 mg; 1 g. Product ID: HY-13570C.
β-Muricholic acid
β-Muricholic acid is a potent and orally active biliary cholesterol-desaturating agent. β-Muricholic acid prevents cholesterol gallstones. β-Muricholic acid inhibits lipid accumulation. β-Muricholic acid has the potential for the research of nonalcoholic fatty liver disease (NAFLD)[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 2393-59-1. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg. Product ID: HY-133707.
β-N-Acetylhexosaminidase, Streptococcus pneumoniae is a cell surface virulence factor of Streptococcus pneumoniae, which contains two synergistically acting GH20 domains (with higher activity in GH20-2). β-N-Acetylhexosaminidase, Streptococcus pneumoniae specifically recognizes and hydrolyzes substrates with β(1,2) glycosidic bonds via Trp-443 and Tyr-482 residues. β-N-Acetylhexosaminidase, Streptococcus pneumoniae catalyzes the hydrolysis of β(1,2)-linked N-acetylglucosamine groups and related disaccharides, and promotes persistent colonization of bacteria in the airway by modifying host defense molecules and releasing monosaccharides for bacterial growth. β-N-Acetylhexosaminidase, Streptococcus pneumoniae can be used in studies related to Streptococcus pneumoniae infection, acute pneumonia, otitis media and meningitis[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9012-33-3. Pack Sizes: 5 U; 10 U. Product ID: HY-P2866.
β-Naphthoflavone
β-Naphthoflavone is an exogenous aryl hydrocarbon receptor (AHR) ligand. β-Naphthoflavone can activate AHR to participate in various biological processes, including cell growth, differentiation, apoptosis, and metabolism. β-Naphthoflavone has antioxidant activity and can exert its antioxidant function by regulating the activity of antioxidant enzymes. β-Naphthoflavone is also a non-carcinogenic CYP1A inducer and can be used to study aristolochic acid (AAI) induced renal injury[1][2][3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: 5,6-Benzoflavone; beta-NF. CAS No. 6051-87-2. Pack Sizes: 10 mM * 1 mL in DMSO; 100 mg. Product ID: HY-114740.
β-Neo-Endorphin
β-Neo-Endorphin is an endogenous opioid peptide. β-Neo-Endorphin is a hypothalamic big Leu-enkephalin of porcine origin. β-Neo-Endorphin shows activation of the Erk1/2, MMP-2 and MMP-9[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 77739-21-0. Pack Sizes: 5 mg; 10 mg. Product ID: HY-P3513.
β-Nicotinamide mononucleotide, reduced form disodium
β-Nicotinamide mononucleotide, reduced form (NMNH) disodium is an orally active reduced version of β-Nicotinamide mononucleotide (HY-F0004). β-Nicotinamide mononucleotide, reduced form disodium can significantly increase the levels of NAD+ and NADH, inhibit glycolysis, the tricarboxylic acid cycle, and cell growth, with its effects being dependent on nicotinamide mononucleotide adenylyltransferase (NMNAT)[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: NMNH disodium. CAS No. 108347-85-9. Pack Sizes: 10 mM * 1 mL in Water; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-W615108B.
Betanin
Betanin has potent antioxidant and anti-inflammatory effect, that could inhibit peroxynitrite (ONOO-), with an IC50 of 19.2 μM. Betanin is a red glycoside obtained from beets that can be used as colorant. Uses: Scientific research. Category: Natural products. CAS No. 7659-95-2. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg; 1 g. Product ID: HY-112578.
β-N-methylamino-L-alanine hydrochloride
β-N-methylamino-L-alanine hydrochloride (BMAA hydrochloride) is a neurotoxin produced by cyanobacteria. β-N-methylamino-L-alanine hydrochloride activates mGluR3 and inhibits PKC. β-N-methylamino-L-alanine hydrochloride can be used in the research of neurodegenerative diseases and immune diseases[1][2][3][4][5][6][7][8][9][10][11][12][13]. Uses: Scientific research. Category: Induced disease models products. Alternative Names: BMAA hydrochloride. CAS No. 16012-55-8. Pack Sizes: 10 mM * 1 mL in Water; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-W015546.
β-Ocimene
Beta-Ocimene is a naturally occurring organic compound that belongs to the terpene family. It exists as a mixture of three isomers: cis β-Ocimene, trans β-Ocimene and myrcene-like β-Ocimene. It has a pleasant, sweet herbaceous scent and is found in many plants, including mint, basil, parsley, and kumquat. β-Ocimene is widely used in the flavor and fragrance industry due to its characteristic aroma and taste. It also has potential applications in agriculture as natural insect repellants and pheromones that attract beneficial insects. β-Ocimene has potential anti-inflammatory and anticancer activities. Uses: Scientific research. Category: Signaling pathways. CAS No. 13877-91-3. Pack Sizes: 10 mM * 1 mL in DMSO; 25 g; 50 g; 100 g; 500 g. Product ID: HY-117215.
β-Phellandrene
β-phellandrene is an orally active monocyclic monoterpenes. β-Phellandrene is obtained from Carum petroselinum. β-phellandrene has strong ability to kill pest. β-phellandrene can be used as oil additives, natural pesticides and synthetic materials[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 555-10-2. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N8573.
β-Phellandrene (Standard)
β-phellandrene is an orally active monocyclic monoterpenes. β-Phellandrene is obtained from Carum petroselinum. β-phellandrene has strong ability to kill pest. β-phellandrene can be used as oil additives, natural pesticides and synthetic materials[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 555-10-2. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N8573R.
β-Rubromycin
β-Rubromycin, a quinone antibacterial agent, is a selective HIV-1 reverse transcriptase inhibitor with a Ki of 0.27 μM. β-Rubromycin is a potent telomerase inhibitor with an IC50 of 3 μM. β-Rubromycin inhibits the proliferation of both K-562 and HeLa cells with IC50 values of 19.5 μM and 22.7 μM, respectively[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 27267-70-5. Pack Sizes: 1 mg. Product ID: HY-122482.
β-Secretase Inhibitor IV
β-Secretase Inhibitor IV is a potent, cell-active BACE-1 inhibitor with IC50s of 15.6 and 16.3nM under BACE-1 concentrations of 2 nM and 100 pM, respectively. Uses: Scientific research. Category: Signaling pathways. CAS No. 797035-11-1. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-10133.
Beta-Sitosterol (purity>80%)
Beta-Sitosterol (purity≥80%) is orally active. Beta-Sitosterol exhibits multiple activities, including anti-inflammatory, anticancer, antioxidant, antimicrobial, antidiabetic, antioxidant enzyme, and analgesic. Beta-Sitosterol inhibits inflammation and impaired adipogenesis in bovine mammary epithelial cells by reducing levels of ROS, TNF-α, IL-1β, and NF-κB p65 and restoring the activity of the HIF-1α/mTOR signaling pathway. Beta-Sitosterol induces apoptosis in cancer cells through ROS-mediated mitochondrial dysregulation and p53 activation. Beta-Sitosterol exerts its anticancer effects in cancer cells by activating caspase-3, caspase-8, and caspase-9, mediating PARP inactivation, MMP loss, altered Bcl-2-Bax ratio, and cytochrome c release. Beta-Sitosterol modulates macrophage polarization and reduces rheumatoid inflammation in mice. Beta-Sitosterol inhibits tumor growth in multiple mouse cancer models. Beta-Sitosterol can be used in the research of arthritis, lung cancer, breast cancer and other cancers, diabetes, etc[1][2][3][4][5][6][7][8][9][10][11][12][13]. Uses: Scientific research. Category: Signaling pathways. CAS No. 83-46-5. Pack Sizes: 100 mg; 1 g; 5 g. Product ID: HY-N0171.
Beta-Sitosterol (purity>98%)
Beta-Sitosterol (purity>98%) is orally active. Beta-Sitosterol exhibits multiple activities, including anti-inflammatory, anticancer, antioxidant, antimicrobial, antidiabetic, antioxidant enzyme, and analgesic. Beta-Sitosterol inhibits inflammation and impaired adipogenesis in bovine mammary epithelial cells by reducing levels of ROS, TNF-α, IL-1β, and NF-κB p65 and restoring the activity of the HIF-1α/mTOR signaling pathway. Beta-Sitosterol induces apoptosis in cancer cells through ROS-mediated mitochondrial dysregulation and p53 activation. Beta-Sitosterol exerts its anticancer effects in cancer cells by activating caspase-3, caspase-8, and caspase-9, mediating PARP inactivation, MMP loss, altered Bcl-2-Bax ratio, and cytochrome c release. Beta-Sitosterol modulates macrophage polarization and reduces rheumatoid inflammation in mice. Beta-Sitosterol inhibits tumor growth in multiple mouse cancer models. Beta-Sitosterol can be used in the research of arthritis, lung cancer, breast cancer and other cancers, diabetes, etc[1][2][3][4][5][6][7][8][9][10]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: β-Sitosterol (purity>98%); 22,23-Dihydrostigmasterol (purity>98%). CAS No. 83-46-5. Pack Sizes: 10 mM * 1 mL in Ethanol; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N0171A.
Beta-Sitosterol (Standard)
Beta-Sitosterol (Standard) is the analytical standard of Beta-Sitosterol. This product is intended for research and analytical applications. Beta-Sitosterol (purity≥80%) is orally active. Beta-Sitosterol exhibits multiple activities, including anti-inflammatory, anticancer, antioxidant, antimicrobial, antidiabetic, antioxidant enzyme, and analgesic. Beta-Sitosterol inhibits inflammation and impaired adipogenesis in bovine mammary epithelial cells by reducing levels of ROS, TNF-α, IL-1β, and NF-κB p65 and restoring the activity of the HIF-1α/mTOR signaling pathway. Beta-Sitosterol induces apoptosis in cancer cells through ROS-mediated mitochondrial dysregulation and p53 activation. Beta-Sitosterol exerts its anticancer effects in cancer cells by activating caspase-3, caspase-8, and caspase-9, mediating PARP inactivation, MMP loss, altered Bcl-2-Bax ratio, and cytochrome c release. Beta-Sitosterol modulates macrophage polarization and reduces rheumatoid inflammation in mice. Beta-Sitosterol inhibits tumor growth in multiple mouse cancer models. Beta-Sitosterol can be used in the research of arthritis, lung cancer, breast cancer and other cancers, diabetes, etc. Uses: Scientific research. Category: Signaling pathways. Alternative Names: β-Sitosterol (Standard); 22,23-Dihydrostigmasterol (Standard)). CAS No. 83-46-5. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N0171R
β-Thujaplicinol
β-Thujaplicinol (3-Hydroxy-5-isopropyltropolone) is an inhibitor of hepatitis B virus (HBV) ribonuclease H. β-Thujaplicinol inhibits RNAseHs of HBV genotypes D and H with IC50 values of 5.9 and 2.3 μM, respectively[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: 3-Hydroxy-5-isopropyltropolone. CAS No. 29346-20-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-W060316.
β-Tocopherol
β-Tocopherol is an analogue of vitamin E, exhibits antioxidant properties. β-Tocopherol can inhibit tyrosinase activity and melanin synthesis. β-Tocopherol also can prevent the inhibition of cell growth and of PKC activity caused by d-alpha-tocopherol[1][2][3]. Uses: Scientific research. Category: Signaling pathways. CAS No. 16698-35-4. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-133680.
β-Tocotrienol
β-Tocotrienol is an isomer of vitamin E. β-Tocotrienol is a less potent antioxidant than α-tocotrienol. β-Tocotrienol can be found in the tocotrienol-rich fraction (TRF) of palm oil, which possesses anti-carcinogenic effects in vitro on human colon carcinoma and prostate cancer cells. β-Tocotrienol inhibits the growth of A549 (GI50 = 1.38 μM) and U87MG (GI50 = 2.53 μM) cells. β-Tocotrienol also induces apoptosis in cancer cells. β-Tocotrienol can inhibit PD-L1 expression and mitigates PD-L1-mediated immune suppression in vitro and in vivo[1][2][3]. Uses: Scientific research. Category: Signaling pathways. CAS No. 490-23-3. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-108693.
Betaxolol
Betaxolol is a selective beta1 adrenergic receptor blocker that can be used for the research of hypertension and glaucoma. Uses: Scientific research. Category: Signaling pathways. CAS No. 63659-18-7. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-B0381.
Beta-Zearalanol
Beta-Zearalenol is an mycotoxin produced by Fusarium spp, which causes apoptosis and oxidative stress in mammalian reproductive cells[1]. Beta-Zearalenol is the derivative of zearalenone (ZEA) which can conjugate with glucuronic acid[2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 42422-68-4. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-N6740.
β-Zearalenol
β-Zearalenol is a non-steroidal estrogenic mycotoxin synthesized by Fusarium species. β-Zearalenol potentially influences transcription and effects gene expression on translational level[1]. Uses: Scientific research. Category: Natural products. CAS No. 71030-11-0. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-N6741.
BET bromodomain inhibitor 1
BET bromodomain inhibitor 1 is an orally active, selective bromodomain and extra-terminal (BET) bromodomain inhibitor with an IC50 of 2.6 nM for BRD4. BET bromodomain inhibitor 1 binds to BRD2(2), BRD3(2), BRD4(1), BRD4(2), and BRDT(2) with high affinities (Kd values of 1.3 nM, 1.0 nM, 3.0 nM, 1.6 nM, 2.1 nM, respectively). bromodomain inhibitor 1 has anti-cancer activity[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 2411226-02-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-131061.
Bethanechol chloride
Bethanechol chloride (Carbamyl-β-methylcholine chloride), a parasympathomimetic agent, is a mAChR agonist that exerts its effects via directly stimulating the mAChR (M1, M2, M3, M4, and M5) of the parasympathetic nervous system[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Carbamyl-β-methylcholine chloride. CAS No. 590-63-6. Pack Sizes: 10 mM * 1 mL in DMSO; 200 mg; 5 g. Product ID: HY-B0406A.
Betiatide
Betiatide, as a chelating agent for Technetium-99m (99mTc), is used to prepare 99mTc-MAG3 (mercaptoacetyltriglycine), a radiopharmaceutical for renal function imaging. Betiatide is used for the diagnosis of congenital and acquired abnormalities, renal failure, urinary tract obstructions, and calculi[1]. Betiatide can be used for the synthesis/research of Radionuclide-Drug Conjugates (RDCs). Uses: Scientific research. Category: Signaling pathways. CAS No. 103725-47-9. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-P10369.
Betifisolimab
Betifisolimab (MSB-2311) is a humanized monoclonal antibody directed against the immunosuppressive ligand PD-L1. Betifisolimab has the potential for advanced solid tumors and hematological malignancies research[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: MSB-2311. CAS No. 2460539-60-8. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg; 50 mg. Product ID: HY-P99475.
BET-IN-14
BET-IN-14 is an orally active pan BET inhibitor (IC50: 5.35 nM). BET-IN-14 has anti-cancer activity[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 2243669-93-2. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-153226.
BET-IN-19
BET-IN-19 (Compound 146) is a BET inhibitor. BET-IN-19 inhibits hlL-6 mRNA transcription (IC50 ≤0.3 uM), and c-myc activity in human AML MV4-11 cell (IC50 ≤0.3 uM)?BET-IN-19 inhibits tetra-acetylated histone H4 binding to BRD4 bromodomain 1 (IC50 ≤0.3 uM)[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1643947-30-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-125236.
BET-IN-31
BET-IN-31 is a potent BET inhibitor and a ligand for target BRD4 protein for PROTACT GNE-987 (HY-129937A)[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 2313230-51-0. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-129939.
BETP
BETP is an agonist of glucagon-like peptide-1 (GLP-1) receptor, with EC50s of 0.66 and 0.755 μM for human and rat GLP-1 receptor, respectively. Uses: Scientific research. Category: Signaling pathways. CAS No. 1371569-69-5. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-103546.
Betrixaban
Betrixaban (PRT054021) is a highly potent, selective, and orally efficacious factor Xa (fXa) inhibitor with an IC50 of 1.5 nM. Betrixaban shows antithrombotic effect[1][3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: PRT054021. CAS No. 330942-05-7. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-10268.
Betrixaban (Standard)
Betrixaban (Standard) is the analytical standard of Betrixaban. This product is intended for research and analytical applications. Betrixaban (PRT054021) is a highly potent, selective, and orally efficacious factor Xa (fXa) inhibitor with an IC50 of 1.5 nM. Betrixaban shows antithrombotic effect[1][3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: PRT054021 (Standard). CAS No. 330942-05-7. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-10268R.
Betulin
Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Trochol. CAS No. 473-98-3. Pack Sizes: 50 mg; 100 mg; 200 mg. Product ID: HY-N0083.
Betulin caffeate
Betulin caffeate (Betulin-3β-caffeate) is a triterpene caffeate compound[1]. Uses: Scientific research. Category: Natural products. Alternative Names: Betulin-3β-caffeate. CAS No. 89130-86-9. Pack Sizes: 1 mg. Product ID: HY-N2934.
Betulinic acid
Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Betulinic acid can cross the blood-brain barrier[5]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Lupatic acid; Betulic acid. CAS No. 472-15-1. Pack Sizes: 10 mM * 1 mL in DMSO; 100 mg; 200 mg; 500 mg. Product ID: HY-10529.