| Catalog No | Product Description | CAS No. | Purity | Structural Formula |
|---|---|---|---|---|
| SBP03818 |
(+)-Borneol
(+)-Borneol is a bicyclic monoterpene used for analgesia and anaesthesia in traditional Chinese and Japanese medicine, it and its enantiomer (-)-borneol have a highly efficacious positive modulating action at GABA(A) receptors at human recombinant alpha1beta2gamma2L GABA(A) receptors. Borneol specifically inhibits the nicotinic acetylcholine receptor (nAChR)-mediated effects in a noncompetitive way, can depress P-glycoprotein function by a NF-κB signaling mediated mechanism in a blood brain barrier in vitro model. Borneol has neuroprotection through the inhibition of IκBα-NF-κB and translocation signaling pathway, it also has an anti-cerebral ischemia effects. It can suppresse inflammatory responses in LPS-induced acute lung injury through inhibition of the NF-κB and MAPKs signaling pathways. (+)-borneol is a borneol. It is an enantiomer of a (-)-borneol.
|
464-43-7 | 98% |
|
| BP0121 |
Aconitine
Aconitine is a diterpenoid that is 20-ethyl-3alpha,13,15alpha-trihydroxy-1alpha,6alpha,16beta-trimethoxy-4-(methoxymethyl)aconitane-8,14alpha-diol having acetate and benzoate groups at the 8- and 14-positions respectively. It is functionally related to an aconitane.
Aconitine, one of the major Aconitum alkaloids, is a highly toxic compound from the Aconitum species, it appears to exert a long-lasting cholinergic action in the causation of severe arrhythmias leading to death.
|
302-27-2 | 98% |
|
| BP1109 |
Piperine
Piperine is a N-acylpiperidine that is piperidine substituted by a (1E,3E)-1-(1,3-benzodioxol-5-yl)-5-oxopenta-1,3-dien-5-yl group at the nitrogen atom. It is an alkaloid isolated from the plant Piper nigrum. It has a role as a NF-kappaB inhibitor, a plant metabolite, a food component and a human blood serum metabolite. It is a tertiary carboxamide, a piperidine alkaloid, a member of benzodioxoles and a N-acylpiperidine. It is functionally related to an (E,E)-piperic acid. Piperine, an inhibitor of human P-glycoprotein and/or CYP3A4, which has antinociceptive, antiarthritic, antidepressant, hepatoprotective, immunomodulatory , antitumor, anti-oxidative, anti-apoptotic, chemo-protective, and anti-inflammatoryactivities. Administration of piperine appears to reverse preexisting high-fat diet (HFD)-induced hepatic steatosis and insulin resistance, probably by activation of adiponectin-AMPK signalling.
|
94-62-2 | 98% |
|
| BP4041 |
6-Prenylnaringenin
6-Prenylnaringenin is an isomer of the potent phytoestrogen, 8-prenylnaringenin. It exhibits both mixed and non-competitive inhibitory characteristics against tyrosinase, tyrosinase is the rate-limiting enzyme for the production of melanin and other pigments via the oxidation of l-tyrosine. 6-Prenylnaringenin has anti-cancer potential , dose-dependent reduction of cellular proliferation of human PC-3 prostate cancer and UO.31 renal carcinoma cells upon treatment. 6-Prenylnaringenin can inhibit 12-O-tetradecanoylphorbol 13-acetate (TPA)-induced inflammation (1μg/ear) in mice, it also exhibits inhibitory effects on skin-tumor promotion in anin vivo two-stagemouse-skin carcinogenesis test based on 7,12-dimethylbenz[a]- anthracene (DMBA) as initiator and with TPA as promoter. 6-prenylnaringenin is a trihydroxyflavanone having a structure of naringenin prenylated at C-6. It has a role as a T-type calcium channel blocker. It is a member of 4'-hydroxyflavanones, a (2S)-flavan-4-one and a trihydroxyflavanone. It is functionally related to a (S)-naringenin.
|
68236-13-5 | 98% |
|
| BP0114 |
Acacetin
Acacetin is a monomethoxyflavone that is the 4'-methyl ether derivative of apigenin. It has a role as an anticonvulsant and a plant metabolite. It is a monomethoxyflavone and a dihydroxyflavone. It is functionally related to an apigenin. It is a conjugate acid of a 5-hydroxy-2-(4-methoxyphenyl)-4-oxo-4H-chromen-7-olate.
Acacetin is an atrium-selective agent that prolongs the atrial effective refractory period without prolonging the corrected QT interval and effectively prevents atrial fibrillation (AF) in anesthetized dogs after intraduodenal administration. Acacetin has anti-cancer, anti-mutagenic, spasmolytic and antinociceptive, anti-inflammatory and anti-peroxidative effects.
Acacetin is an orally effective flavonoid derived from Dendranthema morifolium. Acacetin stops in the ATP binding pocket of PI3K γ. Acacetin causes cancer cell cycle arrest and induces apoptosis and autophagy. Acacia extract has effective anti-cancer and anti-inflammatory activities, and has the potential for research on pain related diseases.
|
480-44-4 | 98% |
|
| BP3299 | 106644-33-1 | 98% |
|
|
| BP3667 |
Bacopaside I
Bacopaside I is a modulator of Aquaporin-1 channel, has neuroprotective functions, it has anti-Alzheimer's disease, it ameliorates cognitive impairment in APP/PS1 mice via immune-mediated clearance of β-amyloid. Bacopaside I also exhibits an obvious antidepressant-like effect in mouse model of CUMS-induced depression that was mediated, at least in part, by modulating HPA hyperactivity and activating BDNF signaling pathway.
|
382148-47-2 | 98% |
|
| SBP03437 | 5548-10-7 |
|
||
| SBP03509 | 18296-45-2 |
|
||
| SBP03772 | 29505-31-5 |
|
||
| SBP01947 | 62312-55-4 |
|
||
| BP3312 | 150881-01-9 |
|
||
| BP3054 |
Adenosine
Adenosine is a nucleoside composed of a molecule of adenine attached to a ribose sugar molecule (ribofuranose) moiety via a β-N9-glycosidic bond. Adenosine induces SphK1 activity in human and mouse sickle and normal erythrocytes in vitro, it can activate the neuroimmune system, alter neuronal function and neurotransmission,and contribute to symptoms of sickness and psychopathologies. Adenosine activates mast cells have been long implicated in allergic asthma and studies in rodent mast cells have assigned the A3 Adenosine receptor (A3R) a primary role in mediating Adenosine responses. Adenosine is a ribonucleoside composed of a molecule of adenine attached to a ribofuranose moiety via a betaN9-glycosidic bond. It has a role as an analgesic, a vasodilator agent, an anti-arrhythmia drug, a human metabolite and a fundamental metabolite. It is a purines D-ribonucleoside and a member of adenosines. It is functionally related to an adenine.
|
58-61-7 | 98% |
|
| BP0245 |
Benzoylhypaconine
Benzoylhypaconine is a diterpene alkaloid with formula C31H43NO9 that is isolated from several Aconitum species. It has a role as a xenobiotic, a phytotoxin, a plant metabolite, a human urinary metabolite and a rat metabolite. It is a diterpene alkaloid, a tertiary alcohol, a triol, a secondary alcohol, a bridged compound, a benzoate ester, an organic heteropolycyclic compound, a polyether and a tertiary amino compound. It derives from a hydride of an aconitane.
|
63238-66-4 | 98% |
|
| BP1852 |
Beta-Asarone
beta-Asarone has neuroprotection, anti-tumor, anthelmintic, anti-inflammary, and anticoagulant effects, it can afford a beneficial inhibition on both mRNA and protein expression of Bad, Bax, and cleavage of caspases 9 in rat hippocampus following intrahippocampal injections of Abeta (1-42).beta-Asarone prevents autophagy and synaptic loss by reducing ROCK expression in SAMP8 mice. beta Asarone can cause liver and cardiac damages, it also has reproductive toxicity. Asarone is a phenylpropanoid that is benzene substituted by methoxy groups at positions 1, 2 and 4 and a propen-1-yl group at position 5. It has been isolated from Acorus. It has a role as a plant metabolite. It is an alkenylbenzene, a phenylpropanoid and a member of methoxybenzenes.
|
5273-86-9 | 98% |
|
| BP0273 |
Bicuculline
Bicuculline is a benzylisoquinoline alkaloid that is 6-methyl-5,6,7,8-tetrahydro[1,3]dioxolo[4,5-g]isoquinoline which is substituted at the 5-pro-S position by a (6R)-8-oxo-6,8-dihydrofuro[3,4-e][1,3]benzodioxol-6-yl group. A light-sensitive competitive antagonist of GABAA receptors. It was originally identified in 1932 in plant alkaloid extracts and has been isolated from Dicentra cucullaria, Adlumia fungosa, Fumariaceae, and several Corydalis species. (+)-Bicuculline is a competitive antagonist of GABAA receptors with IC50 of 2 μM, also blocks Ca(2+)-activated potassium channels.It is effective in vitro against spore germination of some plant pathogenic fungi, it can significantly inhibit spore germination of all the fungi at concentrations of 100-1000 ppm.
|
485-49-4 | 98% |
|
| BP1185 | 84745-94-8 | 98% |
|
|
| BP5534 | 1015447-52-5 | 98% |
|
|
| BP1359 |
Talatisamine
Talatisamine is a newly identified K+ channel blocker with hypotensive and antiarrhythmic activities. Talatisamine (120 μM) and TEA (5mM) inhibits the enhanced I(K) caused by Aβ40 oligomers, attenuates cytotoxicity of Aβ oligomers by restoring cell viability and suppressing K(+) loss related apoptotic response.
|
20501-56-8 | 98% |
|
| BP5684 | 616-04-6 |
|
Shenshuai
Wenjing
Hedandan