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Aminopicoline Sale

(Synonyms: 2-氨基-4-甲基吡啶,Ascensil) 目录号 : GC65226

Aminopicoline (Ascensil) 是一种有效且非选择性的 NO 合成酶 (NOS) 同功酶 (iNOS、nNOS、eNOS) 抑制剂。

Aminopicoline Chemical Structure

Cas No.:695-34-1

规格 价格 库存 购买数量
500mg
¥315.00
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产品描述

Aminopicoline (Ascensil) is a potent and nonselective inhibitor of NO synthase (NOS) isoenzymes (iNOS, nNOS, eNOS)[1].

[1]. Boer R, et al. The inhibitory potency and selectivity of arginine substrate site nitric-oxide synthase inhibitors is solely determined by their affinity toward the different isoenzymes. Mol Pharmacol. 2000;58(5):1026-1034.

Chemical Properties

Cas No. 695-34-1 SDF Download SDF
别名 2-氨基-4-甲基吡啶,Ascensil
分子式 C6H8N2 分子量 108.14
溶解度 DMSO : ≥ 100 mg/mL (924.73 mM); H2O : 50 mg/mL (462.36 mM; Need ultrasonic) 储存条件 4°C, protect from light
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1 mM 9.2473 mL 46.2364 mL 92.4727 mL
5 mM 1.8495 mL 9.2473 mL 18.4945 mL
10 mM 0.9247 mL 4.6236 mL 9.2473 mL
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Research Update

The inhibitory potency and selectivity of arginine substrate site nitric-oxide synthase inhibitors is solely determined by their affinity toward the different isoenzymes

Mol Pharmacol 2000 Nov;58(5):1026-34.PMID:11040050doi

We have investigated various nitric oxide (NO) synthase inhibitors for their affinity and selectivity toward the three human isoenzymes in radioligand binding experiments. Therefore, we developed the new radioligand [(3)H]2-amino-4-picoline to measure binding of these compounds to the three human NO synthase (NOS) isoenzymes. Aminopicoline is a potent and nonselective inhibitor of all three isoforms. [(3)H]2-amino-4-picoline bound saturably and with high affinity to human NOSs. Affinity constants (K(D) values) of 59, 111, and 136 nM were obtained for the inducible, neuronal, and endothelial NOS isoforms (iNOS, nNOS, eNOS). Binding of [(3)H]2-amino-4-picoline was competitive with the substrate arginine. From all the inhibitors tested, AMT (2-amino-5, 6-dihydro-6-methyl-4H-1,3-thiazine hydrochloride) showed the highest affinity and no selectivity. L-NIL [L-N(6)-(1-Iminoethyl)lysine hydrochloride] and aminoguanidine were moderately iNOS-selective while L-NA (N(G)-nitro-L-arginine) and L-NAME (N(G)-nitro-L-arginine methyl ester hydrochloride) showed selectivity toward the constitutive isoforms. High iNOS versus eNOS selectivity was found for 1400W, whereas several isothiourea derivatives and 1400W displayed moderate n- versus eNOS selectivity. To relate the affinity of these compounds to their inhibitory potency, we measured the inhibitory potency under almost identical conditions using a new microtiter plate assay. The inhibitory potency of selective and nonselective NOS inhibitors was almost exactly mirrored by their affinity toward the different isoenzymes. Highly significant correlations were obtained between the potency of enzyme inhibition and the inhibition of [(3)H]2-amino-4-picoline binding for all three isoenzymes. These data show that the potency and selectivity of NOS inhibitors are solely determined by their affinity toward the different isoforms. Furthermore, these data identify the new radioligand [(3)H]2-amino-4-picoline as a very useful radiolabel for the investigation of the substrate binding site of all three isoforms.