Lintitript (Synonyms:SR 27897)
目录号 : KM6231 CAS No. : 136381-85-6 纯度 : 98%

Lintitript (SR 27897) 是一种高效,选择性,口服活性,竞争性和非肽类 CCK1 受体拮抗剂,EC50 为 6 nM,Ki 为 0.2 nM。Lintitript 对 CCK1 的选择性比对 CCK2 受体的选择性高 33 倍以上 (EC50值为 200 nM)。Lintitript 增加瘦素的血浆浓度和食物摄入以及胰岛素的血浆浓度。

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生物活性

Lintitript (SR 27897) is a highly potent, selective, orally active, competitive and non-peptide cholecystokinin (CCK1) receptor antagonist with an EC50 of 6 nM and a Ki of 0.2 nM. Lintitript displays > 33-fold selectivity more selective for CCK1 than CCK2 receptors (EC50 value of 200 nM). Lintitript increases plasma concentration of leptin and food intake as well as plasma concentration of insulin.

体外研究

In vitro, Lintitript (SR 27897) is a competitive antagonist of cholecystokinin (CCK)-stimulated amylase release in isolated rat pancreatic acini (pA2 = 7.50) and of CCK-induced guinea pig gall bladder contractions (pA2 = 9.57).
Lintitript produces concentration dependent inhibition of [I]CCK binding to CCK1 receptor sites in the rat pancreas (IC50 value of 0.58 nM) and also to CCK 2 sites in the guinea pig cortex (IC2 value of 479 nM). Lintitript inhibits [I]gastrin binding to gastrin receptors. Lintitript (0.5 nM) increases the dissociation constant of CCK for the CCK A receptor (Kd = 1.8 to 7.2 nM) without modifying the maximum number of receptors (Bmax = 1800 to 1770 fmol/mg).

体内研究

Lintitript (SR 27897; 1 mg/kg, i.v.) completely reverses the CCK-induced amylase secretion. Lintitript also inhibits CCK-induced gastric and gallbladder emptying in mice (ED50s = 3 and 72 μg/kg, respectively). Lintitript is also very active (ED50 = 27 μg/kg p.o.) in the gall bladder emptying protocol with egg yolk as an inducer of endogenous CCK release.

分子式
C20H14N3O3Scl
分子量
411.86
CAS号
136381-85-6
运输条件

Room temperature in continental US; may vary elsewhere.

储存方式
Powder -20°C 3 years
4°C 2 years
In solvent -80°C 6 months
-20°C 1 month
The molarity calculator equation
Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)
The dilution calculator equation
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2
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