Основные атрибуты  химическое свойство химические свойства, назначение, производство поставщик Обзор
Росиптор структурированное изображение

Росиптор

  • английское имяRosiptor
  • CAS №782487-28-9
  • CBNumberCB53044080
  • ФормулаC20H35NO2
  • мольный вес321.5
  • EINECS200-001-8
  • номер MDLMFCD31619271
  • файл Mol782487-28-9.mol
химическое свойство
Температура кипения 451.6±45.0 °C(Predicted)
плотность 1.07±0.1 g/cm3(Predicted)
температура хранения Store at -20°C
растворимость DMSO : 150 mg/mL (466.56 mM)
пка 15.05±0.10(Predicted)
форма Solid
цвет White to off-white
InChI InChI=1S/C20H35NO2/c1-13-4-5-17-16(11-21)18(7-9-19(13,17)2)20(3)8-6-15(23)10-14(20)12-22/h14-18,22-23H,1,4-12,21H2,2-3H3/t14-,15+,16+,17+,18+,19-,20+/m1/s1
ИнЧИКей MDEJTPWQNNMAQF-BVMLLJBZSA-N
SMILES [C@H]1(CO)C[C@@H](O)CC[C@@]1([C@H]1CC[C@@]2(C)[C@]([H])([C@@H]1CN)CCC2=C)C
FDA UNII 6R5034F862

Росиптор химические свойства, назначение, производство

Описание

Rosiptor (AQX-1125) is a selective and orally active phosphatase SHIP1 activator with anti-inflammatory effects. It inhibits Akt phosphorylation, inflammatory mediator production and leukocyte chemotaxis in vitro.

Использование

Rosiptor has been used in trials studying the treatment of COPD, Atopic Dermatitis, Interstitial Cystitis, and Bladder Pain Syndrome.

Биологическая активность

Rosiptor is a small-molecule SHIP1 activator.The activating effect of Rosiptor on SHIP1 is 28% at 100 μM in the native enzyme but no effect of Rosiptor is observed when the SHIP1δC2 enzyme is used. Rosiptor induces a concentration-dependent decrease in Akt phosphorylation in MOLT-4 cells, while it fails to affect Akt phosphorylation in Jurkat cells. At 0.1 μM Rosiptor the inhibition amounts to an average of 34%, while at 10 μM the inhibition amounts to an average of 82% in two independent experiments. Rosiptor also induces a concentration-dependent decrease in the production of multiple pro-inflammatory mediators in this system, without affecting cell viability. Rosiptor dose dependently inhibits chemotaxis of most cell types at low micromolar concentrations independent of the chemotactic stimulus.

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