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Key Documents

D2963000

Doxapram hydrochloride

European Pharmacopoeia (EP) Reference Standard

Synonyme(s) :

Doxapram hydrochloride monohydrate, 1-Ethyl-4-[2-(4-morpholinyl)ethyl]-3,3-diphenyl-2-pyrrolidinone monohydrochloride monohydrate

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About This Item

Formule empirique (notation de Hill):
C24H30N2O2 · HCl · H2O
Numéro CAS:
Poids moléculaire :
432.98
Code UNSPSC :
41116107
Nomenclature NACRES :
NA.24

Qualité

pharmaceutical primary standard

Famille d'API

doxapram

Fabricant/nom de marque

EDQM

Application(s)

pharmaceutical (small molecule)

Format

neat

InChI

1S/C24H30N2O2.ClH.H2O/c1-2-26-19-22(13-14-25-15-17-28-18-16-25)24(23(26)27,20-9-5-3-6-10-20)21-11-7-4-8-12-21;;/h3-12,22H,2,13-19H2,1H3;1H;1H2

Clé InChI

ZOMBFZRWMLIDPX-UHFFFAOYSA-N

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Description générale

This product is provided as delivered and specified by the issuing Pharmacopoeia. All information provided in support of this product, including SDS and any product information leaflets have been developed and issued under the Authority of the Issuing Pharmacopoeia. For further information and support please go to the website of the issuing Pharmacopoeia.

Application

Doxapram hydrochloride EP Reference standard, intended for use in laboratory tests only as specifically prescribed in the European Pharmacopoeia.

Conditionnement

The product is delivered as supplied by the issuing Pharmacopoeia. For the current unit quantity, please visit the EDQM reference substance catalogue.

Autres remarques

Sales restrictions may apply.

Pictogrammes

Skull and crossbones

Mention d'avertissement

Danger

Mentions de danger

Classification des risques

Acute Tox. 3 Oral

Code de la classe de stockage

6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects

Classe de danger pour l'eau (WGK)

WGK 3

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


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Certificats d'analyse (COA)

Lot/Batch Number

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Consulter la Bibliothèque de documents

Dennis J Murphy et al.
Journal of pharmacological and toxicological methods, 62(1), 47-53 (2010-05-04)
Assessing the effects of new chemical entities on respiratory function in animal models is an essential component of preclinical drug safety evaluation. Methods currently available for measuring ventilatory parameters in conscious dogs generally utilize a plethysmograph chamber or a face
Steeve Giguère et al.
American journal of veterinary research, 68(12), 1407-1416 (2007-12-07)
To determine and compare the effects of caffeine and doxapram on cardiorespiratory variables in foals during isoflurane-induced respiratory acidosis. 6 clinically normal foals (1 to 3 days old). At intervals of > or = 24 hours, foals received each of
Daihua Yu et al.
Canadian journal of anaesthesia = Journal canadien d'anesthesie, 57(9), 843-848 (2010-06-08)
The study was designed to determine the incidence of postoperative agitation following general anesthesia in 2,000 adult patients and to examine the associated risk factors. The study enrolled 2,000 adults who were scheduled for surgery under general anesthesia in a
Guo-cai Li et al.
Cellular and molecular neurobiology, 30(5), 667-670 (2010-02-09)
This study tested whether the glial cells are involved in the exciting effects of doxapram on brainstem slice in vitro. Experiments were performed in brainstem slice preparations from neonatal rats. The medial area of nucleus retrofacialis (mNRF) and the hypoglossal
Joseph F Cotten
Anesthesia and analgesia, 116(4), 810-816 (2013-03-06)
TASK-1 and TASK-3 tandem pore potassium channel subunits provide a constitutive acidic pH- and hypoxia-inhibited potassium conductance. TASK channels are expressed in a number of tissues involved in regulation of breathing, and the TASK-1/TASK-3 heterodimer provides the predominant hypoxia-sensitive potassium

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