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P6628

Sigma-Aldrich

Pilocarpine nitrate salt

≥98% (HPLC)

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About This Item

Fórmula empírica (Notação de Hill):
C11H16N2O2 · HNO3
Número CAS:
Peso molecular:
271.27
Beilstein:
4171406
Número CE:
Número MDL:
Código UNSPSC:
12352200
ID de substância PubChem:
NACRES:
NA.77

Ensaio

≥98% (HPLC)

Formulário

powder

atividade óptica

[α]25/D +83°, c = 10 in H2O(lit.)

cor

white

solubilidade

H2O: 100 mg/mL

cadeia de caracteres SMILES

O[N+]([O-])=O.CC[C@H]1[C@H](COC1=O)Cc2cncn2C

InChI

1S/C11H16N2O2.HNO3/c1-3-10-8(6-15-11(10)14)4-9-5-12-7-13(9)2;2-1(3)4/h5,7-8,10H,3-4,6H2,1-2H3;(H,2,3,4)/t8-,10-;/m0./s1

chave InChI

PRZXEPJJHQYOGF-GNAZCLTHSA-N

Informações sobre genes

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Categorias relacionadas

Aplicação

Pilocarpine nitrate salt has been used to measure bronchoconstriction and M2 and M3 muscarinic receptor function in vivo. It has also been used to induce electrographic and behavioral seizures and to study the different patterns of neuronal activation and neurodegeneration in Proechimys rats and Wistar rats.

Ações bioquímicas/fisiológicas

Nonselective muscarinic acetylcholine receptor agonist.
Nonselective muscarinic acetylcholine receptor agonist; used to produce an experimental model of epilepsy.
Pilocarpine is a cholinergic muscarinic agonist, useful in inducing epilepsy in animal models. It is specially used to study the pathogenesis of epileptogenesis and pharmacoresistant epilepsy. Pilocarpine application is more popular among the rat and mice models.

Pictogramas

Flame over circleSkull and crossbones

Palavra indicadora

Danger

Frases de perigo

Classificações de perigo

Acute Tox. 2 Inhalation - Acute Tox. 4 Oral - Ox. Sol. 2

Código de classe de armazenamento

5.1B - Oxidizing hazardous materials

Classe de risco de água (WGK)

WGK 3

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable

Equipamento de proteção individual

Eyeshields, Faceshields, Gloves, type P3 (EN 143) respirator cartridges


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Different patterns of neuronal activation and neurodegeneration in the thalamus and cortex of epilepsy-resistant Proechimys rats versus Wistar rats after pilocarpine-induced protracted seizures
Andrioli A, et al.
Epilepsia, 50(4), 832-848 (2009)
Hyperinsulinemia potentiates airway responsiveness to parasympathetic nerve stimulation in obese rats
Nie Z, et al.
American Journal of Respiratory Cell and Molecular Biology, 51(2), 251-261 (2014)
Olav B Smeland et al.
Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism, 33(7), 1090-1097 (2013-04-25)
Although certain metabolic characteristics such as interictal glucose hypometabolism are well established for temporal lobe epilepsy (TLE), its pathogenesis still remains unclear. Here, we performed a comprehensive study of brain metabolism in a mouse model of TLE, induced by pilocarpine-status
Rashmi M Risbud et al.
PloS one, 8(1), e53464-e53464 (2013-01-12)
MicroRNAs regulate protein synthesis by binding non-translated regions of mRNAs and suppressing translation and/or increasing mRNA degradation. MicroRNAs play an important role in the nervous system including controlling synaptic plasticity. Their expression is altered in disease states including stroke, head
Georgette L Suidan et al.
Arteriosclerosis, thrombosis, and vascular biology, 33(9), 2112-2120 (2013-07-05)
Aberrant blood-brain barrier (BBB) permeability is a hallmark pathology of many central nervous system diseases. von Willebrand factor (VWF) is stored in endothelial Weibel-Palade bodies from where it is released on activation into plasma and basement membrane. The role of

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