8 Results for "

rat striatal membranes

" in MedChemExpress (MCE) Product Catalog:
Products (8)

8 Results for "rat striatal membranes" in MCE Product Catalog:

4
4 Cited Publications
Cat. No.: HY-10435A
CAS No.: 74115-01-8
Purity:  99.82%
Synonyms: (±)-SKF-82958 hydrobromide; Chloro-APB hydrobromide
Target:  

Dopamine Receptor

Research Areas:  

Neurological Disease

SKF-82958 ((±)-SKF 82958) hydrobromide is a dopamine D1 receptor full agonist (K0.5=4 nM), displays selective for D1 over D2 receptors (K0.5=73 nM). SKF-82958 hydrobromide induces dopamine D1 receptor-dependent adenylate cyclase activity in rat striatal membranes (EC50=491 nM) .
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Cat. No.: HY-N2326
CAS No.: 1219922-30-1
Target:  

nAChR

(±)-Anatoxin A fumarate is a natural alkaloid isolated from freshwater cyanobacterium.(±)-Anatoxin A fumarate is a potent nicotinic receptor agonist and exhibits Ki values of 1.25 nM and 1.84 μM for binding to α4β2- and α7-type nicotinic receptors in rat brain membranes, respectively. (±)-Anatoxin A fumarate stimulates [ 3H]-dopamine release from rat striatal synaptosomes (EC50=134 nM). (±)-Anatoxin A fumarate has toxic effect on fish .
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Cat. No.: HY-10435
CAS No.: 80751-65-1
Synonyms: (±)-SKF-82958; Chloro-APB
Target:  

Dopamine Receptor

Research Areas:  

Neurological Disease

SKF-82958 ((±)-SKF 82958) is a dopamine D1 receptor full agonist (K0.5=4 nM), displays selective for D1 over D2 receptors (K0.5=73 nM). SKF-82958 induces dopamine D1 receptor-dependent adenylate cyclase activity in rat striatal membranes (EC50=491 nM) .
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Cat. No.: HY-10435AR
CAS No.: 74115-01-8
Synonyms: (±)-SKF-82958 hydrobromide (Standard); Chloro-APB hydrobromide (Standard)
SKF-82958 (hydrobromide) (Standard) is the analytical standard of SKF-82958 (hydrobromide). This product is intended for research and analytical applications. SKF-82958 ((±)-SKF 82958) hydrobromide is a dopamine D1 receptor full agonist (K0.5=4 nM), displays selective for D1 over D2 receptors (K0.5=73 nM). SKF-82958 hydrobromide induces dopamine D1 receptor-dependent adenylate cyclase activity in rat striatal membranes (EC50=491 nM) .
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Cat. No.: HY-171328
CAS No.: 1076189-55-3
Target:  

Dopamine Receptor

Research Areas:  

Neurological Disease

RG-15 is the orally active antagonist for dopamine receptor that exhibits goof affinity to human D2 receptor and human D3 receptor with pKi of 8.23 and 10.49. RG-15 inhibits dopamine-stimulated [ 35S]GTPγS binding with IC50 of 21.2 nM (rat striatal membranes), 36.7 nM (mouse A9 cells expressing human D2L receptors) and 7.2 nM (CHO cells expressing human D3 receptors). RG-15 increases the turnover and biosynthesis of dopamine in mouse striatum and olfactory bulb, exhibiting antipsychotic activity .
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Cat. No.: HY-W700204
CAS No.: 93801-18-4
Target:  

Dopamine Receptor

Research Areas:  

Neurological Disease

N-(p-Aminophenethyl) spiperone is a selective D2-like dopamine receptor antagonist. N-(p-Aminophenethyl) spiperone binds to the ligand recognition sites of functional D2 and D3 dopamine receptors. N-(p-Aminophenethyl) spiperone serves as a research tool compound for labeling, localizing and identifying D2 and D3 dopamine receptors .
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Cat. No.: HY-184802
CAS No.: 80273-79-6
Research Areas:  

Neurological Disease

Tefludazine is an orally active antagonist of dopamine D2 receptor with an IC50 of 8.8 nM and 5-HT2 receptor with an IC50 of 8.6 nM. Tefludazine moderately inhibits the uptake of dopamine, norepinephrine and serotonin in rat brain synaptosomes, with IC50 values of 520 nM, 660 nM and 7000 nM, respectively . Tefludazine exhibits long-acting antipsychotic activity, lacks anticholinergic activity, shows Clozapine (HY-14539)-like effects at low doses and Haloperidol (HY-14538)-like effects at high doses. Tefludazine can be used for the research of psychotic disorders .
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Cat. No.: HY-W754019
CAS No.: 82117-51-9
Cinuperone is a multi-target competitive receptor ligand and σ receptor antagonist that acts on Dopamine D1, σ, Dopamine D1, and 5-HT2 receptors. Cinuperone shows significantly higher affinity for σ receptors than for Dopamine D1 receptors, and only exhibits moderate binding activity for dopamine D2 receptors. Cinuperone can be used in the research of central nervous system diseases .
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