3 Results for "

rabbit red cell membrane

" in MedChemExpress (MCE) Product Catalog:
Products (3)

3 Results for "rabbit red cell membrane" in MCE Product Catalog:

7
7 Cited Publications
Cat. No.: HY-110082
CAS No.: 130-89-2
Quinine hydrochloride is an alkaloid extracted from cinchona bark and exhibits oral activity, acting as a potassium channel inhibitor. Quinine hydrochloride modulates the tolerance of red blood cells and presents dose-dependent toxicity and embryonic effects. Quinine hydrochloride is a typical hemolysin that directly lyses red blood cells, with cellular components of red blood cell membranes as its action targets. Quinine hydrochloride disrupts red blood cell membranes and induces hemolysis at high concentrations, while merely weakening the anti-hemolytic capacity of red blood cells at low concentrations. Quinine hydrochloride continuously reduces red blood cell tolerance after in vivo administration, and high doses can also alter blood cell counts. Quinine hydrochloride can be applied to researches related to red blood cell hemolysis, cancer and malaria .
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Cat. No.: HY-164412
CAS No.: 85082-02-6
Target:  

Endogenous Metabolite

Research Areas:  

Neurological Disease

Phosphatidylcholine (C18:2,C20:4) is a phosphatidylcholine species containing linoleic acid (C18:2) and arachidonic acid (C20:4) as fatty acid components, that can be isolated from egg yolk, red blood cell membranes of rat, rabbit, human, and dog. Phosphatidylcholine (C18:2,C20:4) can be used as a biomarker for the research of Alzheimer's disease .
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Cat. No.: HY-162818
Research Areas:  

Infection

Antibacterial agent 237 (compound Ru-8) is a bacteriostatic agent for Staphylococcus aureus, with MIC of 0.78-1.56 μg/mL. Antibacterial agent 237 destroys bacterial cell membranes, changes their permeability, and induces bacteria to produce Reactive Oxygen Species, leading to bacterial death without causing drug resistance. Antibacterial agent 237 has low hemolytic toxicity to rabbit red blood cells and Raw 264.7 cells, and has significant antibacterial effects against Staphylococcus aureus in mouse skin wound infection models and Bacillus major larvae infection models .
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