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Xanomeline oxalate

Cat. No. M28356
Xanomeline oxalate Structure
Synonym:

LY246708 oxalate

Size Price Availability Quantity
5mg USD 95  USD95 In stock
10mg USD 145  USD145 In stock
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Quality Control & Documentation
Biological Activity

Xanomeline oxalate (LY246708 oxalate) is a potent and selective muscarinic receptor agonist (SMRA) and stimulates phosphoinositide hydrolysis in vivo. Xanomeline oxalate can be used for the research of Alzheimer’s disease.

Chemical Information
Molecular Weight 371.45
Formula C16H25N3O5S
CAS Number 141064-23-5
Form Solid
Solubility (25°C) DMSO 50 mg/mL (ultrasonic)
Storage 4°C, dry, sealed
Conversion of different model animals based on BSA (PMID: 27057123)
Species Mouse Rat Rabbit Guinea pig Hamster Dog
Weight (kg) 0.02 0.15 1.8 0.4 0.08 10
Body Surface Area (m2) 0.007 0.025 0.15 0.05 0.02 0.5
Km factor 3 6 12 8 5 20
Animal A (mg/kg) = Animal B (mg/kg) multiplied by  Animal B Km
Animal A Km

For example, to modify the dose of Compound A used for a mouse (20 mg/kg) to a dose based on the BSA for a rat, multiply 20 mg/kg by the Km factor for a mouse and then divide by the Km factor for a rat. This calculation results in a rat equivalent dose for Compound A of 10 mg/kg.

References

[1] Ziyan Li, et al. Mol Med Rep. Xanomeline derivative EUK1001 attenuates Alzheimer's disease pathology in a triple transgenic mouse model

[2] Xiaoliang Zhang, et al. Neural Regen Res. 3-[3-(3-florophenyl-2-propyn-1-ylthio)-1, 2, 5-thiadiazol-4-yl]-1, 2, 5, 6-tetrahydro-1- methylpyridine oxalate, a novel xanomeline derivative, improves neural cells proliferation and survival in adult mice

[3] Dong Wang, et al. Biochem Biophys Res Commun. Attenuation of neurodegenerative phenotypes in Alzheimer-like presenilin 1/presenilin 2 conditional double knockout mice by EUK1001, a promising derivative of xanomeline

[4] Wen Si, et al. Neurosci Lett. A novel derivative of xanomeline improves fear cognition in aged mice

[5] Yi-Hui Cui, et al. Neurosci Bull. A novel derivative of xanomeline improved memory function in aged mice

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