Andrew's Liver Salt structure

Andrew's Liver Salt

TL;DR: Andrew's Liver Salt (CAS 5453-97-4) is a chemical compound with molecular formula CHMgNaO7S and molecular weight 203.92 g/mol, supplied by Kehong Biological (Henan Kehong Biological Technology Co., Ltd.) with CRO/CDMO custom synthesis services.

magnesium;sodium;hydrogen carbonate;sulfate

Also Known As: Andrew's liver salt, Andrews liver salt, Andrew/'s Liver Salt, MgSO4 NaHCO3, magnesium sodium hydrogen carbonate sulfate

CAS: 5453-97-4
Molecular Formula CHMgNaO7S
Molecular Weight 203.92 g/mol
LogP -5.8271
Topological Polar Surface Area 149.0 Ų
Hydrogen Bond Donors 1
Hydrogen Bond Acceptors 7
Rotatable Bonds 0
Exact Mass 203.91911
Heavy Atoms 11
Complexity 87.0

Chemical Identifiers

CAS Number 5453-97-4
SMILES C(=O)(O)[O-].[O-]S(=O)(=O)[O-].[Na+].[Mg+2]
InChIKey ZDXSOOBRDLVPON-UHFFFAOYSA-K

Patent-Derived Application Labels

Derived from 4 IPC patent classification(s) across the SureChEMBL global patent database.

Heterocyclic Building Blocks (11 patents) Organic Building Blocks (7 patents) Peptides & Amino Acids (5 patents) Pharmaceutical Intermediates (10 patents)

Product Overview

Andrew's Liver Salt (CAS 5453-97-4), with molecular formula CHMgNaO7S and molecular weight 203.92 g/mol. IUPAC: magnesium;sodium;hydrogen carbonate;sulfate.

🧪
Safety Data Sheet (MSDS / SDS) View the Laboratory Chemical Safety Summary (LCSS) on PubChem — includes GHS classifications, hazard statements, first aid measures, and handling precautions.
View MSDS →

Chemical Property Profile of Andrew's Liver Salt

XLogP
-5.8271
TPSA (Topological Polar Surface Area)
149.0
Hydrogen Bond Donors
1
Hydrogen Bond Acceptors
7
Rotatable Bonds
0
Heavy Atoms
11
Complexity
87.0
Exact Mass
203.91911
Monoisotopic Mass
203.91911
Data Source: Chemical property values are referenced from PubChem, the world's largest open chemistry database maintained by the National Center for Biotechnology Information (NCBI), U.S. National Library of Medicine.

Property Insights of Andrew's Liver Salt

The XLogP value of -5.8271 indicates that Andrew's Liver Salt is hydrophilic (water-soluble), making it suitable for aqueous formulations and biological assay applications. The TPSA of 149.0 Ų indicates high polarity, suggesting Andrew's Liver Salt may have limited membrane permeability but good aqueous solubility. Following Lipinski's Rule of Five, Andrew's Liver Salt has 1 hydrogen bond donor(s) and 7 hydrogen bond acceptor(s), all within the drug-like range, suggesting favorable oral bioavailability potential.

Frequently Asked Questions

What is the typical lead time for this product?
Lead time typically ranges from 3-7 business days for in-stock items. For larger quantities or custom orders, please contact us for specific lead times.
Can you provide samples for testing?
Yes, we offer sample quantities for quality testing. Please submit an inquiry with your requirements and we will arrange samples accordingly.
What documentation do you provide with the product?
We provide COA (Certificate of Analysis), MSDS (Material Safety Data Sheet), and technical data sheets with each shipment.
Do you ship internationally?
Yes, we ship to most countries worldwide. Shipping costs and delivery times vary by location. Please contact us for specific shipping information.

Frequently Asked Questions

What is the CAS number of Andrew's Liver Salt?

The CAS number of Andrew's Liver Salt is 5453-97-4.

What is the molecular formula of Andrew's Liver Salt?

The molecular formula of Andrew's Liver Salt is CHMgNaO7S.

What is the molecular weight of Andrew's Liver Salt?

The molecular weight of Andrew's Liver Salt is 203.92 g/mol.

Where can I buy Andrew's Liver Salt?

You can request a quote for Andrew's Liver Salt directly from KEHONG BIO. Contact us or email info@kehongbio.com for pricing and availability.

Does KEHONG BIO offer custom synthesis for Andrew's Liver Salt?

Yes, KEHONG BIO provides custom synthesis services for Andrew's Liver Salt and related compounds. Contact us with your specific requirements including quantity, purity, and timeline.

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