Ion Channel Lead-like Compound Library

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Based on 83 publication(s) in Google Scholar

Ion channels are key proteins on the cell membrane that regulate the flow of ions across membranes. They participate in nearly all physiological processes, including nerve conduction, muscle contraction, heart rhythm, and pain perception. Abnormalities in their function can lead to various serious diseases such as arrhythmia, epilepsy, hypertension, neuropathic pain, and cancer. Therefore, ion channels are highly valuable drug targets—over 15% of approved drugs target ion channels currently, demonstrating their irreplaceable therapeutic value in cardiovascular, neurological, and analgesic fields.

MCE has collected a library of over 5,000 reported ion channel-related bioactive compounds targeting major sites such as Na+ channels, K+ channels, Ca2+ channels, GABA receptors, iGluRs, and others. Using AI models, these compounds are characterized through both 2D representations (molecular fingerprints, pharmacophores) and 3D representations (3D conformation) to screen for a collection of lead-like compounds highly similar to known active molecules. Additionally, an hERG channel prediction algorithm integrating XGB and ISE mapping strategy is employed to assess and exclude potential cardiotoxicity in the library.. This step significantly reduces safety risks in subsequent screenings, particularly for ion channel drug development related to cardiovascular systems (e.g., Nav1.5, Cav1.2), effectively minimizing failures due to hERG inhibition and serving as a valuable tool for ion channel drug screening.

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Description & Advantages

•    A unique collection of 9,000 ion channel lead-like compounds is available for high throughput screening (HTS) and high content screening (HCS).

•    All compounds have been using AI models to generate a collection of lead-like compounds highly similar to known active molecules.

•    The potential cardiac toxicity of compounds in the collection is assessed using an hERG channel prediction algorithm that integrates XGB and ISE mapping strategies.

•   All compounds are available off the shelf.

•   Validated by LCMS or NMR to ensure high purity and quality.

Product Details

Formulation

The collection of 9000 compounds obtained through AI screening and hERG channel prediction algorithm screening, making it a valuable tool for the discovery of ion channel drugs.

Container

96- or 384-well Plate with Peelable Foil Seal; 96-well Format Sample Storage Tube With Screw Cap and Optional 2D Barcode.

Storage
-80°C
Shipping
Blue ice or dry ice

Documentation

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200 mg
USD 120
In-stock
Estimated to ship on August 31 More
500 mg
Get Quote
Consult sales personnel for more information
Bulk Inquiry
500 mg
Get Quote
Consult sales personnel for more information
Bulk Inquiry
Estimated to ship on August 31 More