28 Results for "

affinity purification

" in MedChemExpress (MCE) Product Catalog:
Products (28)

28 Results for "affinity purification" in MCE Product Catalog:

Cat. No.: HY-K0231

MCE Anti-c-Myc Affinity Gel can be used for the detection and purification of c-Myc fusion expressed proteins, and immunoprecipitation (IP) experiments to detect the expression of recombinant proteins in target cells.

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Cat. No.: HY-K0232

MCE Anti-HA Affinity Gel can be employed for the detection and purification of HA fusion expressed proteins, and can also be used in immunoprecipitation (IP) experiments to detect the expression of recombinant proteins in target cells.

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Cat. No.: HY-K0219

MCE High-Affinity Iodoacetyl Agarose, a 4% highly cross-linked agarose reagent coupled with a derivative of iodoacetic acid, is ideal for conjugating sulfhydryl-containing peptide or protein for subsequent affinity purification.


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Cat. No.: HY-185345A
Target:  

5-HT Receptor

Research Areas:  

Others

GR119566X dihydrochloride is a 5-HT3 receptor ligand with a pKi value of 8.80 against prufied 5-HT3 receptor. GR119566X dihydrochloride can be used for 5-HT3 receptor purification .
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Cat. No.: HY-185345
CAS No.: 237752-42-0
Target:  

5-HT Receptor

Research Areas:  

Others

GR119566X is a 5-HT3 receptor ligand with a pKi value of 8.80 against prufied 5-HT3 receptor. GR119566X can be used for 5-HT3 receptor purification .
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Cat. No.: HY-K0226

MCE CHO Magnetic Beads (200 nm, 10 mg/mL) contain CHO functional groups, which react with primary amines on proteins or other molecules to form stable amide linkages,can covalently immobilize proteins for the affinity purification of antibodies, antigens and other biomolecules.

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Cat. No.: HY-K0227

MCE NHS Magnetic Beads (200 nm, 10 mg/mL) contain N-hydroxysuccinimide (NHS) functional groups, which react with primary amines on proteins or other molecules to form stable amide linkages,can covalently immobilize proteins for the affinity purification of antibodies, antigens and other biomolecules.

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Cat. No.: HY-LD002
100 billion compounds

The discovery of hit molecule is a cornerstone of drug development. Among the diverse tools available, DNA-encoded libraries have emerged a revolutionary platform for high-throughput screening. Compared with traditional HTS, DEL features shorter screening processes, lower costs, simpler assays, and larger library capacities.

DEL Construction utilizes split-and-pool synthesis, a combinatorial chemistry approach that involves iterative splitting, reaction, and pooling. This strategy enables rapid, exponential assembly of fragments in minimal steps without the need for individual compound synthesis andassoicicated isolation or purification steps, thus greatly reducing overall costs. The technology enables simultaneous affinity screeningof massive compound collections to target proteins in a single step. By coupling chemical structures with unique DNA barcodes, each compound is tagged with a distinct DNA sequence for convenient tracking and decoding.DELs readily enable the construction and efficient screening of libraries containing millions to billions of compounds. As a result, DEL screening combines the dual advantages of high efficiency and low cost, making DEL a transformative technology in modern drug discovery.

The DEL kit consists of 50 independent libraries with a total scale of 100 billion compounds. It is constructed through stepwise combinatorial chemistry strategies involving 2-, 3-, and 4-round synthesis. By employing diverse scaffolds and flexible linking strategies, it encompasses various ring systems, linear frameworks, and heterocyclic structures. Screening can be achieved solely through affinity, independent of target-specific activity detection methods. This library is suitable for DEL screening against a wide range of targets.