ATM4 4-acetoxy analog

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Reagent Code: #55645
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CAS Number 91295-74-8

science Other reagents with same CAS 91295-74-8

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 395.5 g/mol
Formula C₂₃H₂₅NO₅
inventory_2 Storage & Handling
Storage -20°C, airtight, dry

description Product Description

The 4-acetoxy analog of ATM4 is primarily utilized in research and development within the field of medicinal chemistry. It serves as a key intermediate or precursor in the synthesis of more complex molecules, particularly those targeting specific biological pathways. Its application is significant in the study of enzyme inhibition and receptor modulation, where it helps in understanding the interaction mechanisms at a molecular level. Additionally, this compound is explored for its potential in developing therapeutic agents, especially in areas like oncology and neurology, due to its structural similarity to biologically active molecules. Researchers also leverage its properties to optimize pharmacokinetics and pharmacodynamics in drug design, aiming to enhance efficacy and reduce side effects.

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Size Availability Unit Price Quantity
inventory 1mg
10-20 days ฿11,934.00

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ATM4 4-acetoxy analog
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The 4-acetoxy analog of ATM4 is primarily utilized in research and development within the field of medicinal chemistry. It serves as a key intermediate or precursor in the synthesis of more complex molecules, particularly those targeting specific biological pathways. Its application is significant in the study of enzyme inhibition and receptor modulation, where it helps in understanding the interaction mechanisms at a molecular level. Additionally, this compound is explored for its potential in developin

The 4-acetoxy analog of ATM4 is primarily utilized in research and development within the field of medicinal chemistry. It serves as a key intermediate or precursor in the synthesis of more complex molecules, particularly those targeting specific biological pathways. Its application is significant in the study of enzyme inhibition and receptor modulation, where it helps in understanding the interaction mechanisms at a molecular level. Additionally, this compound is explored for its potential in developing therapeutic agents, especially in areas like oncology and neurology, due to its structural similarity to biologically active molecules. Researchers also leverage its properties to optimize pharmacokinetics and pharmacodynamics in drug design, aiming to enhance efficacy and reduce side effects.

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