8-Methoxypyrido[3,4-d]pyrimidin-4(3H)-one

≥95%

Reagent Code: #62901
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CAS Number 1260178-71-9

science Other reagents with same CAS 1260178-71-9

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 177.16 g/mol
Formula C₈H₇N₃O₂
badge Registry Numbers
MDL Number MFCD21648261
thermostat Physical Properties
Boiling Point 346.7±52.0°C at 760 mmHg
inventory_2 Storage & Handling
Storage Room temperature, dry and sealed

description Product Description

This compound is primarily utilized in the field of medicinal chemistry and pharmaceutical research. It serves as a key intermediate in the synthesis of various biologically active molecules, particularly those targeting kinase enzymes. Its structural framework is often incorporated into the design of inhibitors that can modulate signaling pathways involved in diseases such as cancer, inflammation, and autoimmune disorders. Researchers also explore its potential in developing novel therapeutic agents due to its ability to interact with specific protein targets. Additionally, it is studied for its role in optimizing drug-like properties, including solubility and bioavailability, in early-stage drug discovery programs.

shopping_cart Available Sizes & Pricing

Size Availability Unit Price Quantity
inventory 100mg
10-20 days ฿7,281.00
inventory 250mg
10-20 days ฿14,571.00

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8-Methoxypyrido[3,4-d]pyrimidin-4(3H)-one
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This compound is primarily utilized in the field of medicinal chemistry and pharmaceutical research. It serves as a key intermediate in the synthesis of various biologically active molecules, particularly those targeting kinase enzymes. Its structural framework is often incorporated into the design of inhibitors that can modulate signaling pathways involved in diseases such as cancer, inflammation, and autoimmune disorders. Researchers also explore its potential in developing novel therapeutic agents due

This compound is primarily utilized in the field of medicinal chemistry and pharmaceutical research. It serves as a key intermediate in the synthesis of various biologically active molecules, particularly those targeting kinase enzymes. Its structural framework is often incorporated into the design of inhibitors that can modulate signaling pathways involved in diseases such as cancer, inflammation, and autoimmune disorders. Researchers also explore its potential in developing novel therapeutic agents due to its ability to interact with specific protein targets. Additionally, it is studied for its role in optimizing drug-like properties, including solubility and bioavailability, in early-stage drug discovery programs.

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