5,6-Dimethyl-2-(thiophen-2-yl)thieno[2,3-d]pyrimidin-4(3H)-one

98%

Reagent Code: #179243
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CAS Number 354562-75-7

science Other reagents with same CAS 354562-75-7

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 262.4 g/mol
Formula C₁₂H₁₀N₂OS₂
inventory_2 Storage & Handling
Storage -20°C

description Product Description

Used in pharmaceutical research as a key intermediate in the synthesis of kinase inhibitors, particularly for targeting protein kinases involved in cancer cell proliferation. Shows potential in the development of anti-tumor agents due to its ability to modulate signaling pathways. Also employed in the design of novel heterocyclic compounds for drug discovery programs focused on inflammatory diseases and central nervous system disorders. Its structure supports high binding affinity to specific enzyme active sites, making it valuable in optimizing lead compounds for improved potency and selectivity.

Available Sizes & Pricing

Size Availability Unit Price Quantity
5mg
10-20 days ฿3,660.00
25mg
10-20 days ฿12,230.00
100mg
10-20 days ฿30,590.00
5,6-Dimethyl-2-(thiophen-2-yl)thieno[2,3-d]pyrimidin-4(3H)-one
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Used in pharmaceutical research as a key intermediate in the synthesis of kinase inhibitors, particularly for targeting protein kinases involved in cancer cell proliferation. Shows potential in the development of anti-tumor agents due to its ability to modulate signaling pathways. Also employed in the design of novel heterocyclic compounds for drug discovery programs focused on inflammatory diseases and central nervous system disorders. Its structure supports high binding affinity to specific enzyme acti

Used in pharmaceutical research as a key intermediate in the synthesis of kinase inhibitors, particularly for targeting protein kinases involved in cancer cell proliferation. Shows potential in the development of anti-tumor agents due to its ability to modulate signaling pathways. Also employed in the design of novel heterocyclic compounds for drug discovery programs focused on inflammatory diseases and central nervous system disorders. Its structure supports high binding affinity to specific enzyme active sites, making it valuable in optimizing lead compounds for improved potency and selectivity.

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