High-Purity 5-Methyl-2'-deoxycytidine (CAS 838-07-3) Manufacturer & Supplier in China - Quote Now

Discover high-quality 5-Methyl-2'-deoxycytidine (CAS 838-07-3), a crucial pyrimidine nucleoside analog essential for advanced epigenetics research and pharmaceutical development. Partner with a leading Chinese manufacturer for your supply needs.

Get a Quote & Sample

Key Advantages of Sourcing 5-Methyl-2'-deoxycytidine from Us

Unmatched Purity and Quality

Our manufacturing processes for 5-Methyl-2'-deoxycytidine adhere to strict quality control, ensuring a product that is ≥98% pure, vital for accurate research and pharmaceutical formulation. Trust our commitment as your primary supplier.

Cost-Effective Pharmaceutical Intermediates

As a direct manufacturer, we offer competitive pricing on 5-Methyl-2'-deoxycytidine, making it an accessible and economical choice for your drug discovery and development projects. Inquire about bulk purchase price.

Reliable Supply Chain

We understand the importance of consistent availability. Our robust production capabilities as a key supplier in China ensure a stable and dependable supply of 5-Methyl-2'-deoxycytidine for your ongoing research and production needs.

Versatile Applications of 5-Methyl-2'-deoxycytidine

Epigenetics Research

Investigate the mechanisms of DNA methylation and its impact on gene expression. Our high-quality 5-Methyl-2'-deoxycytidine is ideal for studies on de novo DNA methylation.

Biochemical Studies

Utilize this pyrimidine nucleoside analog as a research tool to explore DNA synthesis, repair, and modification pathways. Purchase this critical biochemical from a trusted source.

Pharmaceutical Development

Source a key intermediate for the synthesis of potential therapeutic agents, particularly in oncology and other fields where DNA methylation plays a role. Get a quote from our sales team.

Nucleoside Analog Research

Explore the properties and applications of nucleoside isosteres and analogs, such as 5-Methyl-2'-deoxycytidine, in understanding biological processes and developing new compounds.