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What are Sensitive DNA/RNA Synthesis Materials?

Frequently Asked Questions (FAQ)

What makes Dim-Dmoc phosphoramidites suitable for sensitive DNA/RNA synthesis?

Dim-Dmoc phosphoramidites enable synthesis under mild deprotection conditions (pH 4-8), preserving sensitive functional groups that would degrade under conventional synthesis methods.

Which sensitive functional groups can be incorporated using this technology?

Alkyl halides, benzyl halides, maleimides, epoxides, aziridines, vinyl arenes, esters, thioesters, and allyl halides can be successfully incorporated without degradation.

How does Dim-Dmoc technology improve noncanonical nucleoside synthesis?

It provides stable protection for reactive groups, enabling production of DNA/RNA analogs with noncanonical nucleosides that are incompatible with traditional phosphoramidite methods.

What research applications benefit from sensitive DNA/RNA analogs?

These analogs are valuable for studying protein-nucleic acid interactions, investigating natural nucleic acid function, and developing specialized RNA constructs for experimental applications.

Can Dim-Dmoc phosphoramidites be used for both DNA and RNA synthesis?

Yes, this versatile technology supports synthesis of both sensitive DNA and RNA analogs, accommodating a wide range of research and molecular biology applications.

How can custom synthesis services support specific experimental needs?

We provide Dim-Dmoc phosphoramidites and Dmoc supports for tailored synthesis, enabling creation of sequences containing specific sensitive groups or noncanonical nucleosides for advanced studies.

* Only for research. Not suitable for any diagnostic or therapeutic use.
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