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Stable DNA building blocks enable faster oligonucleotide synthesis without oxidation

The chemical synthesis of oligonucleotides (ONs) is central to modern molecular biology, diagnostics and nucleic acid therapeutics. While demand for high-quality ONs is increasing, the conventional synthetic method has long-standing efficiency challenges. Widely adopted P(III)-phosphoramidite-based ON synthesis requires an oxidation step after every nucleotide coupling cycle and uses moisture-sensitive building block

Updated Wed, July 29, 2026 at 9:35 PM UTC1 connected chapterOldest → newest
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The chemical synthesis of oligonucleotides (ONs) is central to modern molecular biology, diagnostics and nucleic acid therapeutics. While demand for high-quality ONs is increasing, the conventional synthetic method has long-standing efficiency challenges. Widely adopted P(III)-phosphoramidite-based ON synthesis requires an oxidation step after every nucleotide coupling cycle and uses moisture-sensitive building block

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    How it started
    01How it started

    Stable DNA building blocks enable faster oligonucleotide synthesis without oxidation

    What happened

    The chemical synthesis of oligonucleotides (ONs) is central to modern molecular biology, diagnostics and nucleic acid therapeutics. While demand for high-quality ONs is increasing, the conventional synthetic method has long-standing efficiency challenges. Wide Stable DNA building blocks enable faster oligonucleotide synthesis without oxidation

    Why it matters

    The development may affect how technology is built, regulated or used. The practical impact depends on technical details, availability and independent evaluation.

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