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February 7, 2026Nature Communications3 citationsOpen Access

Advances and challenges in non-canonical nucleic acids data storage

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YWYan WangYPYufeng PeiLTLinlin Tang

Key Points

  • Evaluate the properties and potential of non-canonical nucleic acids for data storage.
  • Systematic review of the fundamental properties of non-canonical nucleic acids.
  • Assessment of their suitability for molecular data storage.
  • Discussion of challenges and advantages in next-generation storage systems.
  • Non-canonical nucleic acids show enhanced stability under harsh conditions.
  • They offer unique functional potential compared to canonical nucleic acids.
  • Addressing intrinsic limitations of DNA in data storage may lead to practical applications.

Abstract

Canonical nucleic acids (DNA and RNA) naturally store genetic information with high density and programmability, making them promising candidates for molecular data storage. However, their susceptibility to degradation under harsh conditions, such as extreme pH, nuclease activity, and chemical attack, limits practical applications. In contrast, non-canonical nucleic acids (ncNAs) with natural or synthetic structural modifications exhibit enhanced stability and unique functional potential. This review systematically summarizes the fundamental properties of ncNAs, evaluates their suitability for molecular data storage, and discusses how their distinctive advantages may overcome the intrinsic limitations of canonical nucleic acids while addressing challenges in next-generation storage systems.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/698692e89d267392364c994dhttps://doi.org/10.1038/s41467-026-68708-6
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