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Structure-based DNA Memory with Boolean Random Access
DOI:10.1039/D5NH00502G.png)
Abstract
En 中文
Structure-based DNA memory represents a paradigm shift from nucleotide-encoded storage; circumventing the costly repetitive synthesis and sequencing dependencies while harnessing the programmable architecture of DNA nanostructures. However; the absence of random-access capability has constrained practical implementation. Here; we implement a Boolean search-enabled random-access scheme for structural DNA memory; wherein data is encoded on DNA origami tiles with orthogonally dimensioned index strands (1D/2D/3D addressing). Boolean operations are executed by hybridizing biotinylated probes to target index combinations; enabling the magnetic extraction of specific files. Atomic force microscopy validation confirms the precise retrieval of data across single-; dual-; and triple-indexed libraries. This approach establishes a robust framework for enabling random access in complex structural DNA databases.
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