Jul 2026· ACS Chemical Biology· Vol 21, pp. 1850-1859· 0 citations· 44 references
Medicine
TL;DR
This work employed capture-SELEX, which uses free target molecules in solution without immobilization, to isolate DNA aptamers that specifically recognize doxorubicin and significantly inhibited doxorubicin uptake by HeLa cells, establishing a new generation of anthracycline aptamers.
Abstract
Anthracycline chemotherapeutics such as doxorubicin and daunorubicin remain indispensable in cancer treatment but possess narrow therapeutic windows, motivating the development of reliable molecular recognition elements for therapeutic drug monitoring, biosensing, and toxicity mitigation. Although an anthracycline aptamer has previously been obtained using immobilized daunorubicin, it lacks a well-defined secondary structure and exhibits poor affinity after truncation. Here, we employed capture-SELEX, which uses free target molecules in solution without immobilization, to isolate DNA aptamers that specifically recognize doxorubicin. The selection yielded three distinct sequence families with well-defined secondary structures and low-nanomolar affinities. Using intrinsic fluorescence quenching, isothermal titration calorimetry, and NMR spectroscopy, we rigorously distinguished specific aptamer recognition from nonspecific intercalation and demonstrated rapid, Mg2+-independent binding. The strongest aptamer, DOX-9, bound doxorubicin with a dissociation constant of 6 nM and also recognized daunorubicin with nanomolar affinity. Compared with the previously reported aptamer, the new sequences exhibit higher affinity, clearer structural features, and greater amenability to truncation. Importantly, they significantly inhibited doxorubicin uptake by HeLa cells, demonstrating potential as functional antidotes in addition to sensing elements. Together, these results establish a new generation of anthracycline aptamers and highlight capture-SELEX as an effective strategy for selecting aptamers against DNA-interacting small molecules.
Since the advent of systematic evolution of ligands by exponential enrichment (SELEX), numerous protein-binding aptamers have been reported, yet their binding characterizations are often less developed than those of small-molecule aptamers, limiting mechanistic understanding and practical applications. Here, we establi...
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Doxorubicin is an important chemotherapeutic agent, making its sensitive detection essential for therapeutic monitoring and food safety assessment. Although DNA aptamers exhibit high affinity and specificity toward doxorubicin, the absence of well-defined structural motifs often hampers the development of rapid, labe...
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A comprehensive summary of recent progress in studies on aptamer-based heterobifunctional degraders, with an emphasis on their design principles, biomedical applications, and therapeutic prospects is provided.
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