High-Precision Single-Cell microRNA Therapy by a Functional Nanopipette with Sensitive Photoelectrochemical Feedback.

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State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.

Published: March 2024

AI Article Synopsis

  • * The engineered nanopipette allows for the direct administration of a miR-21 inhibitor, with results showing that a specific dose can trigger noticeable therapeutic effects, monitored by a photoelectrochemical sensing interface that detects changes in caspase-3 levels.
  • * The findings emphasize the potential for personalized miR therapy, as they offer insights into how controlled dosages of specific drugs can effectively treat cancer cells, paving the way for advanced clinical applications tailored to individual patients.

Article Abstract

This work proposes the concept of single-cell microRNA (miR) therapy and proof-of-concept by engineering a nanopipette for high-precision miR-21-targeted therapy in a single HeLa cell with sensitive photoelectrochemical (PEC) feedback. Targeting the representative oncogenic miR-21, the as-functionalized nanopipette permits direct intracellular drug administration with precisely controllable dosages, and the corresponding therapeutic effects can be sensitively transduced by a PEC sensing interface that selectively responds to the indicator level of cytosolic caspase-3. The experimental results reveal that injection of ca. 4.4 × 10 mol miR-21 inhibitor, i.e., 26488 copies, can cause the obvious therapeutic action in the targeted cell. This work features a solution to obtain the accurate knowledge of how a certain miR-drug with specific dosages treats the cells and thus provides an insight into futuristic high-precision clinical miR therapy using personalized medicine, provided that the prerequisite single-cell experiments are courses of personalized customization.

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Source
http://dx.doi.org/10.1002/smll.202307067DOI Listing

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