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September 23, 2025Biosensors0 citationsOpen Access

Rolling Circle Amplification as a Molecular Tool for Spatially Resolved Signal Amplification in Single Molecule Counting Assay

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JPJuhwan Park

Key Points

  • Rolling circle amplification improves sensitivity and multiplex capability in biosensing applications, including single molecule counting.
  • Studies indicate that RCA can localize amplified signals, addressing limitations in traditional biosensing methods for sub-cellular analysis.
  • This review discusses the potential expansion of RCA for quantitative analysis of single cells and extracellular vesicles.
  • Current limitations of RCA in biosensing technologies are examined, emphasizing the need for further research and optimization.

Abstract

There have been rising interests in ultra-sensitive biosensing technologies for early diagnosis and prognosis monitoring of infectious diseases, cancers, and neurodegenerative diseases. Digital signal readout strategy represented by digital ELISA or digital PCR, advanced biosensing field enormously, which enables detection of biomolecules under the detection limit of conventional biosensing methods. However, due to the need for compartmentalization and limited multiplex capability, it has been hurdled for utilization in applications requiring hierarchical resolution analysis such as sub-cellular molecules or molecular cargo of single cells or single extracellular vesicles (EVs). Rolling circle amplification (RCA), an isothermal DNA amplification method enabling localization of an amplified signal, can eliminate the need for compartmentalization and increase multiplex capability. It also has potential to expand applications of single molecule counting assay for understanding hierarchy of biological systems. In this review, recent advances in RCA-based single molecule counting assay are overviewed and their applications in single cells and single EVs quantitative analysis are discussed. Furthermore, the limitations and outlook of RCA-based single molecule counting assay are highlighted.

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Cite This Study

Juhwan Park (2025) studied this question.

synapsesocial.com/papers/68d473ad31b076d99fa6c2a3https://doi.org/10.3390/bios15090628
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