4.8 Article

Red-Blood-Cell Waveguide as a Living Biosensor and Micromotor

Journal

ADVANCED FUNCTIONAL MATERIALS
Volume 29, Issue 50, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.201905568

Keywords

biosensors; micromotors; optical fibers; optical force; waveguides

Funding

  1. National Natural Science Foundation of China [61905092, 11904134, 11904132, 11774135, 11874183, 61827822]
  2. Fundamental Research Funds for the Central Universities [11619321, 21618301]
  3. PhD Start-up Fund of Natural Science Foundation of Guangdong Province [2018A030310501]

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With great potential in intelligent sensing and actuating systems, biosensors and micromotors are expected to be powerful instruments for early diagnosis and drug delivery in precision medicine. However, it is difficult to ensure the synthetic biosensors and micromotors are compatible with biosystems because of their exogenous building blocks. Biocompatible biosensors and micromotors assembled are reported from living red blood cells (RBCs) optically bound into a waveguide using fiber probes. By monitoring light propagation of the RBC waveguide, the pH of blood solution is detected in real time with an accuracy of 0.05. This can be used for the diagnosis of pH-related disorders of the blood. After diagnosis, optical torque is exerted on the RBC waveguide, allowing it to rotate as a micromotor and transport microparticles to a target region. The RBC waveguide is then constructed inside zebrafish blood vessels to validate in vivo application. The living biosensors and micromotors are expected to provide a smart platform for precise biosensing, medical analysis, and drug delivery.

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