Detail publikačního výsledku

Micro/Nanorobots for Advanced Light-Based Biosensing and Imaging

NEETTIYATH, A.; PUMERA, M.

Originální název

Micro/Nanorobots for Advanced Light-Based Biosensing and Imaging

Anglický název

Micro/Nanorobots for Advanced Light-Based Biosensing and Imaging

Druh

Článek WoS

Originální abstrakt

Sensing and imaging of biomolecules are crucial to disease diagnosis, prognosis, and therapy where optical techniques have essential utility. Untethered and remotely controlled micro/nanorobots have shown promising sensing and imaging capabilities, especially in complex biological environments. In this review, how micro/nanorobots are used for optical biosensing and imaging while highlighting the significant developments in the field is discussed. Starting is done by exploring colorimetric biosensing methods enabled by micro/nanorobots. Significant advancements in surface-enhanced Raman spectroscopy-integrated micro/nanorobots are reviewed. Further, state-of-the-art optical bio-imaging applications by micro/nanorobots at in vitro intracellular level are highlighted. Novel in vivo bio-imaging assisted by optical micro/nanorobot sensors is examined. Furthermore, innovations in micro/nanorobots are assessed where motion augmentation is used as a detection mechanism, with applications in point-of-care molecular diagnostics. Finally, the challenges associated with micro/nanorobots-assisted advanced optical biosensing and imaging while discussing insights about potential research directions for this rapidly progressing field are summarized. This review highlights advances in micro/nanorobots-enabled light-based biosensing and imaging. Untethered and remotely controlled micro/nanorobots enable precision biosensing using colorimetric and surface-enhanced Raman spectroscopy methods. They also provide cutting-edge in vitro intracellular and in vivo bioimaging in complex biological environments and organs. Furthermore, micro/nanorobots facilitate the development of point-of-care optical biosensors, enhancing disease diagnosis and prognosis capabilities in medical applications. image

Anglický abstrakt

Sensing and imaging of biomolecules are crucial to disease diagnosis, prognosis, and therapy where optical techniques have essential utility. Untethered and remotely controlled micro/nanorobots have shown promising sensing and imaging capabilities, especially in complex biological environments. In this review, how micro/nanorobots are used for optical biosensing and imaging while highlighting the significant developments in the field is discussed. Starting is done by exploring colorimetric biosensing methods enabled by micro/nanorobots. Significant advancements in surface-enhanced Raman spectroscopy-integrated micro/nanorobots are reviewed. Further, state-of-the-art optical bio-imaging applications by micro/nanorobots at in vitro intracellular level are highlighted. Novel in vivo bio-imaging assisted by optical micro/nanorobot sensors is examined. Furthermore, innovations in micro/nanorobots are assessed where motion augmentation is used as a detection mechanism, with applications in point-of-care molecular diagnostics. Finally, the challenges associated with micro/nanorobots-assisted advanced optical biosensing and imaging while discussing insights about potential research directions for this rapidly progressing field are summarized. This review highlights advances in micro/nanorobots-enabled light-based biosensing and imaging. Untethered and remotely controlled micro/nanorobots enable precision biosensing using colorimetric and surface-enhanced Raman spectroscopy methods. They also provide cutting-edge in vitro intracellular and in vivo bioimaging in complex biological environments and organs. Furthermore, micro/nanorobots facilitate the development of point-of-care optical biosensors, enhancing disease diagnosis and prognosis capabilities in medical applications. image

Klíčová slova

biosensing; intracellular; in vivo imaging; micro/nanorobots; optical; SERS

Klíčová slova v angličtině

biosensing; intracellular; in vivo imaging; micro/nanorobots; optical; SERS

Autoři

NEETTIYATH, A.; PUMERA, M.

Rok RIV

2026

Vydáno

01.02.2025

Nakladatel

WILEY-V C H VERLAG GMBH

Místo

WEINHEIM

ISSN

1616-3028

Periodikum

Advanced functional materials

Svazek

35

Číslo

8

Stát

Spolková republika Německo

Strany počet

19

URL

BibTex

@article{BUT191216,
  author="Aparna {Neettiyath} and Martin {Pumera}",
  title="Micro/Nanorobots for Advanced Light-Based Biosensing and Imaging",
  journal="Advanced functional materials",
  year="2025",
  volume="35",
  number="8",
  pages="19",
  doi="10.1002/adfm.202415875",
  issn="1616-301X",
  url="https://onlinelibrary.wiley.com/doi/10.1002/adfm.202415875"
}