Magnetic Micromotors with Spiky Gold Nanoshells as SERS Sensors for Thiram and Bacteria Detection.
Tao YangJianping ZhouYongkang WangBen FanJing QiaoLixiang ChenXiaoyu WangLingxiang GuoHong YangYan-Qing LuPublished in: Small (Weinheim an der Bergstrasse, Germany) (2024)
Surface-enhanced Raman scattering (SERS) is widely used in all kinds of detection due to its ultrahigh sensitivity and selectivity. Micromotors, when used as SERS sensors, or the so-called "hotspots on the fly", can combine both controlled mobility and SERS sensing capacity, and are ideal for versatile in situ detection. In this work, mobile SERS sensors are successfully fabricated by growing gold nanospikes onto magnetic microsphere surfaces. These mobile micromotors can act as normal SERS sensors, characterized by the trace detection of thiram, a highly toxic fungicide. The detection limit can reach 0.1 nM, as good as most other noble metal deposited substrates. With significant magnetic gradient forces, separation of pathogenic bacteria from bulk solution is achieved once these magnetic micromotors bind with bacterial cells. Manipulated propulsion of micromotors, on the other hand, enables them to approach and contact pathogenic bacterial cells on command and further acquire Raman spectra under a controlled degree of contact, a capability never seen with passive sensors. The robotic SERS sensors have demonstrated unique sensing characteristics with controlled manipulations along with discriminative detection between bacterial species.
Keyphrases
- label free
- gold nanoparticles
- sensitive detection
- loop mediated isothermal amplification
- raman spectroscopy
- real time pcr
- low cost
- induced apoptosis
- risk assessment
- oxidative stress
- cell death
- cystic fibrosis
- signaling pathway
- mass spectrometry
- high resolution
- cell proliferation
- candida albicans
- simultaneous determination