研究目的
To review and highlight signal enhancement strategies for lateral flow assays (LFA) that utilize laser excitation of plasmonic nanomaterials, aiming to improve the sensitivity and quantification of LFA without modifying its current design.
研究成果
The review concludes that laser-induced signal amplification techniques on GNPs-based LFA have shown improved analytical performance upon the sensing of analytes. These strategies are straightforward and can be readily implemented on commercially available LFA kits, offering promising prospects for highly sensitive point-of-care diagnostics.
研究不足
The limitations include the need for special design of SERS tags with strongly enhanced local electromagnetic field, the trade-off between signal intensity and data acquisition settings, and the requirement for bulky instrumentation for photothermal-related detection that needs further improvement with lower-cost components.