AI Article Synopsis

  • - SERS (Surface Enhanced Resonance Raman) is an advanced technique that boosts the sensitivity of Raman spectroscopy using noble metal nanoparticles, but existing SERS-NPs can clump together in physiological environments, leading to less effective results.
  • - A new one-pot synthesis method has been developed to create stable and uniformly sized SERS-NPs, which enhances detection sensitivity and allows for the identification of different SERS-NPs through a specialized algorithm.
  • - A novel liposome-based method was introduced to attach a carbohydrate ligand to the SERS-NPs, increasing their ability to bind to the CD44 receptor in tumor cells; this improvement enabled real-time imaging of breast cancer in mice during surgery, showcasing significant potential for medical applications. *

Article Abstract

Surface Enhanced Resonance Raman (SERS) is a powerful optical technique, which can help enhance the sensitivity of Raman spectroscopy aided by noble metal nanoparticles (NPs). However, current SERS-NPs are often suboptimal, which can aggregate under physiological conditions with much reduced SERS enhancement. Herein, a robust one-pot method has been developed to synthesize SERS-NPs with more uniform core diameters of 50 nm, which is applicable to both non-resonant and resonant Raman dyes. The resulting SERS-NPs are colloidally stable and bright, enabling NP detection with low-femtomolar sensitivity. An algorithm has been established, which can accurately unmix multiple types of SERS-NPs enabling potential multiplex detection. Furthermore, a new liposome-based approach has been developed to install a targeting carbohydrate ligand, i.e., hyaluronan, onto the SERS-NPs bestowing significantly enhanced binding affinity to its biological receptor CD44 overexpressed on tumor cell surface. The liposomal HA-SERS-NPs enabled visualization of spontaneously developed breast cancer in mice in real time guiding complete surgical removal of the tumor, highlighting the translational potential of these new glyco-SERS-NPs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11340905PMC
http://dx.doi.org/10.1002/smsc.202300154DOI Listing

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