Nano Letters · 2021 · 41 citations · 30 references
NanomedicineSurface-enhanced Raman SpectroscopyEngineeringProtein NanoparticlesNanomaterialsNanotechnologyNanobiotechnologyNanocomposite ScaffoldsDrug DiffusionDrug Diffusion ProfilesSurface-enhanced Raman ScatteringBiofabricationNano-drug DeliveryBiomedical EngineeringBiophysicsCancer Engineering
Monitoring dynamic processes in complex cellular environments requires the integration of uniformly distributed detectors within such three-dimensional (3D) networks, to an extent that the sensor could provide real-time information on nearby perturbations in a non-invasive manner. In this context, the development of 3D-printed structures that can function as both sensors and cell culture platforms emerges as a promising strategy, not only for mimicking a specific cell niche but also toward identifying its characteristic physicochemical conditions, such as concentration gradients. We present herein a 3D cancer model that incorporates a hydrogel-based scaffold containing gold nanorods. In addition to sustaining cell growth, the printed nanocomposite inks display the ability to uncover drug diffusion profiles by surface-enhanced Raman scattering, with high spatiotemporal resolution. We additionally demonstrate that the acquired information could pave the way to designing novel strategies for drug discovery in cancer therapy, through correlation of drug diffusion with cell death.
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Present and Future of Surface-Enhanced Raman Scattering
Judith Langer, Dorleta Jiménez de Aberasturi, Javier Aizpurua et al. · ACS Nano · 2019 · 3.6K citations · Full text
Nanostructured Metal Surfaces, Engineering, Metal Nanoparticles +14
Printing three-dimensional tissue analogues with decellularized extracellular matrix bioink
Falguni Pati, Jinah Jang, Dong-Heon Ha et al. · Nature Communications · 2014 · 1.8K citations · Full text
Fluorescent probes for sensing and imaging
Tasuku Ueno, Tetsuo Nagano · Nature Methods · 2011 · 619 citations
Fluorescence Microscopy, Engineering, Fluorescence Imaging +6