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Recent progress in the development of upconversion nanomaterials in bioimaging and disease treatment. | LitMetric

AI Article Synopsis

  • Multifunctional lanthanide-based upconversion nanoparticles (UCNPs) convert low-energy photons into high-energy ones, making them valuable for materials science and biomedical applications due to their unique properties like high detection sensitivity and low autofluorescence.
  • The review discusses the main components and luminescence mechanisms of UCNPs, compares various synthesis strategies, and highlights their functionalization for applications in bioimaging, drug delivery, and photodynamic therapy.
  • Lastly, it addresses the potential future applications of UCNPs in materials science and biomedicine while outlining current challenges in their use, providing insights for cancer research.

Article Abstract

Multifunctional lanthanide-based upconversion nanoparticles (UCNPs), which feature efficiently convert low-energy photons into high-energy photons, have attracted considerable attention in the domain of materials science and biomedical applications. Due to their unique photophysical properties, including light-emitting stability, excellent upconversion luminescence efficiency, low autofluorescence, and high detection sensitivity, and high penetration depth in samples, UCNPs have been widely applied in biomedical applications, such as biosensing, imaging and theranostics. In this review, we briefly introduced the major components of UCNPs and the luminescence mechanism. Then, we compared several common design synthesis strategies and presented their advantages and disadvantages. Several examples of the functionalization of UCNPs were given. Next, we detailed their biological applications in bioimaging and disease treatment, particularly drug delivery and photodynamic therapy, including antibacterial photodynamic therapy. Finally, the future practical applications in materials science and biomedical fields, as well as the remaining challenges to UCNPs application, were described. This review provides useful practical information and insights for the research on and application of UCNPs in the field of cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7596946PMC
http://dx.doi.org/10.1186/s12951-020-00713-3DOI Listing

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