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Super-resolution fluorescent materials: an insight into design and bioimaging applications

期刊

CHEMICAL SOCIETY REVIEWS
卷 45, 期 17, 页码 4651-4667

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5cs00875a

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资金

  1. National Basic Research Program of China [2015CB352005]
  2. National Natural Science Foundation of China [61525503, 61378091, 21406125]
  3. Guangdong Natural Science Foundation Innovation Team [2014A030312008]
  4. Hong Kong, Macao and Taiwan cooperation innovation platform & major projects of international cooperation in Colleges and Universities in Guangdong Province [2015KGJHZ002]
  5. Basic Science Research Program project grants from National Research Foundation of Korea [20100020209]

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Living organisms are generally composed of complex cellular processes which persist only within their native environments. To enhance our understanding of the biological processes lying within complex milieus, various techniques have been developed. Specifically, the emergence of super-resolution microscopy has generated a renaissance in cell biology by redefining the existing dogma towards nanoscale cell dynamics, single synaptic vesicles, and other complex bioprocesses by overcoming the diffraction-imposed resolution barrier that is associated with conventional microscopy techniques. Besides the typical technical reliance on the optical framework and computational algorithm, super-resolution imaging microscopy resorts largely to fluorescent materials with special photophysical properties, including fluorescent proteins, organic fluorophores and nanomaterials. In this tutorial review article, with the emphasis on cell biology, we summarize the recent developments in fluorescent materials being utilized in various super-resolution techniques with successful integration into bio-imaging applications. Fluorescent proteins (FP) applied in super-resolution microscopy will not be covered herein as it has already been well summarized; additionally, we demonstrate the breadth of opportunities offered from a future perspective.

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