4.8 Article

A Silk-Based Functionalization Architecture for Single Fiber Imaging and Sensing

期刊

ADVANCED FUNCTIONAL MATERIALS
卷 32, 期 3, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.202010713

关键词

optical coherence tomography; optical fibers; peptides; pH sensing; silk fibroin

资金

  1. Australian Research Council (ARC) Centre of Excellence for Nanoscale BioPhotonics [CE140100003]
  2. Cook Medical Pty Ltd.
  3. ARC Linkage grant [LP 110200736, LP150100657]
  4. MF and MH Joyner
  5. Patricia and Norman Polglase
  6. National Heart Foundation [102093]
  7. NHMRC Ideas grant [2001646]
  8. CNBP
  9. Robinson Research Institute
  10. RMIT Vice Chancellor's Research Fellowship
  11. Mid-career Fellowship from the Hospital Research Foundation [C-MCF-58-2019]
  12. NHMRC [APP1178912, 2002254]
  13. ANFF utilizing Commonwealth and SA State Government
  14. National Health and Medical Research Council of Australia [2002254, 2001646] Funding Source: NHMRC
  15. Australian Research Council [LP150100657] Funding Source: Australian Research Council

向作者/读者索取更多资源

A new fiber functionalization architecture enables simultaneous imaging and sensing, providing significant insights into complex biological systems.
A new fiber functionalization architecture for single-fiber imaging and sensing is presented. 5(6)Carboxy-seminaphthorhodafluor-2 (a fluorescent pH sensor) is attached to a silk-binding peptide and the complex added to aqueous silk fibroin protein. These bind with a K-d of 36 mu M as determined by a fluorescence polarization assay. The fiber is dip-coated into the silk and peptide mixture, and scanning electron microscopy images reveal a uniform silk coating on the fiber tip. The coating is stable to repeated washes and does not affect the imaging light emitted from the fiber, which allows concurrent optical coherence tomography (OCT) imaging and pH sensing. Oocytes are metabolically stimulated with CoCl2 to produce lactic acid, and a pH reduction of 0.04 is measured using the probe. The distance between fiber tip and oocyte is monitored by simultaneous OCT acquisitions to precisely position the probe. Lastly, OCT imaging of an ovary revealed the presence/absence of an oocyte within a follicle, an important step toward improving patient outcomes during in vitro fertilization, by limiting the number of invasive follicle punctures required. These results demonstrate the utility of this new coating to enable simultaneous OCT imaging and sensing, which provides significant insight into complex biological systems.

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