4.7 Article

Multi-wavelength photoacoustic imaging of inducible tyrosinase reporter gene expression in xenograft tumors

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SCIENTIFIC REPORTS
卷 4, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep05329

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资金

  1. NSERC [355544-2008, 375340-2009, STPGP 396444, RGPIN 355544]
  2. Terry-Fox Foundation and the Canadian Cancer Society [TFF 019237, TFF 019240, CCS 2011-700718, CCS 702032]
  3. Alberta Cancer Research Institute [ACB 23728]
  4. Prostate Cancer Canada [PCC MVBRDG D2013-40]
  5. Alberta Innovates Health Solutions (AIHS) CRIO Team Grants
  6. Cardiovascular Medical Research and Education Fund
  7. Canada Foundation for Innovation, Leaders Opportunity Fund [18472]
  8. Alberta Advanced Education & Technology, Small Equipment Grants Program [URSI09007SEG]
  9. nanoBridge and Microsystems Technology Research Initiative (MSTRI) [RES0003166]

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Photoacoustic imaging is an emerging hybrid imaging technology capable of breaking through resolution limits of pure optical imaging technologies imposed by optical-scattering to provide fine-resolution optical contrast information in deep tissues. We demonstrate the ability of multi-wavelength photoacoustic imaging to estimate relative gene expression distributions using an inducible expression system and co-register images with hemoglobin oxygen saturation estimates and micro-ultrasound data. Tyrosinase, the rate-limiting enzyme in melanin production, is used as a reporter gene owing to its strong optical absorption and enzymatic amplification mechanism. Tetracycline-inducible melanin expression is turned on via doxycycline treatment in vivo. Serial multi-wavelength imaging reveals very low estimated melanin expression in tumors prior to doxycycline treatment or in tumors with no tyrosinase gene present, but strong signals after melanin induction in tumors tagged with the tyrosinase reporter. The combination of new inducible reporters and high-resolution photoacoustic and micro-ultrasound technology is poised to bring a new dimension to the study of gene expression in vivo.

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