4.8 Article

Diagnosis of immunomarkers in vivo via multiplexed surface enhanced Raman spectroscopy with gold nanostars

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NANOSCALE
卷 10, 期 27, 页码 13092-13105

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c8nr01478g

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资金

  1. American Cancer Society [IRG-58-009-56]
  2. National Center for Advancing Translational Sciences CTSA award [UL1TR000445]
  3. CDMRP Peer reviewed Cancer research program [W81XWH-18-1-0139]
  4. National Science Foundation Graduate Research Fellowship Program [1445197]
  5. National Science Foundation [CMMI-1634856]
  6. NSF Graduate Research Fellowship
  7. National Institute of Health NRSA F31 Fellowship
  8. Vanderbilt's Trans Institutional Programs grant: Materials Durability and Environmental Research Facilities Hub
  9. NSF [EPS 1004083]
  10. NIH [CA68485, DK20593, DK58404, DK59637, EY08126]

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In this work, we demonstrate the targeted diagnosis of immunomarker programmed death ligand 1 (PD-L1) and simultaneous detection of epidermal growth factor receptor (EGFR) in breast cancer tumors in vivo using gold nanostars (AuNS) with multiplexed surface enhanced Raman spectroscopy (SERS). Realtime longitudinal tracking with SERS demonstrated maximum accumulation of AuNS occurred 6 h post intravenous (IV) delivery, enabling detection of both biomarkers simultaneously. Raman signal correlating to both PD-L1 and EGFR decreased by similar to 30% in control tumors where receptors were pre-blocked prior to AuNS delivery, indicating both the sensitivity and specificity of SERS in distinguishing tumors with different levels of PD-L1 and EGFR expression. Our in vivo study was combined with the first demonstration of ex vivo SERS spatial maps of whole tumor lesions that provided both a qualitative and quantitative assessment of biomarker status with near cellular-level resolution. High resolution SERS maps also provided an overview of AuNS distribution in tumors which correlated well with the vascular density. Mass spectrometry showed AuNS accumulation in tumor and liver, and clearance via spleen, and electron microscopy revealed AuNS were endocytosed in tumors, Kupffer cells in the liver, and macrophages in the spleen. This study demonstrates that SERS-based diagnosis mediated by AuNS provides an accurate measure of multiple biomarkers both in vivo and ex vivo, which will ultimately enable a clinically-translatable platform for patient-tailored immunotherapies and combination treatments.

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