Literature DB >> 24008818

High-sensitivity, real-time, ratiometric imaging of surface-enhanced Raman scattering nanoparticles with a clinically translatable Raman endoscope device.

Ellis Garai1, Steven Sensarn, Cristina L Zavaleta, Dominique Van de Sompel, Nathan O Loewke, Michael J Mandella, Sanjiv S Gambhir, Christopher H Contag.   

Abstract

Topical application and quantification of targeted, surface-enhanced Raman scattering (SERS) nanoparticles offer a new technique that has the potential for early detection of epithelial cancers of hollow organs. Although less toxic than intravenous delivery, the additional washing required to remove unbound nanoparticles cannot necessarily eliminate nonspecific pooling. Therefore, we developed a real-time, ratiometric imaging technique to determine the relative concentrations of at least two spectrally unique nanoparticle types, where one serves as a nontargeted control. This approach improves the specific detection of bound, targeted nanoparticles by adjusting for working distance and for any nonspecific accumulation following washing. We engineered hardware and software to acquire SERS signals and ratios in real time and display them via a graphical user interface. We report quantitative, ratiometric imaging with nanoparticles at pM and sub-pM concentrations and at varying working distances, up to 50 mm. Additionally, we discuss optimization of a Raman endoscope by evaluating the effects of lens material and fiber coating on background noise, and theoretically modeling and simulating collection efficiency at various working distances. This work will enable the development of a clinically translatable, noncontact Raman endoscope capable of rapidly scanning large, topographically complex tissue surfaces for small and otherwise hard to detect lesions.

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Mesh:

Year:  2013        PMID: 24008818      PMCID: PMC3763230          DOI: 10.1117/1.JBO.18.9.096008

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  36 in total

1.  Hand-held spectroscopic device for in vivo and intraoperative tumor detection: contrast enhancement, detection sensitivity, and tissue penetration.

Authors:  Aaron M Mohs; Michael C Mancini; Sunil Singhal; James M Provenzale; Brian Leyland-Jones; May D Wang; Shuming Nie
Journal:  Anal Chem       Date:  2010-10-06       Impact factor: 6.986

2.  Micro-optical fiber probe for use in an intravascular Raman endoscope.

Authors:  Yuichi Komachi; Hidetoshi Sato; Katsuo Aizawa; Hideo Tashiro
Journal:  Appl Opt       Date:  2005-08-01       Impact factor: 1.980

3.  Rapid near-infrared Raman spectroscopy system for real-time in vivo skin measurements.

Authors:  Z Huang; H Zeng; I Hamzavi; D I McLean; H Lui
Journal:  Opt Lett       Date:  2001-11-15       Impact factor: 3.776

4.  A Raman-based endoscopic strategy for multiplexed molecular imaging.

Authors:  Cristina L Zavaleta; Ellis Garai; Jonathan T C Liu; Steven Sensarn; Michael J Mandella; Dominique Van de Sompel; Shai Friedland; Jacques Van Dam; Christopher H Contag; Sanjiv S Gambhir
Journal:  Proc Natl Acad Sci U S A       Date:  2013-05-23       Impact factor: 11.205

5.  Development and preliminary results of an endoscopic Raman probe for potential in vivo diagnosis of lung cancers.

Authors:  Michael A Short; Stephen Lam; Annette McWilliams; Jianhua Zhao; Harvey Lui; Haishan Zeng
Journal:  Opt Lett       Date:  2008-04-01       Impact factor: 3.776

6.  Near-infrared Raman spectroscopy for in vitro detection of cervical precancers.

Authors:  A Mahadevan-Jansen; M F Mitchell; N Ramanujam; A Malpica; S Thomsen; U Utzinger; R Richards-Kortum
Journal:  Photochem Photobiol       Date:  1998-07       Impact factor: 3.421

7.  Kagome hollow-core photonic crystal fiber probe for Raman spectroscopy.

Authors:  Petru Ghenuche; Silke Rammler; Nicolas Y Joly; Michael Scharrer; Michael Frosz; Jérôme Wenger; Philip St J Russell; Hervé Rigneault
Journal:  Opt Lett       Date:  2012-11-01       Impact factor: 3.776

8.  The fate and toxicity of Raman-active silica-gold nanoparticles in mice.

Authors:  Avnesh S Thakor; Richard Luong; Ramasamy Paulmurugan; Frank I Lin; Paul Kempen; Cristina Zavaleta; Pauline Chu; Tarik F Massoud; Robert Sinclair; Sanjiv S Gambhir
Journal:  Sci Transl Med       Date:  2011-04-20       Impact factor: 17.956

9.  Noninvasive Raman spectroscopy in living mice for evaluation of tumor targeting with carbon nanotubes.

Authors:  C Zavaleta; A de la Zerda; Z Liu; S Keren; Z Cheng; M Schipper; X Chen; H Dai; S S Gambhir
Journal:  Nano Lett       Date:  2008-08-07       Impact factor: 11.189

10.  Near-infrared Raman spectroscopy for optical diagnosis of lung cancer.

Authors:  Zhiwei Huang; Annette McWilliams; Harvey Lui; David I McLean; Stephen Lam; Haishan Zeng
Journal:  Int J Cancer       Date:  2003-12-20       Impact factor: 7.396

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  32 in total

1.  Detection of Premalignant Gastrointestinal Lesions Using Surface-Enhanced Resonance Raman Scattering-Nanoparticle Endoscopy.

Authors:  Stefan Harmsen; Stephan Rogalla; Ruimin Huang; Massimiliano Spaliviero; Volker Neuschmelting; Yoku Hayakawa; Yoomi Lee; Yagnesh Tailor; Ricardo Toledo-Crow; Jeon Woong Kang; Jason M Samii; Hazem Karabeber; Ryan M Davis; Julie R White; Matt van de Rijn; Sanjiv S Gambhir; Christopher H Contag; Timothy C Wang; Moritz F Kircher
Journal:  ACS Nano       Date:  2019-02-04       Impact factor: 15.881

2.  High-speed Raman-encoded molecular imaging of freshly excised tissue surfaces with topically applied SERRS nanoparticles.

Authors:  Yu Winston Wang; Qian Yang; Soyoung Kang; Matthew A Wall; Jonathan T C Liu
Journal:  J Biomed Opt       Date:  2018-04       Impact factor: 3.170

3.  A targeted approach to cancer imaging and therapy.

Authors:  Chun Li
Journal:  Nat Mater       Date:  2014-02       Impact factor: 43.841

4.  Comprehensive spectral endoscopy of topically applied SERS nanoparticles in the rat esophagus.

Authors:  Yu W Wang; Altaz Khan; Steven Y Leigh; Danni Wang; Ye Chen; Daphne Meza; Jonathan T C Liu
Journal:  Biomed Opt Express       Date:  2014-08-01       Impact factor: 3.732

5.  Nanomedicine for Spontaneous Brain Tumors: A Companion Clinical Trial.

Authors:  Hamed Arami; Chirag B Patel; Steven J Madsen; Peter J Dickinson; Ryan M Davis; Yitian Zeng; Beverly K Sturges; Kevin D Woolard; Frezghi G Habte; Demir Akin; Robert Sinclair; Sanjiv S Gambhir
Journal:  ACS Nano       Date:  2019-02-04       Impact factor: 15.881

6.  Multimodal assessment of SERS nanoparticle biodistribution post ingestion reveals new potential for clinical translation of Raman imaging.

Authors:  Jos L Campbell; Elliott D SoRelle; Ohad Ilovich; Orly Liba; Michelle L James; Zhen Qiu; Valerie Perez; Carmel T Chan; Adam de la Zerda; Cristina Zavaleta
Journal:  Biomaterials       Date:  2017-04-28       Impact factor: 12.479

7.  Rapid ratiometric biomarker detection with topically applied SERS nanoparticles.

Authors:  Yu Winston Wang; Altaz Khan; Madhura Som; Danni Wang; Ye Chen; Steven Y Leigh; Daphne Meza; Patrick Z McVeigh; Brian C Wilson; Jonathan T C Liu
Journal:  Technology (Singap World Sci)       Date:  2014-06-01

8.  Multiplexed Molecular Imaging of Fresh Tissue Surfaces Enabled by Convection-Enhanced Topical Staining with SERS-Coded Nanoparticles.

Authors:  Yu W Wang; Josh D Doerksen; Soyoung Kang; Daniel Walsh; Qian Yang; Daniel Hong; Jonathan T C Liu
Journal:  Small       Date:  2016-08-29       Impact factor: 13.281

9.  Dual-Modality Surface-Enhanced Resonance Raman Scattering and Multispectral Optoacoustic Tomography Nanoparticle Approach for Brain Tumor Delineation.

Authors:  Volker Neuschmelting; Stefan Harmsen; Nicolas Beziere; Hannah Lockau; Hsiao-Ting Hsu; Ruimin Huang; Daniel Razansky; Vasilis Ntziachristos; Moritz F Kircher
Journal:  Small       Date:  2018-05-04       Impact factor: 13.281

10.  Surgical Guidance via Multiplexed Molecular Imaging of Fresh Tissues Labeled with SERS-Coded Nanoparticles.

Authors:  Yu Wang; Soyoung Kang; Josh D Doerksen; Adam K Glaser; Jonathan T C Liu
Journal:  IEEE J Sel Top Quantum Electron       Date:  2016-03-21       Impact factor: 4.544

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