Bandi, V.G.* ; Luciano, M.P.* ; Saccomano, M. ; Patel, N.L.* ; Bischof, T.S. ; Lingg, J.G.P. ; Tsrunchev,P. ; Nix, M.N.* ; Ruehle, B.* ; Sanders, C.* ; Riffle, L.* ; Robinson, C.M.* ; Difilippantonio, S.* ; Kalen, J.D.* ; Resch-Genger, U.* ; Ivanic, J.* ; Bruns, O.T. ; Schnermann, M.J.*
Targeted multicolor in vivo imaging over 1,000 nm enabled by nonamethine cyanines.
Nat. Methods 19, 353–358 (2022)
Recent progress has shown that using wavelengths between 1,000 and 2,000 nm, referred to as the shortwave-infrared or near-infrared (NIR)-II range, can enable high-resolution in vivo imaging at depths not possible with conventional optical wavelengths. However, few bioconjugatable probes of the type that have proven invaluable for multiplexed imaging in the visible and NIR range are available for imaging these wavelengths. Using rational design, we have generated persulfonated indocyanine dyes with absorbance maxima at 872 and 1,072 nm through catechol-ring and aryl-ring fusion, respectively, onto the nonamethine scaffold. Multiplexed two-color and three-color in vivo imaging using monoclonal antibody and dextran conjugates in several tumor models illustrate the benefits of concurrent labeling of the tumor and healthy surrounding tissue and lymphatics. These efforts are enabled by complementary advances in a custom-built NIR/shortwave-infrared imaging setup and software package for multicolor real-time imaging.
Impact Factor
Scopus SNIP
Web of Science
Times Cited
Scopus
Cited By
Altmetric
Publication type
Article: Journal article
Document type
Scientific Article
Thesis type
Editors
Keywords
Indocyanine Green; Fluorescence; Surgery; Labels; Dye
Keywords plus
Language
english
Publication Year
2022
Prepublished in Year
HGF-reported in Year
2022
ISSN (print) / ISBN
1548-7091
e-ISSN
1548-7105
ISBN
Book Volume Title
Conference Title
Conference Date
Conference Location
Proceedings Title
Quellenangaben
Volume: 19,
Issue: 3,
Pages: 353–358
Article Number: ,
Supplement: ,
Series
Publisher
Nature Publishing Group
Publishing Place
New York, NY
Day of Oral Examination
0000-00-00
Advisor
Referee
Examiner
Topic
University
University place
Faculty
Publication date
0000-00-00
Application date
0000-00-00
Patent owner
Further owners
Application country
Patent priority
Reviewing status
Peer reviewed
Institute(s)
Helmholtz Pioneer Campus (HPC)
POF-Topic(s)
30205 - Bioengineering and Digital Health
Research field(s)
Pioneer Campus
PSP Element(s)
G-510001-001
Grants
Deutsche Forschungsgemeinschaft (German Research Foundation)
U.S. Department of Health & Human Services | National Institutes of Health (NIH)
Copyright
Erfassungsdatum
2022-04-28