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  5. 3D imaging with enhanced transparency, signal-to-background ratios, and antigen detection using HyPer-3D

3D imaging with enhanced transparency, signal-to-background ratios, and antigen detection using HyPer-3D

File(s)
41916297.pdf (26.23 MB)
Permanent Link(s)
https://hdl.handle.net/1813/126873
Collections
Department of Medicine
Author
Choi, Tansol
Lacko, Lauretta A.
de Silva, Neranjan
Liang, Nang Kham Hsi
Liu, Ying
Jamies, Edgar A.
Evans, Todd
Hurtado, Romulo
Abstract

We developed HyPer-3D (hydrogen peroxide-NaN3-DMSO), a chemical treatment that addresses persistent challenges in 3D imaging of cleared tissues. Imaging across stem cell, zebrafish, and murine model systems demonstrated that HyPer-3D quenches tissue autofluorescence, increases signal-to-background ratios (SBRs) by 30×, potentiates optical clearing capacity by 6×, increases detection of poorly recognized antigens by 4.5×, and enables a 5× increase in fluorescent reporter detection, which are conversely often diminished in 3D imaging. These improvements enhanced multiplex interrogation of highly autofluorescent and fibrous organs, including previously undocumented nephron segments, cardiac conduction system elements, and diffuse spermatogonial stem cells. Optimization for human tissues, which remain among the most difficult to 3D imaging due to autofluorescence and structural density far exceeding those of commonly used animal tissues, yielded a 5× increase in SBRs and enabled multiplex imaging with cellular resolution. Collectively, HyPer-3D provides a robust approach for high-contrast 3D imaging of basic and clinical specimens.

Journal / Series
Cell reports methods
Volume & Issue
6(4)
Date Issued
2026-03-30
Publisher
Cell Press
Keywords
WCM Library Coordinated Deposit
•
Animals
•
Imaging, Three-Dimensional/methods
•
Humans
•
Zebrafish
•
Antigens/metabolism/analysis
•
Mice
•
Signal-To-Noise Ratio
•
Hydrogen Peroxide/chemistry
•
3D imaging
•
CP: imaging
•
autofluorescence
•
confocal microscopy
•
fluorescent reporters
•
human tissue imaging
•
light sheet microscopy
•
multiplex immunofluorescence
•
optical clearing
•
signal-to-backround ratio
•
volumetric imaging
Related DOI
https://doi.org/10.1016/j.crmeth.2026.101375
Previously Published as
Choi T, Lacko LA, de Silva N, Liang NKH, Liu Y, Jamies EA, Evans T, Hurtado R. 3D imaging with enhanced transparency, signal-to-background ratios, and antigen detection using HyPer-3D. Cell reports methods. 2026;6(4):101375. doi: 10.1016/j.crmeth.2026.101375. PMID: 41916297.
Rights
Attribution-NonCommercial-NoDerivatives 4.0 International
Rights URI
https://creativecommons.org/licenses/by-nc-nd/4.0/
Type
article

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