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Advanced deep-tissue imaging and manipulation enabled by biliverdin reductase knockout.

Publication ,  Journal Article
Kasatkina, LA; Ma, C; Sheng, H; Lowerison, M; Menozzi, L; Baloban, M; Tang, Y; Xu, Y; Humayun, L; Vu, T; Song, P; Yao, J; Verkhusha, VV
Published in: bioRxiv
October 18, 2024

We developed near-infrared (NIR) photoacoustic and fluorescence probes, as well as optogenetic tools from bacteriophytochromes, and enhanced their performance using biliverdin reductase-A knock-out model (Blvra-/-). Blvra-/- elevates endogenous heme-derived biliverdin chromophore for bacteriophytochrome-derived NIR constructs. Consequently, light-controlled transcription with IsPadC-based optogenetic tool improved up to 25-fold compared to wild-type cells, with 100-fold activation in Blvra-/- neurons. In vivo , light-induced insulin production in Blvra-/- reduced blood glucose in diabetes by ∼60%, indicating high potential for optogenetic therapy. Using 3D photoacoustic, ultrasound, and two-photon fluorescence imaging, we overcame depth limitations of recording NIR probes. We achieved simultaneous photoacoustic imaging of DrBphP in neurons and super-resolution ultrasound localization microscopy of blood vessels ∼7 mm deep in the brain, with intact scalp and skull. Two-photon microscopy provided cell-level resolution of miRFP720-expressing neurons ∼2.2 mm deep. Blvra-/- significantly enhances efficacy of biliverdin-dependent NIR systems, making it promising platform for interrogation and manipulation of biological processes.

Duke Scholars

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

October 18, 2024

Location

United States
 

Citation

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Chicago
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Kasatkina, L. A., Ma, C., Sheng, H., Lowerison, M., Menozzi, L., Baloban, M., … Verkhusha, V. V. (2024). Advanced deep-tissue imaging and manipulation enabled by biliverdin reductase knockout. BioRxiv. https://doi.org/10.1101/2024.10.18.619161
Kasatkina, Ludmila A., Chenshuo Ma, Huaxin Sheng, Matthew Lowerison, Luca Menozzi, Mikhail Baloban, Yuqi Tang, et al. “Advanced deep-tissue imaging and manipulation enabled by biliverdin reductase knockout.BioRxiv, October 18, 2024. https://doi.org/10.1101/2024.10.18.619161.
Kasatkina LA, Ma C, Sheng H, Lowerison M, Menozzi L, Baloban M, et al. Advanced deep-tissue imaging and manipulation enabled by biliverdin reductase knockout. bioRxiv. 2024 Oct 18;
Kasatkina, Ludmila A., et al. “Advanced deep-tissue imaging and manipulation enabled by biliverdin reductase knockout.BioRxiv, Oct. 2024. Pubmed, doi:10.1101/2024.10.18.619161.
Kasatkina LA, Ma C, Sheng H, Lowerison M, Menozzi L, Baloban M, Tang Y, Xu Y, Humayun L, Vu T, Song P, Yao J, Verkhusha VV. Advanced deep-tissue imaging and manipulation enabled by biliverdin reductase knockout. bioRxiv. 2024 Oct 18;

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

October 18, 2024

Location

United States