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◆ bioRxiv : the preprint server for biology2026-07-27

Compact red-shifted near-infrared fluorescent proteins enable deep-tissue SWIR imaging with in vivo optical clearing.

Kyrylo Yu Manoilov, Yirui Xu, Jinhuan Luo, Olena S Oliinyk, Erin Carey, Kateryna O Tokarchuk, Jinghang Zhang, Guosong Hong, Axel Nimmerjahn, Junjie Yao, Vladislav V Verkhusha

原始摘要(英文原文)· Original abstract
Compact near-infrared (NIR) fluorescent proteins (FPs) with red-shifted emission are needed for deep-tissue short-wavelength infrared (SWIR) imaging. We engineered a GAF domain from the JSC1 cyanobacteriochrome of thermophilic Leptolyngbya sp. into three monomeric, biliverdin-binding NIR FPs of 19.1 kDa: miRFP729nano, miRFP732nano and miRFP735nano, with excitation/emission maxima of 714/729, 716/732 and 719/735 nm, respectively. Their off-peak fluorescence beyond 1000 nm was several-fold higher than that of miRFP718nano previously used for SWIR imaging. miRFP732nano functioned as a fusion tag, a component of target-stabilized nanobodies, and a reporter of NF-kappaB and AP-1 transcriptional activities. It enabled single-laser, dual-color three-photon imaging with EGFP to depths of ~950 micrometers in cortex and ~300 micrometers in spinal cord. In mice, miRFP732nano supported SWIR imaging of skeletal muscle, inflammatory signaling and intracellular targets. Combining SWIR detection with biocompatible 4-aminoantipyrine-based in vivo tissue clearing enhanced signal and image sharpness. These red-shifted NIR FPs expand the genetically encoded toolkit for deep-tissue imaging.
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Compact red-shifted near-infrared fluorescent proteins enable deep-tissue SWIR imaging with in vivo optical clearing. — 科研速览 Science Skim