Sorbonne Université, École Normale Supérieure, Université PSL, CNRS, Laboratoire des Biomolécules, LBM, Paris, 75005, France.
Institut de Biologie Paris Seine, plateforme imagerie photonique I2PS (FR3631), Sorbonne Université, CNRS, Paris, 75005, France.
Adv Sci (Weinh). 2024 Aug;11(32):e2404354. doi: 10.1002/advs.202404354. Epub 2024 Jun 20.
Fluorescence lifetime imaging microscopy (FLIM) opens new dimensions for highly multiplexed imaging in live cells and organisms using differences in fluorescence lifetime to distinguish spectrally identical fluorescent probes. Here, a set of fluorescence-activating and absorption-shifting tags (FASTs) capable of modulating the fluorescence lifetime of embedded fluorogenic 4-hydroxybenzylidene rhodanine (HBR) derivatives is described. It is shown that changes in the FAST protein sequence can vary the local environment of the chromophore and lead to significant changes in fluorescence lifetime. These fluorescence lifetime-modulating tags enable multiplexed imaging of up to three targets in one spectral channel using a single HBR derivative in live cells and live zebrafish larvae. The combination of fluorescence lifetime multiplexing with spectral multiplexing allows to successfully image six targets in live cells, opening great prospects for multicolor fluorescence lifetime multiplexing.
荧光寿命成像显微镜(FLIM)利用荧光寿命的差异来区分光谱相同的荧光探针,为活细胞和生物体中的高度多重化成像开辟了新的维度。在这里,描述了一组能够调节嵌入式生色 4-羟基苯亚甲基罗丹宁(HBR)衍生物荧光寿命的荧光激活和吸收移位标签(FAST)。结果表明,FAST 蛋白序列的变化可以改变生色团的局部环境,并导致荧光寿命的显著变化。这些荧光寿命调节标签使得能够在活细胞和活斑马鱼幼虫中使用单个 HBR 衍生物在一个光谱通道中对多达三个靶标进行多重成像。荧光寿命多重化与光谱多重化的结合可以成功地对活细胞中的六个靶标进行成像,为多色荧光寿命多重化开辟了广阔的前景。