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Cell imaging using LBL-Dye M580 and LBL-Dye M717

Cellular tracers in fluorescence imaging are essential tools for studying various cellular processes, including cell migration, protein trafficking, organelle dynamics, and more...

LBL-Dye M580 and LBL-Dye M717 (compatible with super-resolution STED imaging) are two cell-permeant, photostable, and no cytotoxic cellular tracers particularly well-adapted for long-time imaging on living cells.

LBL-Dye M580

Imaging of H28-living cells stained with far-red LBL-Dye M580 (2µg/µl) in the culture medium. Images acquired by using STELLARIS8 confocal microscope (Leica Microsystems), X86 objective water immersion, WLL laser excitation 562 nm; Em 570-650 nm on HyD-S detector, Okolab chamber installed on the inverted microscope stand to keep the temperature at 37 ◦C during image acquisition.

Imaging of H28-living cells stained with far red LBL-Dye M580 (2µg/µl) after 3hrs exposure in the culture medium. Images acquired by using SP5 confocal microscope (Leica Microsystems), X63 objective oil immersion, WLL laser excitation 562nm; Em 570-650 nm. Cellular labeling is photostable, no phototoxic, allowing long time observation.

LBL-Dye M717

FireBlue LUT
Red Hot LUT
Majenta Hot LUT

Imaging of H28-living cells stained with far-red LBL-Dye M717 (5 µg/µl) in the culture medium. Images acquired by using SP5 confocal microscope (Leica Microsystems), X63 objective oil immersion, WLL laser excitation 690 nm; Em 700-730 nm. The plasma membrane and vesicles are visible on living cells and the movement of cells can be followed during few hours.

Read more

Cell-to-cell communication via tunneling nanotubes (TNTs) is a challenging topic with a growing interest. In this work, we proposed several innovative tools that use red/near-infrared dye labeling and employ lifetime-based imaging strategies to investigate the dynamics of TNTs in a living mesothelial H28 cell line that exhibits spontaneously TNT1 and TNT2 subtypes...

Studying mitochondrial dynamics within tunneling nanotubes (TNTs) through live cell imaging presents several challenges and requires sophisticated techniques to capture the intricacies of these dynamic structures...

Cellular tracers in fluorescence imaging are essential tools for studying various cellular processes, including cell migration, protein trafficking, organelle dynamics, and more...

Proimaging