ExoGlow™-Protein EV Labeling Kit (Red)

Label EV proteins red (573 nm excitation/588 nm emission) with a reagent specifically optimized for EV labeling.

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ExoGlowTM-Protein EV Labeling Kit (Red)

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ExoGlowTM-Protein EV Labeling Kit (Red)

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20 Reactions
$ 301
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See EVs better with reagents specifically optimized for labeling

SBI’s new generation of extracellular vesicle (EV) labeling reagents take your EV visualization to new levels of clarity, with low background and high selectivity. Unlike general-purpose labeling reagents that are not optimized for EVs and suffer from high levels of background signal, ExoGlow-Protein Red improves your ability to track and localize EVs by specifically and covalently labeling internal EV proteins with a proprietary red fluorescent dye that delivers very low levels of background signal. The result is unmatched EV imaging for more accurate studies (see below for our full range of next generation ExoGlow reagents).

  • Specific—carefully developed to generate a robust signal specific for internal EV proteins, leading to very low levels of background
  • Compatible—delivers robust performance on EVs isolated using all methods tested—including ExoQuick®, ultracentrifugation, and column-based workflows
  • Easy-to-use—labeling protocol is quick and straightforward
  • Powerful—can be used with as little as 200 µg of EVs

ExoGlow-Protein Red properties:
Excitation: 573 nm
Emission: 588 nm
Laser line: 561 nm

Available next generation ExoGlow EV imaging reagents

EV Component Labeled Cat. # Product Excitation (nm) Emission (nm) Laser Line (nm)
Internal protein EXOGP100A-1 ExoGlow-Protein EV Labeling Kit (Red) 573 588 561
EXOGP300A-1 ExoGlow-Protein EV Labeling Kit (Green)

511 525 488
EXOGP400A-1 ExoGlow-Protein EV Labeling Kit (Blue) 403 454 405
RNA EXOGR800A-1 ExoGlow-RNA EV Labeling Kit 485 537 488
Membrane EXOGM600A-1 ExoGlow-Membrane EV Labeling Kit 465 635 488

Supporting Data

Imaging EVs with a new level of clarity

ExoGlow-Protein enables clear visualization of labeled EVs being internalized by target cells

Figure 1. ExoGlow-Protein enables clear visualization of labeled EVs being internalized by target cells. We labeled HEK293T EVs with ExoGlow-Protein and followed uptake by HEK293T cells. The punctate fluorescence signal shows internalization of labeled EVs by the target cells.

Punctate staining pattern is EV-specific

Figure 2. Punctate staining pattern is EV-specific. The punctate staining pattern seen in Figure 1 and Panel A is due to ExoGlow-Protein-labeled EVs. When ExoGlow-Protein is added directly to target HEK203T cells (Panel B), only diffuse, non-specific staining is seen.

ExoGlow-Protein signal is stable for up to at least 7 days after administration of labeled EVs to cells

Figure 3. ExoGlow-Protein signal is stable for up to at least 7 days after administration of labeled EVs to cells.


  • Nocera, AL, et al. (2018) Exosome swarms eliminate airway pathogens and provide passive epithelial immunoprotection through nitric oxide. J. Allergy Clin. Immunol.. 2018 Oct 25;. PM ID: 30442371