Dextran, Alexa Fluor™ 488; 3,000 MW, Anionic
Dextran, Alexa Fluor™ 488; 3,000 MW, Anionic
Invitrogen™

Dextran, Alexa Fluor™ 488; 3,000 MW, Anionic

Labeled dextrans are hydrophilic polysaccharides most commonly used in microscopy studies to monitor cell division, track the movement of liveRead more
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D346822 mg
Catalog number D34682
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326.00
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2 mg
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Price (USD)
326.00
Each
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Labeled dextrans are hydrophilic polysaccharides most commonly used in microscopy studies to monitor cell division, track the movement of live cells, and to report the hydrodynamic properties of the cytoplasmic matrix. The labeled dextran is commonly introduced into the cells via microinjection.

Need a different emission spectrum or longer tracking? View our other mammalian cell tracking products.

Dextran Specifications:

Label (Ex/Em): Alexa Fluor™ 488 (495/519)
Size: 3,000 MW
Charge: Anionic
Fixable: Nonfixable

High Manufacturing Standards of Molecular Probes™ Dextrans
We offer more than 50 fluorescent and biotinylated dextran conjugates in several molecular weight ranges. Dextrans are hydrophilic polysaccharides characterized by their moderate-to-high molecular weight, good water solubility, and low toxicity. They also generally exhibit low immunogeniticy. Dextrans are biologically inert due to their uncommon poly-(α-D-1,6-glucose) linkages, which render them resistant to cleavage by most endogenous cellular glycosidases.

In most cases, Molecular Probes™ fluorescent dextrans are much brighter and have higher negative charge than dextrans available from other sources. Furthermore, we use rigorous methods for removing as much unconjugated dye as practical, and then assay our dextran conjugates by thin-layer chromatography to help ensure the absence of low molecular weight contaminants.

A Wide Selection of Substituents and Molecular Weights
Molecular Probes™ dextrans are conjugated to biotin or a wide variety of fluorophores, including seven of our Alexa Fluor™ dyes (Molecular Probes dextran conjugates–Table 14.4) and are available in these nominal molecular weights (MW): 3,000; 10,000; 40,000; 70,000; 500,000; and 2,000,000 daltons.

Dextran Net Charge and Fixability
We employ succinimidyl coupling of our dyes to the dextran molecule, which, in most cases, results in a neutral or anionic dextran. The reaction used to produce the Rhodamine Green™ and Alexa Fluor 488 dextrans results in the final product being neutral, anionic, or cationic. The Alexa Fluor, Cascade Blue, lucifer yellow, fluorescein, and Oregon Green dextrans are intrinsically anionic, whereas most of the dextrans labeled with the zwitterionic rhodamine B, tetramethylrhodamine, and Texas Red™ dyes are essentially neutral. To produce more highly anionic dextrans, we have developed a proprietary procedure for adding negatively charged groups to the dextran carriers; these products are designated “polyanionic” dextrans.

Some applications require that the dextran tracer be treated with formaldehyde or glutaraldehyde for subsequent analysis. For these applications, we offer “lysine-fixable” versions of most of our dextran conjugates of fluorophores or biotin. These dextrans have covalently bound lysine residues that permit dextran tracers to be conjugated to surrounding biomolecules by aldehyde-mediated fixation for subsequent detection by immunohistochemical and ultrastructural techniques. We have also shown that all of our 10,000 MW Alexa Fluor dextran conjugates can be fixed with aldehyde-based fixatives.

Key Applications Using Labeled Dextrans
There are a multitude of citations describing the use of labeled dextrans. Some of the most common uses include:

Neuronal tracing (anterograde and retrograde) in live cells
Cell lineage tracing in live cells
Neuroanatomical tracing
Examining intercellular communications (e.g., in gap junctions, during wound healing, and during embryonic development)
Investigating vascular permeability and blood–brain barrier integrity
Tracking endocytosis
Monitoring acidification (some dextran–dye conjugates are pH-sensitive)
Studying the hydrodynamic properties of the cytoplasmic matrix

For Research Use Only. Not intended for any animal or human therapeutic or diagnostic use.
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Label or DyeAlexa Fluor Dyes
Product TypeDextran
Quantity2 mg
Shipping ConditionRoom Temperature
Excitation/Emission495/519 nm
Product LineAlexa Fluor™
Unit SizeEach
Contents & Storage
Store in freezer (-5 to -30°C) and protect from light.
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Fluorescence spectra

Fluorescence spectra

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Lot #Certificate TypeDateCatalog Number(s)
3158262Certificate of AnalysisApr 22, 2025D34682
2876752Certificate of AnalysisMar 26, 2024D34682
2790031Certificate of AnalysisOct 19, 2023D34682
2521016Certificate of AnalysisAug 23, 2022D34682
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Citations & References (11)

Citations & References
Abstract
Monitoring the permeability of the nuclear envelope during the cell cycle.
Authors:Lénárt P, Ellenberg J,
Journal:Methods
PubMed ID:16343937
'In animal organisms the nuclear envelope (NE) dis-assembles during cell division resulting in complete intermixing of cytoplasmic and nuclear compartments. This leads to the activation of many mitotic enzymes, which were kept away from their substrates or regulators by nuclear or cytoplasmic sequestration in interphase. Nuclear envelope breakdown (NEBD) is ... More
Hindered diffusion through an aqueous pore describes invariant dye selectivity of Cx43 junctions.
Authors:Heyman NS, Burt JM,
Journal:Biophys J
PubMed ID:17921206
The permselectivity (permeance/conductance) of Cx43-comprised gap junctions is a variable parameter of junctional function. To ascertain whether this variability in junctional permselectivity is explained by heterogeneous charge or size selectivity of the comprising channels, the permeance of individual Cx43 gap junctions to combinations of two dyes differing in either size ... More
Lysosomal-mediated waste clearance in retinal pigment epithelial cells is regulated by CRYBA1/βA3/A1-crystallin via V-ATPase-MTORC1 signaling.
Authors:
Journal:Autophagy
PubMed ID:24468901
The Toxoplasma Dense Granule Proteins GRA17 and GRA23 Mediate the Movement of Small Molecules between the Host and the Parasitophorous Vacuole.
Authors:
Journal:Cell Host Microbe
PubMed ID:25974303
The habenula as an evolutionary conserved link between basal ganglia, limbic, and sensory systems-A phylogenetic comparison based on anuran amphibians.
Authors:
Journal:J Comp Neurol
PubMed ID:31566737
11 total citations

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