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Dextran-Fluorescein

Updated: 2026-08-05

Overview

Dextran Fluorescein is a synthetic conjugate where fluorescein isothiocyanate (FITC) is covalently bonded to dextran, a biocompatible polysaccharide. This combination leverages dextran’s high water solubility and low immunogenicity with fluorescein’s strong fluorescence, enabling real-time visualization in biological systems. First developed in the 1970s, it has become a staple tool in life sciences for tracing molecular movement, particularly in studies of endothelial barrier function, lymphatic transport, and nanoparticle uptake. Its modular design allows customization of molecular weight (3kDa–2,000kDa) to suit specific experimental needs.

Physical and Chemical Properties

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The compound exhibits bright green fluorescence (excitation ~490 nm, emission ~520 nm) with quantum yield dependent on the degree of labeling (typically 0.01–0.1 fluorescein units per glucose residue). Dextran’s hydroxyl groups provide sites for FITC conjugation while maintaining solubility in water and physiological buffers. Stability is pH-dependent: fluorescence intensity decreases in acidic conditions (pH <6) but remains stable at physiological pH (7.2–7.4). The dextran backbone resists enzymatic degradation in most mammalian systems, allowing prolonged observation periods. Molecular weight directly influences diffusion rates—lower weights (≤40kDa) penetrate cell membranes more readily than higher weights (≥70kDa).

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Main Applications

In vascular biology, Dextran Fluorescein is the gold standard for quantifying microvascular permeability, especially in models of inflammation or tumor angiogenesis. Researchers inject it intravenously and measure extravasation using fluorescence microscopy or plate readers. Neuroscientists employ it for neuronal pathway tracing due to its anterograde transport properties. In drug delivery research, it serves as a model compound to test nanoparticle penetration across biological barriers. Recent adaptations include dual-labeling with other fluorophores (e.g., Texas Red) for multiplexed imaging.

Safety and Storage

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While generally low-toxicity, concentrated solutions may cause false positives in cellular viability assays. Always conduct dose-response testing for new cell lines. Lyophilized powder is stable for years when stored desiccated at 2–8°C, but reconstituted solutions degrade within weeks—aliquot and freeze at -20°C for long-term storage. Avoid repeated freeze-thaw cycles. For in vivo use, purify via size-exclusion chromatography if endotoxin levels are critical (e.g., intravascular administration). Dispose of waste according to institutional regulations for fluorescent compounds.

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B2B Procurement Guide

Industrial buyers should prioritize suppliers providing: 1) Certificate of Analysis with exact degree of labeling (DoL), 2) Size-exclusion chromatography data confirming molecular weight distribution, and 3) endotoxin testing for biomedical applications. Bulk orders (≥100g) often qualify for 15–30% discounts. Leading manufacturers include Sigma-Aldrich (FD series), Thermo Fisher Scientific, and TdB Labs. For specialized needs (e.g., amine-reactive derivatives), custom synthesis services are available from companies like Creative PEGWorks. Always request current MSDS and animal welfare compliance documentation if for preclinical studies.

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