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DAPI

Updated: 2026-08-10

Overview

DAPI is a fluorescent dye first synthesized in 1971, now indispensable in life sciences for nuclear staining. Its ability to selectively bind to DNA's minor groove (with preference for AT-rich sequences) makes it a standard tool for visualizing chromosomes, nuclei, and mitochondria. Unlike intercalating dyes, DAPI's fluorescence intensifies upon DNA binding, enabling high-contrast imaging even at low concentrations. As a cell-permeable compound, DAPI is used in both fixed and live-cell imaging, though prolonged exposure can be cytotoxic. Its compatibility with other fluorophores (e.g., FITC, TRITC) allows multiplex staining, making it a cornerstone of fluorescence microscopy protocols worldwide.

Physical and Chemical Properties

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DAPI exists as a dihydrochloride salt with a molecular weight of 350.25 g/mol. In solution, it exhibits maximum excitation at 358 nm (UV) and emission at 461 nm (blue). The dye shows negligible fluorescence when unbound but undergoes a 20-fold intensity increase upon DNA binding, with a dissociation constant (Kd) of ~0.1 µM. Its solubility profile allows formulation in aqueous buffers (PBS, Tris-HCl) or organic solvents like DMSO for stock solutions. Stability varies by formulation: lyophilized powder remains stable for years at -20°C, while aqueous solutions degrade within weeks. Photobleaching resistance is moderate, requiring minimized UV exposure during imaging.

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Main Applications

In microscopy, DAPI stains nuclei in tissue sections (0.1-1 µg/mL) and counterstains in fluorescence in situ hybridization (FISH). Flow cytometry employs DAPI (0.5-5 µg/mL) for DNA content analysis, including cell cycle studies and ploidy determination. Its membrane permeability enables live-cell tracking of nuclear dynamics in zebrafish embryos and other model organisms. Recent applications include automated high-content screening platforms, where DAPI's robust staining helps quantify cell numbers in drug discovery assays. In botany, it reveals endopolyploidy patterns in plant tissues. Veterinary diagnostics use DAPI for quick assessment of sperm chromatin integrity.

Safety and Storage

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DAPI is classified as a Category 2 mutagen (H341) under GHS and requires handling with nitrile gloves in a fume hood. Avoid inhalation of powder and direct skin contact. Waste disposal should follow institutional guidelines for hazardous chemicals, typically through incineration. For storage, aliquot stock solutions (e.g., 5 mg/mL in water) to avoid freeze-thaw cycles. Lyophilized powder remains stable in amber vials with desiccant at -20°C for 5+ years. Working solutions in PBS retain activity for ~1 month at 4°C if protected from light. Degradation indicators include color change (yellow to brown) and reduced staining intensity.

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B2B Procurement Guide

Research-grade DAPI (≥95% purity) is typically sold in 1 mg to 100 mg quantities, with bulk discounts available for 1 g+ orders. Key specifications to verify include: absence of free radicals (tested by ESR), low heavy metal content (<10 ppm), and moisture levels (<0.5% for anhydrous forms). Suppliers often provide HPLC traces and mass spectrometry data; request these for critical applications. For high-throughput labs, pre-made staining solutions (e.g., DAPI mounting media) save preparation time. Consider supplier certifications: ISO 13485 for diagnostic applications, or GMP compliance for therapeutic use. Lead times vary from 1 week (standard grades) to 8 weeks for custom formulations.

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