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Fluorescein or dark red alexafluor647

Manufactured by Thermo Fisher Scientific

Fluorescein- or dark red/AlexaFluor647-conjugated lab equipment is a set of tools used for fluorescence-based detection and analysis in research and diagnostic applications. These products incorporate fluorescent dyes that emit light at specific wavelengths when excited, allowing for the visualization and quantification of target molecules or cellular components. The core function of these tools is to facilitate sensitive and reliable fluorescence-based measurements, but the specific intended use will depend on the research or diagnostic needs of the user.

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Lab products found in correlation

2 protocols using fluorescein or dark red alexafluor647

1

Gadolinium-Lipid-Latex Nanoparticle Synthesis

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9.43 mg (12.0 μmol) of l-α-phosphatidylcholine, 2.43 mg (3.0 μmol) of 1,2-dioleoyl-sn-glycero-3-phospho-l-serine, 4.64 mg (12.0 μmol) of 9-CCN and 3.31 mg (3.0 μmol) of Gd-DTPA-SA were mixed in chloroform and evaporated to dryness under nitrogen stream. The resulting lipid film was hydrated with 500 μL of 2 wt.% carboxylate modified latex particles (either fluorescein- or dark red/AlexaFluor647-cored from Life Technologies) and subjected to water-bath ultrasonication using Misonix Sonicator 3000 for 10 min at room temperature to obtain gadolinium lipid–latex nanoparticles (Gd-FITC-LiLa).
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2

Gadolinium-Lipid-Latex Nanoparticle Synthesis

Check if the same lab product or an alternative is used in the 5 most similar protocols
9.43 mg (12.0 μmol) of l-α-phosphatidylcholine, 2.43 mg (3.0 μmol) of 1,2-dioleoyl-sn-glycero-3-phospho-l-serine, 4.64 mg (12.0 μmol) of 9-CCN and 3.31 mg (3.0 μmol) of Gd-DTPA-SA were mixed in chloroform and evaporated to dryness under nitrogen stream. The resulting lipid film was hydrated with 500 μL of 2 wt.% carboxylate modified latex particles (either fluorescein- or dark red/AlexaFluor647-cored from Life Technologies) and subjected to water-bath ultrasonication using Misonix Sonicator 3000 for 10 min at room temperature to obtain gadolinium lipid–latex nanoparticles (Gd-FITC-LiLa).
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