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PubMed · 1751156

A protamine-mediated heparin sensing device.

Abstract

A convenient, protamine mediated strip assay for heparin was developed. The assay is established on the specific interaction between heparin and protamine, and the metachromatic color change of methylene blue dye from blue to purple in the presence of heparin. The device consists of a fibrin cup fabricated with a cellulose paper strip containing immobilized protamine. To analyze plasma heparin levels, a fixed volume of the test sample is placed in the fibrin cup and allowed to migrate through the strip in a descending manner until exhaustion. The region to which heparin binds is then visualized as purple in color by spraying methylene blue dye onto the strip. The heparin level in the sample is estimated from the length of the purple region using a preconstructed standard curve. This device proved to be capable of detecting and differentiating heparin in clinically relevant concentrations.

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BibTeXRIS

V C Yang, W Chen. A protamine-mediated heparin sensing device.. https://pubmed.ncbi.nlm.nih.gov/1751156/

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Thermally reversible pluronic/heparin nanocapsules exhibiting 1000-fold volume transition.

Novel Pluronic/heparin composite nanocapsules that exhibit a thermally responsible swelling and deswelling behavior were synthesized. Pluronic F-127 preactivated with p-nitrophenyl chloroformate at its two terminal hydroxyl groups was dissolved in a methylene chloride phase. The organic phase was dispersed in an aqueous phase containing heparin. At an organic/aqueous interface, Pluronic-cross-linked heparin nanocapsules were produced. They exhibited a 1000-fold volume transition (ca. 336 nm at 25 degrees C; ca. 32 nm at 37 degrees C), and a reversible swelling and deswelling behavior when the temperature was cycled between 20 and 37 degrees C. The reversible volume transition of Pluronic nanocapsules was caused by micellization and demicellization of cross-linked Pluronic polymer chains within the nanocapsule structure in response to temperature. The morphological characters were investigated with transmission electron microscopy and small angle neutron scattering. Pluronic/heparin nanocapsules had an aqueous fluid-filled hollow interior with a surrounding shell layer below the critical temperature, but they became a collapsed core/shell structure similar to that of Pluronic micelles above it.

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