Radio-labeled Heparin

Radio-labeled heparin is heparin linked to a radioactive isotope, allowing researchers to trace this anticoagulant and monitor its behavior in biological systems. The isotope emits detectable radiation while the heparin retains interactions with coagulation proteins, including antithrombin, enabling measurements of binding, distribution, clearance, and biological activity. In biology, radio-labeled heparin supports studies of blood coagulation, heparin-protein interactions, tissue uptake, and pharmacokinetics. By revealing where heparin travels and how long it persists, this tracer-based approach helps clarify anticoagulant mechanisms and informs the development and evaluation of heparin-based therapies.

Radio-labeled Heparin - Related Videos

Research

JoVE Journal - Biochemistry

Measuring G-protein-coupled Receptor Signaling via Radio-labeled GTP Binding

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Cited by 11 •

2017

Guanosine triphosphate (GTP) binding is one of the earliest events in G-Protein-Coupled Receptor (GPCR) activation. This protocol describes how to pharmacologically characterize specific GPCR-ligand interactions by monitoring the binding of the radio-labeled GTP analog, [35S]guanosine-5'-O-(3-thio)triphosphate ([35S]GTPγS), in response to a ligand of interest.

Purification of Viral Integrase Using Heparin Affinity Chromatography

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2026

Source: Lopez Jr., M. et al. Detection and Removal of Nuclease Contamination During Purification of Recombinant Prototype Foamy Virus Integrase. J. Vis. Exp. (2017)This video demonstrates the procedure for purifying viral integrase from bacterial nuclease contamination using heparin Sepharose column chromatography followed by SDS-PAGE analysis to confirm protein purity.

Using a GFP-tagged TMEM184A Construct for Confirmation of Heparin Receptor Identity

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Cited by 2 •

2017

A construct encoding TMEM184A with a GFP tag at the carboxy-terminus designed for eukaryotic expression, was employed in assays designed to confirm the identification of TMEM184A as a heparin receptor in vascular cells.

Polyelectrolyte Complex for Heparin Binding Domain Osteogenic Growth Factor Delivery

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Cited by 2 •

2016

Self-assembled polyelectrolyte complexes (PEC) fabricated from heparin and protamine were deposited on alginate beads to entrap and regulate the release of osteogenic growth factors. This delivery strategy enables a 20-fold reduction of BMP-2 dose in spinal fusion applications. This article illustrates the benefits and fabrication of PECs.

Education

JoVE Core - Pharmacology

Anticoagulant Drugs: Low-Molecular-Weight Heparins

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2024

Hemostasis is a crucial process that prevents excessive blood loss from damaged blood vessels. It involves various mechanisms such as vasoconstriction, platelet adhesion and activation, and fibrin formation. The importance of each mechanism depends on the type of vessel injury. In contrast, thrombosis is the abnormal formation of a blood clot within the blood vessels, leading to potential complications if the clot obstructs blood flow. Thrombosis can be caused by increased coagulability of the...

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