Soluble Pectin Thrombus Correlation

Soluble Pectin Thrombus Correlation is a research topic examining whether soluble pectin, a water-dispersible plant polysaccharide, is associated with thrombus formation or characteristics. In medical research, investigators may quantify pectin in a sample or experimental system and compare it with thrombus-related measures such as clot size, mass, or occurrence, using correlation analysis to identify statistical relationships without implying causation. This framework can support studies of dietary factors, blood coagulation, platelet behavior, and vascular disease. Interpreting the association alongside controlled experiments and established hemostasis assays helps determine whether soluble pectin has potential relevance to thrombus prevention, treatment, or risk assessment.

Soluble Pectin Thrombus Correlation - Related Videos

Research

JoVE EoE - Antibody-Based Technologies

Immunolocalization of Arabinogalactan Proteins and Pectins in Plant Tissue

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2025

This video demonstrates an immunostaining technique to localize arabinogalactan proteins (AGPs) and pectins in plant tissues. Fixed and resin-embedded plant tissue sections are stained with AGP- and pectin-specific primary and fluorescent secondary antibodies and a cellulose-binding fluorescent dye to reveal their tissue-specific colocalization in the cell wall.

Education

JoVE Lab Manual - Chemistry

Solubility - Concepts

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2020

Solubility Solubility describes how much of a solute can dissolve in a given volume of a specific solvent. Solubility is usually reported in terms of solute mass per solvent volume or solute mass per solvent mass. For example, the solubility of sodium chloride in water at room temperature is reported as 36 g per 100 mL of water. If solubility is reported in solute mass per solvent mass, the solvent mass will need to be converted to volume for further calculations. Solubility changes with...

Intravital Microscopy and Thrombus Induction in the Earlobe of a Hairless Mouse

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Cited by 4 •

2017

The ear model of the hairless SKH1-Hrhr mouse enables intravital fluorescence microscopy of microcirculation and phototoxic thrombus induction without prior surgical preparation in the examined microvascular bed. Therefore, the ear of the hairless mouse is an excellent in vivo model to study the complex interactions during microvascular thrombus formation, thrombus evolution, and thrombolysis.

Real-time Imaging of Heterotypic Platelet-neutrophil Interactions on the Activated Endothelium During Vascular Inflammation and Thrombus Formation in Live Mice

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Cited by 29 •

2013

Here we report an experimental technique of fluorescence intravital microscopy to visualize heterotypic platelet-neutrophil interactions on the activated endothelium during vascular inflammation and thrombus formation in live mice. This microscopic technology will be valuable to study the molecular mechanism of vascular disease and to test pharmacologic agents under pathophysiological conditions.

Intravital Fluorescence Microscopy to Study Microvascular Thrombus Formation

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2025

This video demonstrates the intravital fluorescence microscopy technique to study thrombus formation in a mouse model. The mouse is injected with a fluorophore-labeled polysaccharide to monitor blood circulation. Upon illumination with a high-intensity light, the phototoxic induction of an injury in the microvasculature of the ear leads to the formation of a thrombus, which is confirmed by visualizing the obstruction in the blood flow.

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