Cadmium Chloride Inducible Promoter

A cadmium chloride-inducible promoter is a regulatory DNA sequence that activates gene transcription when cells encounter cadmium ions, allowing researchers to control gene expression experimentally. In many eukaryotic systems, cadmium stimulates metal-responsive transcription factor 1 (MTF-1), which binds metal response elements in the promoter and recruits the transcriptional machinery. Researchers use this system to switch transgenes on with defined cadmium chloride exposure, investigate transcriptional regulation and cellular responses to heavy metals, and produce proteins under inducible conditions. Because cadmium is toxic, experiments require carefully controlled concentrations, exposure times, and appropriate untreated controls.

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JoVE Journal - Medicine

Ferric Chloride-induced Murine Thrombosis Models

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Cited by 56 •

2016

We report a refined procedure of the ferric chloride (FeCl3)-induced thrombosis models on carotid and mesenteric artery as well as vein, characterized efficiently using intravital microscopy to monitor time to occlusive thrombi formation.

Establishment of a Modified Ferric Chloride-Induced Superior Sagittal Sinus Thrombosis

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2025

This study presents a protocol for establishing a reproducible, minimally invasive rat model of superior sagittal sinus thrombosis induced by ferric chloride, utilizing a silk-suture method in combination with laser speckle contrast imaging and high-resolution ultrasound for evaluation.

The Effect of Ultraviolet Radiation on the Chemical Bath Deposition of Bis(thiourea) Cadmium Chloride Crystals and the Subsequent CdS Obtention

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Cited by 2 •

2018

This article presents a protocol for the synthesis of bis(thiourea) cadmium chloride crystals by chemical bath deposition. Two experiments are described: one aided by ultraviolet light compared to one without ultraviolet light.

Ferric Chloride-induced Thrombosis Mouse Model on Carotid Artery and Mesentery Vessel

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Cited by 49 •

2015

The FeCl3 induced thrombosis model in mice is described herein. A method to monitor thrombus growth by intravital microscopy observation on a mesenteric vessel and by blood flow measurement in the carotid artery is presented.

Facet-to-facet Linking of Shape-anisotropic Colloidal Cadmium Chalcogenide Nanostructures

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2017

A protocol detailing how shape-anisotropic colloidal cadmium chalcogenide nanocrystals can be covalently linked via their end facets is presented here.

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