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Automatic, Real Time Acquisition of Bioluminescent Kinetic Curves

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Watch this pre-recorded webinar with Dr. Andrew Van Praagh to learn how our new Aura software feature —Kinetics—...

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Thursday, 11 July 2024, 16:00 CET | 10:00 EST
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X-RAD 320 for irradiation therapy during quantifying study for in vivo collagen reorganization

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Use of MRI and microCT to evaluate gene therapy for the treatment of discogenic back pain

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MRI images were obtained using the 9.4T Bruker BioSpec system, equipped with 40 mm 1H quadrature volume resonator, and...

Exosome-Mediated Delivery of Small Molecules, RNA & DNA for Development of Novel Cancer Therapeutics

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Emulate in vivo conditions – introduce shear flow to your experiments with BioFlux system

Cell Microsystems

May 27, 2024

Most research is still conducted in vitro without the presence of flow. We use the BioFlux System to give you the...

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Webinar recording: BioFlux, the gold standard for Platelet Biology and Vascular Pharmacology studies

Jan 3, 2024

After a short introduction on the physio-pathological roles of platelets and the importance of their cell adhesion mechanisms for human health, I will present data from our most recent studies on the redox-dependent regulation of platelet activity and the role of NADPH oxidases (NOXs) in thrombosis using the BioFlux system. We discovered agonist specificity of the activation of NADPH oxidases during platelet activation, with NOX1 prominently activated by collagen, while thrombin and other agonists activate both NOX1 and NOX2. The inhibition of NOX1 has strong antiplatelet effects in vitro.

Collagen-dependent thrombus formation under flow is abolished by NOX1 inhibition in human platelets or genetic deletion in mouse platelets. Importantly, although thrombosis tested in vivo in carotid occlusion and pulmonary embolism assays is severely impaired by NOX1 inhibition, haemostasis remains unaffected. This suggests the possibility to design NOX1-specific drugs to be used as antithrombotics with no bleeding side effects. This work suggests how the modelling of thrombus formation by flow assays in vitro may find important applications in vascular biology and drug discovery.

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Related technologies: Cell interaction studies

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Riccardo Pasculli

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Riccardo

Pasculli

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Cell Microsystems

With BioFlux System for live cell analysis under shear flow and IsoFlux System for circulating tumor cell analysis, Cell Microsystems turn power of benchtop cellular analysis with advanced tools to automate complex assays.

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