{ "@context": "https://schema.org/", "@type": "ScholarlyArticle", "url": "https://newcellsbiotech.co.uk/resources/posters/utilization-of-high-content-imaging-for-the-study-of-lung-fibrosis/", "name": "Utilization of High Content Imaging for the Study of Lung Fibrosis", "author": { "@type": "Organization", "name": "NewCells Biotech" }, "publisher": { "@type": "Organization", "name": "NewCells Biotech" }, "description": "A poster presenting research on the use of high content imaging techniques to study lung fibrosis.", "keywords": [ "lung fibrosis", "high content imaging", "biomedical research", "respiratory disease" ], "genre": "Research Poster", "datePublished": "2024", "about": { "@type": "MedicalCondition", "name": "Lung Fibrosis" }, "workExample": { "@type": "ImageObject", "name": "High Content Imaging of Lung Fibrosis" }, "thumbnailUrl": "https://newcellsbiotech.co.uk/path-to-poster-thumbnail.jpg" } Skip to content
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Quantitative Fibroblast-to-Myofibroblast Transition (FMT) studies

Quantitative FMT assay with high content imaging

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Human Lung Fibroblasts stimulated with TGF-β for 72 hours and immunostained to detect α-SMA, as a measure of extracellular matrix production and deposition.

In vitro evaluation of ocular toxicity and phenotypic rescue

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Newcells Biotech to develop 3D retinal organoids using hiPSC derived skin cells

In vitro selection of the most relevant species to predict human renal toxicity

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A microscope image of a nephron model

Evaluation of glomerular ADC toxicity in podocytes

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Gene therapy viral vector assessment on retinal organoids

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Gene therapy viral vector assessment on RPE cells

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