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D-HBE-As – Diseased Human Bronchial/Tracheal Epithelial Cells – AsthmaCatalog #: 00194911D-HBE-As – Diseased Human Bronchial/Tracheal Epithelial Cells from donors having AsthmaSales unit: Ampule
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D-HBE-COPD – Diseased Human Bronchial/Tracheal Epithelial Cells – COPDCatalog #: 00195275D-HBE-COPD – Diseased Human Bronchial/Tracheal Epithelial Cells from donors having COPDSales unit: Ampule
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D-HBE-As – Diseased Human Bronchial/Tracheal Epithelial Cells – Asthma for B-ALI™ CultureCatalog #: 00194911SDHBE-As, Bronchial Epithelial Cells from donors having Asthma for B-ALI™ (Bronchial Air Liquid Interface) cell cultureSales unit: Ampule
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B-ALITM Bronchial Air-Liquid Interface Medium BulletKit®Catalog #: 00193514
Culture system containing B-ALITM Basal Media (00193516), B-ALITM Differentiation Media (00193517) and B-ALITM SingleQuots® Supplements (00193515) required for air-liquid interface differentiation of bronchial epithelial cells.
Sales unit: kit -
D-BSMC-As – Diseased Human Bronchial Smooth Muscle Cells – AsthmaCatalog #: 00194850DBSMC-As, Bronchial Smooth Muscle Cells, AsthmaSales unit: Ampule
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NHLF – Human Lung FibroblastsCatalog #: CC-2512Cryopreserved ampule of Normal Human Lung Fibroblasts (NHLF) containing ≥ 500,000 cellsSales unit: Ampule
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SmGM®- 2 Smooth Muscle Cell Growth Medium -2 BulletKit®Catalog #: CC-3182
Culture system containing SmBM® Basal Medium (CC-3181) and SmGM®-2 SingleQuots® supplements (CC-4149) required for growth of Smooth Muscle Cells
Sales unit: kit -
D-HBE-COPD - Diseased Human Bronchial/Tracheal Epithelial Cells - COPD for B-ALITMCatalog #: 00195275SThis product is no longer available for sale.Sales unit: Ampule
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TechSheet - Small Airway Epithelial Cell SystemsTechnical Product Information Guide
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An Air-liquid Interface Culture System for Small Airway Epithelial CellsOur data demonstrate that SAEC can be differentiated in an ALI culture system that is capable of forming tight junctions, displaying cilia and secreting ASL. This system should facilitate more physiologically relevant studies of both normal SAEC and those from diseases, such as COPD and asthma.
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Modeling a 3D respiratory model with the Quasi Vivo® QV600 Fluidic Cell Culture SystemIn this Technical Note, we provide detailed information of how the Quasi Vivo® QV600 System was set up for the ALI culture of normal human bronchial or small airway epithelial (NHBE, SAE) cells.
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Airway Cells Concentration GuideTailored prmary cell media to accelerate your airway research
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Instructions - Airway Epithelial Cell SystemsInstructions for Proper Use and Culture of Airway Epithelial Cells
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Primary Cells for Airway Research – InfographicInfographic showing how Lonza primary cells can aide in your airway research
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Primary cells and other tools for in vitro ADME-ToxCD-LI019_ADME-Tox_Product_listing_sec.pdf
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Basic Transfection Protocol for Neurons (SCN) - Nucleofector™ I/II/2b Device SeriesInstructions of use for transfection of small cell numbers of primary neurons with Nucleofector™ 1/2 Devices (incl. 1, 2b, 2N, 2S)
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Transfection Protocol for Mouse Neurons (SCN) - Nucleofector™ I/II/2b Device SeriesInstructions of use for transfection of small cell numbers of mouse hippocampal neurons with Nucleofector™ 1/2 Devices (incl. 1, 2b, 2N, 2S)
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Gene Expression Differences in Airway Epithelial Cells from Asthma or COPD DonorsAccess to diseased primary cells from patients diagnosed with COPD or asthma provides a convenient, biologically relevant model to assess genetic and in some cases phenotypic changes from normal, healthy donor tissues. In this study, we grew human bronchial epithelial (HBE) cells from normal, COPD-, and asthma-diagnosed human donor lung tissues in an air-liquid interface (ALI) model to assess potential phenotypic changes in vitro as well as provide a differentiated layer of cells to harvest for gene expression studies using the StellARray™ Gene Expression System.
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