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You searched for "fibroblast/diseased-line-fibroblasts.aspx"

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You searched for "fibroblast/diseased-line-fibroblasts.aspx"

641 Documents found
  • 3D Invasion Assay with U-87 Cell Line
  • Primary Cells for Airway Research – Infographic
    Infographic showing how Lonza primary cells can aide in your airway research
  • Instructions & Technical Info - Mouse Embryonic Fibroblast Cell System
    Instructions and technical tips for proper use and culture of Mouse embryonic fibroblasts (MEF)
  • Asthma- and COPD-related Differential Gene Expression in Primary Human Lung Fibroblasts
    A white paper exploring differential gene expression in primary human lung fibroblasts
  • Metabolism_Brochure_CoBrand_Form
    This is a co-marketing form for distributors. There is a restricted space on the cover next to the Lonza logo and on the back below the market bar. Art for placement MUST be a PDF. In addition there is space on the back cover for a web address at the top and contact and disclaimers.   Please look for the instruction PDF in the literature DB Article number CD-FO006Inst
  • Instructions - FGM-CD™ Chem. Defined Fibro. Growth Med.
    Instructions for using TheraPEAK™ Chemically Defined Fibroblast Cell Growth Medium
  • Cell Line Optimization Protocol - 96-well Shuttle™ Device
    Instructions of use for optimizing transfection conditions of cell lines with the Cell Line Optimization 96-well Nucleofector™ Kit
  • Brochure - Cell List
    Integrated solutions for primary cells and transfection
  • Primary Cells and Media Reference Guide
    A comprehensive collection of Lonza primary cell and media products supporting many research areas.
  • Basic Transfection Protocol for Fibroblasts - 4D-Nucleofector™ Device
    Instructions of use for transfection of primary mammalian fibroblasts with the P2 Primary Cell 4D-Nucleofector™ X Kit
  • Instructions & Technical Info - Irradiated Mouse Embryonic Fibroblast Cell System
    M-iFb-482 Irradiated Mouse Embryonic Fibroblasts iMEF - Instructions for Use and Technical Sheet
  • Basic Transfection Protocol for Fibroblasts - HT Nucleofector™ Device
    Instructions of use for transfection of primary mammalian fibroblast cells with the P2 or P3 Primary Cell HT-Nucleofector™ Kit
  • Advancing Bone Disease Research – Dissociated Rat Calvariae Osteoblasts Display Optimal Mineralization and Are Easily Transfected Using Nucleofection
    The data provided in this white paper show the quality and sensitivity of cryopreserved dissociated rat calvariae osteoblasts for in vitro studies. Furthermore, application of the 4D-Nucleofector™ System for efficient transfection of dissociated osteoblasts represents a significant advantage for investigating bone biology.
  • eBook by The Scientist and Lonza: Primary Cells in Research
    An ebook produced in conjunction with The Scientist highlighting Primary Cells, Primary Cell Culture Process, In Vitro, and Relevant In Vitro Models.
  • Developing Patient-specific Cell Therapy Manufacturing Processes
    Poster presentation about patient-specific cellular therapies and their tremendous potential for being able to treat life threatening diseases where there are currently no cures.
  • CellBio Services – Custom Solutions to Meet Your Unique Research Needs
    Brochure showcasing Lonza's CellBio Services capabilities including cell isolations and expansions, research grade media production, transfection services, and cell characterization.
  • Instructions for use – Matched donor Keratinocytes and Fibroblasts 2D Co-Culture Protocol
    Details provided for how to establish a Keratinocyte and Dermal Fibroblast co-culture
  • Basic Transfection Protocol for Fibroblasts - 96-well Shuttle™ Device
    Instructions of use for transfection of primary mammalian fibroblasts with the P2 Primary Cell 96-well Nucleofector™ Kit
  • Gene Expression Differences in Airway Epithelial Cells from Asthma or COPD Donors
    Access 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.
  • Primary Human Airway Cells and Media
    Airway Cell and Media Reference Guide
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