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  • Register Now for Our 2023 Global Endosummit Testing Summit
  • 3D Spheroid Primary Human Hepatocyte and Non-Parenchymal Cell (NPC) Co-Culture - Instructions for use
  • FUJIFILM WAKO Endotoxin Detection Products Now Available from Lonza Announcement
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  • A Non-Viral Method for Modifying and Expanding Primary T Cells
    Learn how Lonza’s Cocoon® Platform, 4D-Nucleofector® LV Unit and X-VIVO® 15 Medium are integrated to enable non-viral genetic modification and subsequent expansion of primary T cells in a functionally-closed, automated workflow.
  • Primary Human Hepatocyte 3D Spheroids Co-cultured with Non-Parenchymal Cells
  • Aortic Smooth Muscle Cells Induce Gene Expression in Aortic Endothelial Cells and Participate in In Vitro Angiogenesis
    Here, we show that the presence of aortic smooth muscle cells does have an impact on induction of genes expressed in aortic endothelial cells.
  • Lonza Expands Availability of the RAFT™ 3D Cell Culture System
    Lonza has announced that it has reached an exclusive agreement with TAP Biosystems, part of the Stedim Biotech Group, to distribute the company’s RAFT™ (Real Architecture For 3D Tissue) 3D Cell Culture System. This system enables researchers to generate more biologically meaningful data from their cell culture studies.
  • CAR T cells in Cancer Therapy
    A poster developed by Nature Reviews in conjunction with Lonza to present CAR T cells in cancer therapy. This poster demonstrates the recognition of tumor peptides by T cells, CAR T cell manufacturing, the types of chimeric antigen receptors and a timeline of CAR development over more than 30 years.
  • Functional Assay of Neural Activity with Cell-Based Neural Culture Models and Microelectrode Array Technology for Proconvulsant Risk Assessment in the Neutox Pilot Study
    Lonza and Axion Biosystems’ poster from the 2019 SOT meeting discussing the use of primary cortical cell models and microelectrode array (MEA) technology for neurotoxicology and safety pharmacology assessment applications.
  • 4D-Nucleofector® LogWare Gen 2 Manual
    Instructions on how to use the 21 CFR Part 11 compliant software for the 4D-Nucleofector® System Gen 2.
  • Basic Transfection Protocol for Endothel. Cells (Adh.) - 4D-Nucleofector™ Device
    Instructions of use for transfection of adherent primary mammalian endothelial cells with the AD1 Primary Cell 4D-Nucleofector™ Y Kit
  • 4D-Nucleofector LogWare Manual
    Lonza_ManualsProductInstructions_4D-Nucleofector_LogWare_Manual.pdf
  • Transfection Protocol for Mature Mouse DC (BALB/c) - 4D-Nucleofector™ Device
    Instructions of use for transfection of mature mouse dendritic cells (BALB/c) with the P3 Primary Cell 4D-Nucleofector™ Kit
  • Transfection Protocol for Mature Mouse DC (BALB/c) - 4D-Nucleofector™ Device
    Instructions of use for transfection of mature mouse dendritic cells (BALB/c) with the P3 Primary Cell 4D-Nucleofector™ X Kit
  • WinKQCL™ 6 Software User Guide
    The WinKQCL™ Software is client-server software that is designed and developed specifically for the purpose of endotoxin testing.
  • Amaxa™ 4D-Nucleofector™ Optimization Protocol for Primary Cells or Cell Lines – Transfection in Adherence
    Instructions of use for optimizing transfection conditions of adherent primary cells or cell lines with the Primary Cell Optimization 4D-Nucleofector™ Y AD Kit
  • Transfection Protocol for Immature mDC (C57BL/6) - 96-well Shuttle™ Device
    Instructions of use for transfection of immature mouse dendritic cells (C57BL/6) with the P4 Primary Cell 96-well Nucleofector™ Kit
  • Transfection Protocol for Immature mDC (BALB/c) - 96-well Shuttle™ Device
    Instructions of use for transfection of immature mouse dendritic cells (BALB/c) with the P4 Primary Cell 96-well Nucleofector™ Kit
  • 2023 Virtual Endo Summit Article
    2023 Global Endotoxin Testing Summit recap
  • A 3D Bioprinted Model to Study Osteogenic Differentiation of Primary Mesenchymal Stem Cells
    Learn from this white paper how a 3D bioprinted model using hMSCs can be used for evaluation of bioink compatibility and bioprinting processes.
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