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Items 133-144 of 146 Results

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  • Discover our custom solutions

    Discover our custom solutions

    The best product is the one tailored to your needs! Regardless of your organization’s size, the stage of your research or specialized needs, we offer a broad range of customization.
  • Serum- and xeno-free culture of human CD34+ hematopoietic progenitor cells (HPCs)

    Serum- and xeno-free culture of human CD34+ hematopoietic progenitor cells (HPCs)

    Learn how defined, serum- and xeno-free culture systems can overcome the most common challenges in CD34+ HPC expansion.
  • Other species and cell types compatible with PromoCell adult stem & stromal cell media

    Other species and cell types compatible with PromoCell adult stem & stromal cell media

    A compiled list of publications in which our various adult stem and stromal cell culture media have been applied to different species or cell types.
  • 3D tumorsphere cell culture model

    3D tumorsphere cell culture model

    Explore a matrix-free tumorsphere system that's designed to support cancer stem cells and enable robust 3D culture from almost any starting material.
  • Other species and cell types compatible with PromoCell blood cell media

    Other species and cell types compatible with PromoCell blood cell media

    A compiled list of publications in which our various blood cell culture media have been applied to different species or cell types.
  • Other species and cell types compatible with PromoCell muscle cell media

    Other species and cell types compatible with PromoCell muscle cell media

    A compiled list of publications in which our various muscle cell culture media have been applied to different species or cell types.
  • Expansion of primitive hematopoietic progenitor cells

    Expansion of primitive hematopoietic progenitor cells

    Researchers often face challenges in expanding primitive hematopoietic stem and progenitor cells while maintaining their undifferentiated state. Our Hematopoietic Progenitor Cell (HPC) Expansion Medium XF provides a highly optimized, xeno-free culture system designed for robust expansion and reliable preservation of the CD34⁺ progenitor population, with options suitable for translational and GMP-compatible workflows.
  • Modeling the esophageal adenocarcinoma microenvironment within a cancer-on-chip platform

    Modeling the esophageal adenocarcinoma microenvironment within a cancer-on-chip platform

    Discover how to use 3D Tumorsphere Medium XF on the MIVO® cancer-on-chip platform to culture esophageal cancer spheroids, and create more physiologically relevant cancer models.
  • Pilot Evaluation Batch program

    Pilot Evaluation Batch program

    Our Pilot Evaluation Batch (PEB) program is a pilot-scale media manufacturing service designed to act as a bridge to Excipient GMP-grade media.
  • Laying the foundations for a robust stem cell workflow

    Laying the foundations for a robust stem cell workflow

    Learn how early process decisions can improve robustness, scalability, and reproducibility in stem cell therapy development in this RegMedNet interview featuring our expert Hagen Wieland.
  • Stem cell therapy - Building reproducible and scalable workflows

    Stem cell therapy - Building reproducible and scalable workflows

    Learn how to reduce variability and support successful translation in stem cell therapy development with our infographic on stem cell workflows.
  • From clumps to consistency: Advancing reproducible 3D cancer models

    From clumps to consistency: Advancing reproducible 3D cancer models

    Reliable 3D cancer models are essential—but conventional tumorsphere workflows can still produce inconsistent, heterogeneous clumps. In this webinar, we'll introduce a streamlined, matrix free workflow built around our 3D Tumorsphere Medium XF. This approach enables the generation of uniform, robust tumorspheres across multiple cancer types – without additional tools or extracellular matrices. We'll share data showing improved tumorsphere formation efficiency and long term expansion of patient derived tumor cells while preserving key tumor characteristics. We’ll then explore how these robust spheroids can be integrated into the MIVO® cancer on chip platform, from React4Life, to move from static cultures to dynamic, physiologically relevant systems. By recreating key biophysical cues of the tumor microenvironment, this approach supports more predictive studies of tumor behavior and drug response. What you'll learn: How to generate uniform, reproducible tumorspheres using a matrix free workflow Strategies to support cancer stem cell–driven growth across cancer types How to integrate 3D spheroids into dynamic cancer on chip systems How fluid flow and shear stress improve modeling of tumor invasion and drug efficacy
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