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Symposium Roundup from World Preclinical Congress Europe, 27th-30th November 2018, Lisbon

Symposium Roundup from World Preclinical Congress Europe, 27th-30th November 2018, Lisbon

by Karen O'Hanlon Cohrt | Dec 17, 2018 | Industry News

The increasing complexity of novel therapies calls for disease models that take us closer than ever before to the in vivo situation, to maximize efficacy and safety evaluations of new experimental treatments. Significant improvements in our understanding of mammalian...

About Tempo BioScience

Fascinated by self-assembly of cells in spheroids or organoids? Excited to develop and characterize functionally relevant human iPSC disease models? Tempo Bioscience is a cash-positive product-focused trendsetter in the areas of human iPSCs and novel proprietary biosensors. We are growing and are looking for key hires to expand.  Join us and be a part of the team that will grow the company from the ground up and build a business that lasts.

Our Mission is to develop patient-relevant iPSC-based models for 10,000+ human diseases to advance science and medicine. 

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Resources

The promises and problems with ADCs

The promises and problems with ADCs

Antibody drug conjugates (ADCs) are targeted cancer therapies that combine the specificity of monoclonal antibodies with the potency of cytotoxic drugs. In contrast to conventional...

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CRISPR Screen Identifies Potential New Regulators of Fibrosis in Human Liver Cells

CRISPR Screen Identifies Potential New Regulators of Fibrosis in Human Liver Cells

In our last few liver articles, we highlighted the urgent need for new models and treatments for non-alcoholic steatohepatitis (NASH), and looked at the potential for human liver organoids to...

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Human Liver Organoids as a New Model for Non-Alcoholic Fatty Liver Disease

Human Liver Organoids as a New Model for Non-Alcoholic Fatty Liver Disease

The lack of approved treatments for non-alcoholic fatty liver disease (NAFLD) and non-alcoholic steatosis (NASH) is largely explained by the shortcomings of cellular models used to unravel...

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    • Biosensor Assays
      • TempoATP™ for ATP Metabolism
      • TempoCAL™ for Calcium
      • TempoMito™ for Mitochondria
      • TempoO2™ for Oxygen Metabolism
      • TempoVOL™ for Cationic Voltage
    • Induced Pluripotent Stem Cells (IPSC)
      • iAstro™ Astrocytes
      • iBMEC™ Brain Microvascular Endothelial Cells
      • iCardio™ Cardiomyocytes
      • iCort™ Cortical Neurons
      • iDopaNer™ Dopaminergic Neurons
      • iHep3D Hepatocytes
      • iHepStellate Hepatic Stellate
      • iHepStellate™-iKupffer™-iLSEC™-iHep3D™ 3D organoid
      • iKer™ Keratinocytes
      • iKidneyPod™ Kidney Proximal Tubules and Podocyte 3D Spheroids
      • iKupffer Kupffer Cells
      • iLSEC Liver Sinusoidal Endothelials
      • iMel™ Melanocytes
      • iMG™ Microglia
      • iMono™ CD14+ Monocytes
      • iMotorNer™ Motor Neurons
      • iMSC™ Mesenchymal
      • iNStem™ Neural Progenitor
      • iOligo™ Oligodendrocyte Progenitor
      • iOsteo™ Osteoblasts
      • iPeri™ Pericytes
      • iPhago™ Phagocytes
      • iRPE™ Retinal Pigment Epithelials
      • iSchwann™ Schwann
      • iSenso™ Sensory Neurons
    • TempoStemBank™
    • Cell Culture Solutions
  • Applications
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