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The Rise of 3D Cell Culture and in vitro Model Systems for Drug Discovery and Toxicology
An overview of the current technology and the challenges and benefits over 2D cell culture models plus some of the latest advances relating to human health research.
A Boost for Regenerative Medicine
Growing tissues and organs in the lab for transplantation into patients could become easier after scientists discovered an effective way to produce three-dimensional networks of blood vessels, vital for tissue survival yet a current stumbling block in regenerative medicine.
Bio-Mimicry Method For Preparing & Labeling Stem Cells Developed
Method allows researchers to prepare mesenchymal stem cells and monitor them using MRI.
Stem Cell Advance Could Be Key Step Toward Treating Deadly Blood Diseases
UCLA scientists get closer to creating blood stem cells in the lab.
Harnessing Engineered Slippery Surfaces For Tissue Repair
A new method could facilitate the transfer of intact regenerating cell sheets from the culture dish to damaged tissues in patients.
Brazilian Zika Virus Strain Causes Birth Defects in Experimental Models
First direct experimental proof of causal effect, researchers say.
Gut Model HuMiX Works Like the Real Thing
Developed by scientists at the Luxembourg Centre for Systems Biology, the “Human Microbial Cross-talk” model is representative of the actual conditions and processes that occur within our intestines.
'Kidney on a Chip' Facilitates Safer Drug Dosing
University of Michigan researchers have used a "kidney on a chip" device to mimic the flow of medication through human kidneys and measure its effect on kidney cells.
New Method Allows First Look At Embryo Implantation
Researchers at The Rockefeller University develop a method that shows the molecular and cellular processes that occur up to day 14 after fertilization.
Detecting Nano Amounts In Environmental Samples
The NanoUmwelt project is developing a technique that can detect nanomaterials in a variety of environmental samples.
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Custom Optimization of Cell Culture Media for Production of Viral Vaccines
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Vivalis, a Nantes, France-based biotechnology company,has developed EB66®, a novel cell line derived from duck embryonic stem cells for the cell culture production of viral vaccines. The cell line circumvents the quality and quantity control issues associated with traditional chicken egg andprimary chicken embryo fibroblasts, while eliminating the risk of contamination and the costs associated with serum for growing the fibroblasts. As a result, EB66 cells have become a superior industry alternative for the safe, cost effective manufacturing of viral vaccines. Vivalis offers research and commercial licenses for this cell line to pharmaceutical and biotechnology companies for the production of prophylactic and therapeutic vaccines.

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