Roche and BioLamina Start Collaboration to Develop Novel Cell Culture Systems

8 Apr 2013

Product news

Roche and BioLamina, have announced the signing of a research and development agreement to jointly develop new cell culture systems for various applications, including stem cell research. The collaboration will focus on assessing laminin-based in-vitro cell culture matrices offering highly physiological microenvironments for living cells. Under the terms of the agreement Roche will provide R&D funding and scientific expertise to BioLamina. Financial details were not disclosed.

Laminins are proteins located in the extracellular matrix providing the stability essential for cell growth and behaviour. They are the only protein group in this environment that have a tissue-specific distribution, including expression of specific laminins during embryonic development. This makes them a very interesting target for new biologically relevant cell culturing techniques.

“Our aim is to develop laminin-based culture systems that provide biologically relevant, standardized environments”, said Ruedi Stoffel, Head of Biochemical Reagents & Custom Biotech at Roche. “We are looking forward to this collaboration to build on the revolutionary cell cultivation techniques developed by our colleagues at the Karolinska Institute and BioLamina.”

“We’re delighted that Roche has recognized the potential of our products and technology, which we believe will significantly complement their expertise and capabilities in cell culturing,” states Kristian Tryggvason, CEO of BioLamina. “By resolving many of the technical obstacles currently blocking the road to modern cell therapy, we expect this collaboration to accelerate the development of innovative cell culturing solutions that possibly can enable cell therapy”.

Tags

ElectrophoresisElectrophoresis equipment is used to separate mixtures of protein, DNA or RNA, based on their electric charge, size and other physical characteristics, by passing them through a medium such as a polyacrylamide gel, an agarose gel or a capillary tube. Electrophoresis equipment includes horizontal and vertical gel electrophoresis chambers, isoelectric focusing systems, 2D electrophoresis and capillary electrophoresis instruments. Precast gels with a gradient can be used or gels can be hand cast. Samples are run alongside ladders or markers to identify the approximate size of a molecule. Separated proteins and nucleic acids in the gel can be stained or probed with fluorescent markers and then imaged and detected using gel documentation instruments, transilluminators, densitometers and scanners. Find the best electrophoresis equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Cell / Tissue CultureCell culture or tissue culture is used to study the biology of cells or tissues and to isolate cellular products in an environment which can be manipulated and well defined. Accurately control your culture environment with bioreactors or culture incubators, bind your cells to a surface or together with an extracellular matrix. Distinguish cell types with differential media or proliferate cells with certain characteristics using selective media. Enrich your media with supplements such as growth factors, sera and vitamins. Find the best cell and tissue culture products, kits and equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Cell Lines Stem Cells and Primary CellsPrimary cell cultures, established cell lines and stem cells are vital for <i>in vitro</i> and <i>ex vivo</i> experimentation. High-quality cells, optimized for your applications, alongside optimized cell substrates, growth medium and supplements, are critical for experimental success. Explore a range of cells suitable for your applications, including isogenic cell lines, competent cells, induced pluripotent stem cell (iPSC)-derived cell lines, fungal/bacterial/mammalian cell lines, stem cells and cancer cell lines. Find the best cells for your research in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Protein CrystallographyProtein crystallization is the process of crystallizing purified proteins for 3D structure analysis by x-ray crystallography. The main methods of protein crystallization include sitting drop, hanging drop and microbatch. It is important to control parameters such as pH, temperature and concentration. Following crystallization, detectors and software are used for data collection and analysis.Stem Cell ResearchStem cells have the ability to produce identical daughter cells as well as progeny, which commit and differentiate. Stem cell research has exciting prospects of biomedical applications in cellular disease modeling, pharmaceutical screening, and regenerative medicine. Cell GrowthCell growth refers to the process by which cells increase in size and number. It is essential for tissue development, wound healing, and cancer research. Understanding and controlling cell growth is a fundamental part of cell biology and regenerative medicine. Browse our peer-reviewed product directory to find the best tools for studying cell growth, compare products, check reviews, and get pricing directly from manufacturers.