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  • SolidCAR-T project - 15/03/2022 Drawing illustrating the individual steps inside a mini-factory, starting with the collection of T lymphocytes, the preparation, processing and post-processing of the CAR T cells and ending with the treatment of the patient.

    Modular ‘mini-factories’ for decentralised production of CAR T cells

    Novel CAR T-cell therapies have proved to be promising therapeutic options for the treatment of acute leukaemias and lymphomas. Researchers from the Fraunhofer IPA in Stuttgart, the University Hospital Tübingen and the NMI in Reutlingen have joined forces in the SolidCAR-T project that aims to generate CAR T cells to combat solid tumours and produce these cells directly on site in the clinic using automated 'mini-factories'.

    https://biopro-v9-test-gi.xanium.io/en/article/news/modular-mini-factories-decentralised-production-car-t-cells
  • Press release - 01/03/2022

    CureVac Establishes Fully-Owned Company Dedicated to Advancing The RNA Printer®

    The RNA Printer® is CureVac’s integrated and automated manufacturing solution for RNA vaccines and therapeutics. CureVac RNA Printer GmbH to provide dedicated infrastructure to accelerate development and broaden application range of The RNA Printer®. Dr. Markus Bergmann appointed as General Manager for CureVac RNA Printer GmbH.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/curevac-gruendet-tochtergesellschaft-zur-weiterentwicklung-des-rna-printer
  • Laboratory automation - 29/11/2021 Mixer-16_Mittel_Teaser.jpg

    Reaching the goal quickly and efficiently with the help of artificial intelligence

    Medical research is slow, costly and time-consuming. The system developed by the start-up LABMaiTE could soon change that. With the help of artificial intelligence, it will be possible to automate laboratory experiments and collect and analyse data at the same time.

    https://biopro-v9-test-gi.xanium.io/en/article/news/reaching-goal-quickly-and-efficiently-help-artificial-intelligence
  • Press release - 14/04/2021

    Engineering T cells for cancer therapy efficiently and safely

    Genetically enhancing a patient's immune cells by adding therapeutic genes to them outside the body is regarded as a promising new treatment approach in oncology. However, the production of these therapeutic cells using viruses is not only expensive but time-consuming. Researchers at the German Cancer Research Center (DKFZ) have developed an innovative non-viral vector that can efficiently introduce therapeutic genes into immune cells.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/engineering-t-cells-cancer-therapy-efficiently-and-safely
  • Press release - 01/02/2021

    Targeting a rapid market breakthrough for new vaccine production method

    In a so-called inactivated or killed vaccine, the virus particles it contains are first rendered inactive by means of the toxic chemical formaldehyde. A better way of achieving this, however, is to irradiate the pathogens with low-energy electrons. Four Fraunhofer Institutes have now developed a new method of vaccine production based on this technique that is not only quicker but also guarantees a higher quality of product.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/targeting-rapid-market-breakthrough-new-vaccine-production-method
  • Expert interview - 16/01/2019 Photo of Holger Mettler

    Cybersecurity is an important issue for the pharmaceutical industry

    In an increasingly interconnected world, the pharmaceutical and biotechnology sectors need to be aware of cybersecurity threats in manufacturing. We talked about these threats with Holger Mettler who is in charge of computer system validation and cybersecurity at Exyte (formerly M + W), a global enterprise that designs, engineers and constructs complex manufacturing facilities and buildings for the life sciences industry.

    https://biopro-v9-test-gi.xanium.io/en/article/news/cybersecurity-is-an-important-issue-for-the-pharmaceutical-industry
  • High-tech - 20/10/2016 Man standing in front of a robot.

    Industry 4.0 in the medical technology and pharmaceutical industry sectors

    The digitalisation of industry affects the entire value chain. From individual products to digitising workflows in companies and connecting companies with clients and service providers via the Internet of Things – Industry 4.0 makes completely new manufacturing processes possible and requires new and specific business models.

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/industry-40-in-the-medical-technology-and-pharmaceutical-industry-sectors
  • Dossier - 28/04/2014 Researcher sitting in front of two screens, visualising a protein on the screen using a specific software.<br />

    Data mining new opportunities for medicine and public health

    Research and healthcare activities produce huge quantities of data that need to be presented in an understandable structure. This requires computer-assisted extraction of relevant data and the use of statistical methods. This process, known as data mining, enables the discovery of patterns in large data sets. Data mining methods are of particular importance in fields that use high-throughput, visualisation methods and telemedical applications.

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/data-mining-new-opportunities-for-medicine-and-public-health
  • Dossier - 31/03/2014 Teaser_adrenomedullin_WikimediaImages_pixabay_g566109ad4_1920.jpg

    Peptides diverse molecules of life

    Peptides exist in all organisms, wherever there are cells. The range of their physiological functions is huge. Biologically active peptides can act as hormones, neurotransmitters, growth factors as well as toxins and antibiotics. This is what makes them highly interesting drug leads. They are used for the treatment of autoimmune diseases, cancer and other diseases. Peptides are gaining in importance as candidates for drugs.

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/peptides-diverse-molecules-of-life
  • Dossier - 25/03/2013 19401_de.jpg

    Biotechnology goes automated

    Processes that previously required pipetting analysis and production to be carried out manually are increasingly now controlled by automated systems. However this has not necessarily involved a complete reinvention of the wheel instead automation systems used in the plant construction and mechanical engineering sectors are being adapted and optimised for application in the life sciences.

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/biotechnology-goes-automated
  • Dossier - 26/11/2012 Electron micrograph of fluorescence-stained chromosomes

    Genetic diagnostics technology reaches the limits of what is medically reasonable

    Rapid progress in sequencing technologies is poised to set the imagination of biomedical researchers on fire. Experts now believe that progress is about to make possible what seemed to be utopian a few years ago – it seems likely that it will soon be possible to sequence the human genome in only a few minutes and store and automatically analyse it using tiny automates. However, is everything that is technically feasible also reasonable?

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/genetic-diagnostics-technology-reaches-the-limits-of-what-is-medically-reasonable
  • Dossier - 18/06/2012 import_03860_de.jpeg

    Biobanks treasure chests for biomedical research

    The Research Committee at the German Bundestag, the Office of Technology Assessment at the German Bundestag and the German Ethics Council are all interested in this biomedical research tool, which is both necessary and meaningful. However, opinions with regard to the ethical, legal and technical approach to biobanks differ. Since March 2012 it has become absolutely clear that Germany will not pass a biobanking law during the current mandate.

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/biobanks-treasure-chests-for-biomedical-research

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