Jump to content
Powered by BIOPRO BW
  • BIOPRO BW
  • Healthcare industry
  • Project pages
    • MDR & IVDR
    • Innovation & Startups
Healthcare industry Logo

Main navigation

  • Start page Start page
  • Healthcare industry BW

    Healthcare industry BW

    Close Close
    • At a glance
    • The biotechnology sector
    • Medical technology
    • The pharmaceutical industry
    • Training & university education
    • Company foundation
    • Infrastructure
    • Clusters & Networks
  • Articles

    Articles

    Close Close
    • Latest news
    • Selected press releases
    • Dossiers
    • Red biotechnology
    • Medical technology
    • Pharmaceutics
    • Diagnostics
    • Basic research
    • Selected publications
  • Events

    Events

    Close Close
  • Databases

    Databases

    Close Close
    • Funding
    • Healthcare industry database
    • Research institutions
  • BIOPRO services

    BIOPRO services

    Close Close
    • BIOPRO services and offers
    • Contacts
    • Information channels
  • de
  • en
Show menu Show menu

You are here:

  1. Home
  2. Search
Show:Results per page
  • 25Show results
  • 50Show results
  • 75Show results

Search Results

  • Press release - 18/06/2026

    Tailor-made functionalized gelatin – manufactured with reproducible results

    Gelatin is a versatile natural material. To tailor its properties specifically to the various applications in medicine, diagnostics, and cosmetics, the Fraunhofer IGB has developed a toolbox for chemical functionalization. With the help of automated processes, the modifications can now be scaled under defined conditions, and reproducible batches of modified gelatin can be produced on a scale ranging from grams to kg for customer sampling.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/tailor-made-functionalized-gelatin-manufactured-reproducible-results
  • Press release - 23/04/2026

    Molecular research: When speed meets precision

    Within biological cells, molecules are constantly in motion. Investigating these motions, however, is still difficult, due to the fact that these processes occur on very small length and time scales. To overcome these challenges, researchers from HITS and MPI-P have developed a simulation method that works rapidly and can predict chemical processes in cells with high precision. Their findings have been published in Nature Communications.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/molecular-research-when-speed-meets-precision
  • Press release - 20/04/2026

    3D-Printed Tissue Substitute

    A novel biomimetic tissue substitute combines precisely tunable mechanical properties with biological functionality and is now ready for applications in medical technology. The material was developed in the »PolyKARD« project by Fraunhofer IAP and the NMI Natural and Medical Sciences Institute. From 20.-24.04, 2026, the material will be presented together with further developments at the Hannover Messe, Fraunhofer joint booth.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/3d-printed-tissue-substitute
  • Proof-of-concept study of organoid technology - 26/03/2026 Smiling man with glasses wearing a white lab coat.

    Can organoids improve the treatment of pancreatic cancer?

    A clinical trial called UNITEPANC is exploring whether organoid-based approaches can improve the treatment of pancreatic cancer. BIOPRO Baden-Württemberg spoke with the study’s principal investigator and pancreatic cancer specialist, Prof. Dr. Thomas Seufferlein of University Hospital Ulm, to discuss the disease more broadly along with the specific aims of the trial. The interview was conducted by Walter Pytlik on behalf of BIOPRO.

    https://www.gesundheitsindustrie-bw.de/en/article/news/can-organoids-improve-treatment-pancreatic-cancer
  • Press release - 01/10/2024

    Reporter Skin: In-vitro Skin Makes Cell Reaction to Test Substance Measurable in Real Time

    At the Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB, a three-dimensional skin model has now been set up for the first time that directly displays the skin's reaction to substances: The reporter skin. Thanks to the built-in reporter, the cellular response can be measured precisely and quickly – using a living model.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/reporter-skin-vitro-skin-makes-cell-reaction-test-substance-measurable-real-time
  • Press release - 05/09/2024

    Cohesion at the cellular level: flexible yet stable

    Research teams from the Universities of Konstanz and Potsdam are analyzing how proteins work together to enable our cells to both stick and move. The marker protein paxillin is at the centre of their interest.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/cohesion-cellular-level-flexible-yet-stable
  • Press release - 13/06/2024

    Eyesight from a 3D Printer

    Printing a new cornea during an operation to restore a patient’s eyesight: This groundbreaking step in the fight against corneal disorders is set to become reality with a laser based process using personalized bioink. The method was developed by researchers at the Karlsruhe Institute of Technology (KIT) in collaboration with Carl Zeiss Meditec AG and Evonik Healthcare. Their project won the idea award in this year’s NEULAND innovation contest.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/eyesight-3d-printer
  • Press release - 22/05/2024

    Stretched beyond the limits of the cell: the molecular biomechanics of collagen

    Together with colleagues from Israel and USA, HITS researcher Frauke Gräter investigates the effects of physical force on the collagen protein in two different animal model systems. Their goal is to measure the effects of mechanoradicals on the integrity of the tissue and the well-being of the organism, with impact on health and aging.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/stretched-beyond-limits-cell-molecular-biomechanics-collagen
  • Press release - 18/04/2024

    Collagen: Researchers at the NMI decipher how it works in medical treatment

    Collagen has been used in ophthalmology since the 1990s, particularly in the treatment of corneal defects. However, why and how this technique works was only known in theory. Researchers at the NMI Natural and Medical Sciences Institute in Reutlingen led by Lu Fan have found the necessary evidence and can now reliably explain how this technique works.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/collagen-researchers-nmi-decipher-how-it-works-medical-treatment
  • Extend search to all portals
  • Search the Healthcare industry database
  • Search the Research institutions
Search terms
Portal
Information type
  • Type
    Event date
    From
    To
  • Type
  • Publication date
    Topics
    Topics
  • Publication date
Reset

Footer navigation

  • Healthcare industry BW
    • At a glance
    • The biotechnology sector
    • Medical technology
    • The pharmaceutical industry
    • Training & university education
    • Company foundation
    • Infrastructure
    • Clusters & Networks
  • Articles
    • Latest news
    • Selected press releases
    • Dossiers
    • Red biotechnology
    • Medical technology
    • Pharmaceutics
    • Diagnostics
    • Basic research
    • Selected publications
  • Events
  • Databases
    • Funding
    • Healthcare industry database
    • Research institutions
  • BIOPRO services
    • BIOPRO services and offers
    • Contacts
    • Information channels
  • Project pages
    • MDR & IVDR
    • Innovation & Startups
  • Portals
    • BIOPRO BW
    • Healthcare industry
  • To top

stay informed

Newsletter abonnieren

Social Media

  • Xing Xing
  • Twitter visit Twitter
  • LinkedIn visit LinkedIn
  • Rss visit RSS
  • Privacy statement
  • Accessability Declaration
  • Legal notice
  • Sitemap
  • Contact
© 2026
Website address: https://www.gesundheitsindustrie-bw.de/en/search