Jump to content
Powered by BIOPRO BW
  • BIOPRO BW
  • Healthcare industry
  • Bioeconomy
  • 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 - 09/07/2024

    Unique characteristics of previously unexplored protein discovered

    Freiburg-Prague research collaboration achieves scientific breakthrough in understanding cell division. The international research collaboration has uncovered a new mechanism of the crosstalk between microtubules and actin cytoskeleton during cell division and revealed unique characteristics of the previously unexplored protein FAM110A.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/unique-characteristics-previously-unexplored-protein-discovered
  • Stem cell research - 14/03/2024 Image of red and blue coloured, round structures.

    Using organoids to gain a better clinical understanding of pancreatic cancer

    Prof. Dr. Alexander Kleger carries out translational research at Ulm University Hospital to gain a better understanding of pancreatic ductal adenocarcinoma (PDAC) and develop individualised treatments. He and his team are using organoid models and stem cell-based systems and have succeeded in simultaneously cultivating all three main cell types of the pancreas from pluripotent stem cells.

    https://biopro-v9-test-gi.xanium.io/en/article/news/using-organoids-gain-better-clinical-understanding-pancreatic-cancer
  • Neurosciences - 28/02/2024 A microscopic image shows how a brain organoid grows around and through the mesh microelectrode array.

    Mesh microelectrode arrays: research with brain organoids on a new level

    How does the brain work? Brain organoids are derived from pluripotent stem cells and regarded as valuable model systems that can depict some aspects of neurological functioning. Dr. Peter Jones from NMI together with Dr. Thomas Rauen from the MPI for Molecular Biomedicine in Münster, has taken organoid research to a new level. His novel mesh microelectrode array (Mesh-MEA) greatly improves the growth and electrophysiological analysis of tissue.

    https://biopro-v9-test-gi.xanium.io/en/article/news/mesh-microelectrode-arrays-research-brain-organoids-new-level
  • Press release - 22/02/2024

    A new approach to recording cellular activities

    In living cells, a vast number of transient events occur simultaneously. The recording of these activities is a prerequisite for a molecular understanding of life. Scientists at the MPI for Medical Research in Heidelberg and their collaboration partners have created a novel technology that allows cellular events to be recorded through chemical labeling with fluorescent dyes for later analysis, opening up new ways to study cellular physiology.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/new-approach-recording-cellular-activities
  • Press release - 31/01/2024

    Precursor of Cholesterol Protects Cancer Cells From Cell Death and Makes them Aggressive

    A precursor of cholesterol can protect cancer cells from a form of cell death known as ferroptosis. Scientists of the University of Würzburg, the German Cancer Research Center (DKFZ), and the Stem Cell Institute HI-STEM* published this finding in the journal Nature. The results opens up exciting prospects for further improving the treatment of cancer and other diseases associated with oxidative stress and ferroptosis.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/cholesterin-vorstufe-schuetzt-krebszellen-vor-zelltod-und-macht-sie-aggressiver
  • DNA nanotechnology - 25/08/2023 Graphic representation of the transport mechanism induced by digestion with RNase H of a vesicle shown in red along gray colored filaments.

    Artificial cytoskeleton made of DNA for synthetic cells

    The physicists Prof. Dr. Kerstin Göpfrich and Prof. Dr. Laura Na Liu want to understand life from the bottom up. They intend to do this by constructing an artificial cell. However, rather than natural protein building blocks, they are using 3D-DNA structures as construction material. The first step involved creating an artificial cell skeleton that dynamically assembles and disassembles like the biological model and can transport vesicles.

    https://biopro-v9-test-gi.xanium.io/en/article/news/artificial-cytoskeleton-made-dna-synthetic-cells
  • Press release - 17/05/2023

    Playing hide and seek in the centromere

    Centromeres, the DNA sections often found at the center of the chromosomes, display enormous interspecies diversity, despite having the same vital role during cell division across almost the entire tree of life. An international team of researchers has discovered that the variation in centromere DNA regions can be strikingly large even within a single species. The findings, now published in the journal Nature, shed light on the molecular…

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/playing-hide-and-seek-centromere
  • Press release - 19/09/2022

    How stressed tumor cells escape cell death: new mechanism discovered

    Because of their highly active metabolism, many tumors are susceptible to a special type of cell death, ferroptosis. Nevertheless, cancer cells often manage to escape this fate. Scientists at the German Cancer Research Center have now discovered a new mechanism by which normal as well as cancer cells protect themselves against ferroptosis.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/how-stressed-tumor-cells-escape-cell-death-new-mechanism-discovered
  • 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
    • Bioeconomy
  • 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
© 2025
Website address: https://biopro-v9-test-gi.xanium.io/en/search