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

  • Article - 22/10/2019 AVA LifeScience-Gründer: Ulrich Birsner, Marc Kessemeier, Dr. Marcus Dühren-von Minden (von links nach rechts).

    Using CAR T cells for treating cancer

    After successes in the treatment of advanced blood cancers, CAR T-cell immunotherapy has become a major beacon of hope in oncology. The first therapies have received regulatory approval. Despite their success, these immunotherapies can have serious side effects. The company AVA Lifescience develops antibodies with high tumour specificity to use as the basis for effective precision-guided CAR T-cell therapies that are better tolerated by patients.

    https://www.gesundheitsindustrie-bw.de/en/article/news/using-car-t-cells-for-treating-cancer
  • Translational oncology - 26/05/2020 NCT_181204_3435.jpg

    Translation: driver of cancer medicine

    The fight against cancer is a pressing issue. Although technological advances in the treatment, prevention and early detection of cancer have improved over the past few decades, the number of people affected is increasing. Cancer medicine now wants to counteract this by joining forces with other players involved in the field.

    https://www.gesundheitsindustrie-bw.de/en/article/news/translation-driver-cancer-medicine
  • Inside the fight against COVID-19 - 28/10/2020 Apogenix_Asunercept_COVID-19_Teaser.png

    A new immunotherapeutic agent for treating severe COVID-19 cases

    Apogenix, a Heidelberg-based biopharmaceutical company specialising in innovative immunotherapeutics, has initiated a Phase II clinical trial with asunercept, the company’s lead drug candidate for treating severe cases of COVID-19. The fusion protein blocks the CD95-ligand-mediated death of epithelial cells in the lung and thus prevents damage to the organ.

    https://www.gesundheitsindustrie-bw.de/en/article/news/new-immunotherapeutic-agent-treating-severe-covid-19-cases
  • Development of anti-tumour agents - 20/03/2023 Drawing of the ER membrane with Sec61 channel to which the B-306 molecule binds. A pink arrow illustrates the calcium release into the cytosol.

    Targeting the protective shield of cancers

    Cancer cells have different mechanisms to help them escape destruction by the immune system. Solid tumours, for example, are often surrounded by a protective layer of lactate, which has a strong immunosuppressive effect. WMT AG from Heidelberg is developing small drug molecules that reduce lactate production and thus make cancer cells vulnerable to immune system attacks.

    https://www.gesundheitsindustrie-bw.de/en/article/news/targeting-protective-shield-cancers
  • Detecting drug resistance of tumour cells - 25/05/2023 The picture shows microscope images of model cell lines.

    AI-assisted diagnostics declares war on lung cancer

    Lung cancer is one of the most common cancers and has a particularly high mortality rate. A significant challenge in treating this disease lies in the resistance of lung tumours to conventional drug therapies, rendering chemotherapy ineffective. There is hope on the horizon as a team of experts from Baden-Württemberg has joined forces to develop an innovative AI-supported test procedure that paves the way for individualised therapy approaches.

    https://www.gesundheitsindustrie-bw.de/en/article/news/ai-assisted-diagnostics-declares-war-lung-cancer
  • Press release - 07/01/2025

    Researchers have a better understanding of how our cells dispose of waste while developing ways to control it

    A research team from Freiburg and Frankfurt has discovered how cells recognise and internally break down waste. The results are relevant for the development of therapies for diseases such as Alzheimer’s.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/researchers-have-better-understanding-how-our-cells-dispose-waste-while-developing-ways-control-it
  • Photoimmunotherapy - 09/04/2026 Zu sehen ist in einer Fluoreszenz-Aufnahme unter dem Mikroskop runde Ansammlungen in blauer Farbe, die die Zellkerne darstellen und rote Signale dicht daneben, die die Konjugate darstellen, all´ das vor schwarzem Hintergrund.

    Switching off tumours with light: how photons can be used to target prostate cancer

    Prostate cancer is the most common cancer among men in Germany. Relapses and the harsh side effects of traditional treatments remain a major challenge, even with advanced surgical techniques. At the University of Freiburg, Dr. Wolf is pioneering the development of photoimmunotherapy. Photoimmunotherapy combines light, antibodies and a specialised dye to precisely target tumour cells - simultaneously 'waking up' the immune system.

    https://www.gesundheitsindustrie-bw.de/en/article/news/switching-tumours-light-how-photons-can-be-used-target-prostate-cancer
  • Press release - 07/11/2025

    Overcoming Tumor Resistance to Immunotherapy: The European Research Council awards international project led by Heidelberg Medical Faculty

    In the PRECISION-ImmunoRad project, a multidisciplinary team of scientists from Heidelberg, USA, and Cyprus will unite their expertise to develop novel curative therapeutic strategies for currently hard-to-treat cancers. These strategies will integrate high-precision ion beam therapy with genetically engineered immune cells therapies (CAR-T cells), personalized cancer vaccines, and the targeted reprogramming of the tumor immune microenvironment.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/overcoming-tumor-resistance-immunotherapy-european-research-council-awards-international-project-led-heidelberg-medical-faculty
  • Press release - 28/04/2026

    Breast cancer brain metastases: patterns in immune cells could improve therapy decisions

    Brain metastases are among the most serious complications of breast cancer. Researchers at Heidelberg University, DKFZ, and UKHD have concluded an investigation of the immune cells in the brain tissue surrounding these breast cancer brain metastases. Their findings: spatial distribution patterns of immune cells are associated with prolonged patient survival. These findings could help to guide use of immunotherapies for breast cancer patients.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/breast-cancer-brain-metastases-patterns-immune-cells-could-improve-therapy-decisions
  • Press release - 15/05/2024

    Tumour tissue on a chip: new possibilities for cell therapies and personalized medicine

    How do tumors react to a certain therapeutic approach? Knowing this before the start of a therapy would be of enormous value for people suffering from cancer as well as for the doctors treating them. Researchers have now made this very observation possible for the CAR-T cell therapy. This allows us to individually investigate how exactly these tumor cells react to the planned therapy.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/tumour-tissue-chip-new-possibilities-cell-therapies-and-personalized-medicine
  • Press release - 23/05/2024

    Predicting cancer risks on the basis of national health data

    Scientists from the German Cancer Research Center (DKFZ) and the European Bioinformatics Institute EMBL-EBI, Hinxton, UK, are using the Danish health registers to predict individual risks for 20 different types of cancer with a high degree of accuracy. The prediction model can also be transferred to other healthcare systems.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/predicting-cancer-risks-basis-national-health-data
  • Press release - 22/08/2024

    Validated targets for personalized cancer immunotherapy

    Knowledge of the target structures for the immune cells is a basic prerequisite for the development of personalized cancer immunotherapies. Scientists from the German Cancer Research Center and the NCT Heidelberg are publishing a sensitive method based on mass spectroscopy to identify such tumor-specific "neoepitopes". The analytical method is designed to detect these low abundance protein fragments and requires minimal amounts of…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/validated-targets-personalized-cancer-immunotherapy
  • Press release - 17/03/2026

    Targeting Cancer Drugs More Effectively: First EU Project Integrates Pharmacogenomics into Tumor Boards

    The Dr. Margarete Fischer-Bosch Institute for Clinical Pharmacology (IKP) at the Bosch Health Campus in Stuttgart is leading Europe’s first EU project to systematically integrate pharmacogenomics into molecular tumor boards (MTB). The goal of PGxMTB is to systematically incorporate patients’ genetic factors into treatment decisions, thereby making cancer therapies safer and more effective.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/targeting-cancer-drugs-more-effectively-first-eu-project-integrates-pharmacogenomics-tumor-boards
  • New edition - 24/05/2019 Magnetic resonance image of brain metastases.

    Tumour metastasis

    Cancer is usually not curable when metastases have formed in the body. Metastases are often resistant to drugs that have successfully eliminated the primary tumour. The basic features of the complex process of metastasis are now known, but many details still remain elusive. Intensive research activities are focusing on new therapeutic concepts aimed at developing effective anti-metastatic therapies.

    https://www.gesundheitsindustrie-bw.de/en/article/dossier/tumour-metastasis
  • TWYCE GmbH - 10/07/2024 A micrograph shows how two T cells attack two tumour cells.

    Better immune response against prostate cancer thanks to new bispecific antibodies

    TWYCE, a Tübingen-based start-up spun off from the German Cancer Research Center in Heidelberg and the Faculty of Medicine at the University of Tübingen, is focused on developing a combinatorial therapy using two bispecific antibodies from bench to clinical practice. The founders aim to introduce an effective strategy for combating solid tumours, with initial proof of concept targeted at prostate cancer.

    https://www.gesundheitsindustrie-bw.de/en/article/news/better-immune-response-against-prostate-cancer-thanks-new-bispecific-antibodies
  • Press release - 16/06/2025

    Novel laboratory models pave the way for targeted therapies for childhood sarcomas

    Sarcomas in soft tissue usually occur in young people and are difficult to treat. Due to a lack of laboratory models, the causes of their development are poorly understood. A team of researchers has now succeeded in creating mouse models with a functioning immune system that replicate sarcoma types that remain unstudied. The method opens up new avenues for the targeted development of immunotherapies for children and adolescents with sarcomas.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/novel-laboratory-models-pave-way-targeted-therapies-childhood-sarcomas
  • Press release - 21/08/2025

    Nanodroplets Could Speed Up the Search for New Medicine

    Until now, the early phase of drug discovery for the development of new therapeutics has been cost- and time-intensive. Researchers at KIT have developed a platform on which extremely miniaturized nanodroplets with a volume of 200 nanoliters per droplet and containing 300 cells per test can be arranged. This platform enables the researchers to synthesize and test thousands of therapeutic agents on the same chip, saving time and resources.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/nanodroplets-could-speed-search-new-medicine
  • Press release - 19/09/2024

    Quality standards for looking into the tumor genome

    Personalized medicine with individually tailored therapies is becoming more a reality in cancer. This requires a look into the genetic material of tumors, a molecular diagnostic tumor profile. A research group from the German Network for Personalized Medicine (DNPM) has recorded the quality standards according to which genome analyses are carried out in Germany. The data is a prerequisite for integrating gene sequencing into routine care.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/quality-standards-looking-tumor-genome
  • Press release - 11/07/2025

    Molecular arms race: How the genome defends itself against internal enemies

    An international research team has deciphered a mechanism of evolutionary arms race in human cells. The findings provide insights into how mobile elements in DNA hijack cellular functions – and how cells can defend themselves against this in order to prevent conditions such as tumour formation or chronic inflammation.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/molecular-arms-race-how-genome-defends-itself-against-internal-enemies
  • Review article (new edition) - 08/07/2020 Arm in den mithilfe einer Spritze eine Impfung gespritzt wird.

    Immunology – at the forefront of medical progress

    Immunology is constantly changing with the emergence of new technologies and areas of application, and has branched out in many directions. Immunological approaches are central to everything – be it the development of innovative active substances and vaccinations against cancer, the search for new therapies against neurodegenerative diseases or autoimmune diseases, or combatting well-known infectious diseases or new virus epidemics.

    https://www.gesundheitsindustrie-bw.de/en/article/dossier/immunology-forefront-medical-progress
  • Vaccine development - 02/06/2020 07777_de.jpg

    CureVac as a pioneer of mRNA technology - what is behind the novel COVID-19 vaccine?

    All eyes are on vaccines against the coronavirus. The Tübingen-based company CureVac is doing pioneering work in this field, and intends to initiate clinical testing of its lead vaccine candidate in June. At the same time, Curevac is manufacturing the material for this vaccine candidate. But that’s not all: the novel mRNA technology also has the potential to revolutionise the treatment of cancer and metabolic diseases. What makes the method so…

    https://www.gesundheitsindustrie-bw.de/en/article/news/curevac-als-pionier-der-mrna-technologie-was-steckt-hinter-dem-neuartigen-covid-19-impfstoff

Page 2 / 2

sb_search.block.search_result.other.pages

  • eine Seite vor
  • 1
  • 2
  • 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