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  • 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://biopro-v9-test-gi.xanium.io/en/article/news/better-immune-response-against-prostate-cancer-thanks-new-bispecific-antibodies
  • Press release - 05/07/2024

    Outstanding ideas – new imaging processes for cancer diagnostics and nanopropellers for ocular gene therapy

    The summer reception hosted by BioRegio STERN Management GmbH has once again provided a fitting backdrop for the Science2Start award ceremony. Last Thursday, at Tübingen observatory, was the 15th time that scientists and start-up founders were celebrated for outstanding ideas that a panel of experts judged to have special economic potential.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/outstanding-ideas-new-imaging-processes-cancer-diagnostics-and-nanopropellers-ocular-gene-therapy
  • Press release - 04/07/2024

    Antibody can improve immune cell therapy against leukemia

    Scientists from the German Cancer Research Center (DKFZ) and Heidelberg University Hospital (UKHD) have shown that the combination of therapeutic immune cells, known as CAR T cells, and a bispecific antibody could improve the treatment of leukaemia. In the culture dish and in mice, they tested CAR-T cells directed against the B-cell marker CD19 in combination with bispecific antibodies that bind to the B-cell-specific protein CD20.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/antibody-can-improve-immune-cell-therapy-against-leukemia
  • Press release - 23/05/2024

    "They heal wounds, allow bones to grow and calm inflammation" MWK funds cell therapy research into mesenchymal stromal cells with 600,000 euros

    The Baden-Württemberg Ministry of Science, Research and Arts (MWK) is supporting medical researchers at Ulm University with start-up funding totalling 600,000 euros. The aim is to establish an EU consortium for the broad therapeutic use of mesenchymal stromal cells. The funding is being awarded as part of the "BEGIN - Participation in major European projects and initiatives" programme.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/they-heal-wounds-allow-bones-grow-and-calm-inflammation-mwk-funds-cell-therapy-research-mesenchymal-stromal-cells-600000-euros
  • 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://biopro-v9-test-gi.xanium.io/en/article/press-release/tumour-tissue-chip-new-possibilities-cell-therapies-and-personalized-medicine
  • Press release - 14/03/2024

    Machine learning classifier accelerates the development of cellular immunotherapies

    Making a personalised T cell therapy for cancer patients currently takes at least six months; scientists at the German Cancer Research Center (DKFZ) and the University Medical Center Mannheim have shown that the laborious first step of identifying tumor-reactive T cell receptors for patients can be replaced with a machine learning classifier that halves this time.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/machine-learning-classifier-accelerates-development-cellular-immunotherapies
  • Press release - 06/02/2024

    New T-FINDER Platform Provides Deep Insights Into T Cell Responses Against Novel Cancer Vaccine

    BioMed X and the Universitätsmedizin Mannheim announced today the publication of two manuscripts in the field of cancer immunology in the journal Science Advances. The work is based on a collaboration bet- ween both institutions and researchers at the German Cancer Research Center (DKFZ), the Heidelberg Uni- versity, and the Helmholtz Institute for Translational Oncology (HI-TRON).

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/neue-t-finder-plattform-liefert-tiefe-einblicke-t-zell-antwort-auf-neuartigen-krebsimpfstoff
  • Press release - 06/11/2023

    Improving the efficacy of cancer immunotherapy with modified CAR-T cells

    CAR-T cell therapy is a last hope for many patients with blood, bone marrow or lymph gland cancer when other treatments are unsuccessful. A limiting factor of this very effective and safe therapy is that the cells used in the process quickly reach a state of exhaustion. Researchers at the University of Freiburg have now been able to prevent this exhaustion and thus significantly improve the effect of the therapy in a preclinical animal model.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/improving-efficacy-cancer-immunotherapy-modified-car-t-cells
  • Project BlindZero - 03/08/2023 The two researchers in the laboratory in front of the 3D printer and with a Petri dish with the cornea in their hands.

    Hope for patients with eye diseases: human cornea from 3D printers

    Thousands of cornea transplants are performed every year. However, donors are rare and the procedure is not always without complications. Researchers at the University of Heidelberg are developing an innovative technique in the project BlindZero. It involves ‘printing’ human corneas directly onto patients’ eyes using 3D bioprinting. The reprogrammed genetically engineered cells used for this purpose are not expected to cause a rejection reaction.

    https://biopro-v9-test-gi.xanium.io/en/article/news/hope-patients-eye-diseases-human-cornea-3d-printers
  • Predicting the success of cancer treatment - 20/06/2023 Graphical representation of the course of intestinal microbiome analysis in CAR-T cell therapy patients.

    Focusing on gut microbiome for CAR T-cell therapy

    Cancer immunotherapies use the body's own defences to fight tumour cells. An international consortium of researchers from Germany and the USA led by the DKFZ in Heidelberg has demonstrated that the effectiveness of CAR T-cell therapies greatly depends on the composition of the gut microbiome. The researchers have also developed a model for predicting the long-term response to the treatment.

    https://biopro-v9-test-gi.xanium.io/en/article/news/focusing-gut-microbiome-car-t-cell-therapy
  • Reduced immunosuppression possible in transplantations - 05/06/2023 Group photo of the founding team. Two younger men in light blue shirts and short hair and a woman with long dark hair in a white turtleneck jumper can be seen.

    Modified immune cells produce donor-specific tolerance

    Traditionally, transplant recipients have had to take immunosuppressive medication for life to prevent organ rejection. However, there are considerable side effects involved. Using modified immune cells (MICs), TolerogenixX GmbH from Heidelberg has now managed to generate donor-specific tolerance in recipients of living kidney transplants without suppressing the overall immune system.

    https://biopro-v9-test-gi.xanium.io/en/article/news/modified-immune-cells-produce-donor-specific-tolerance
  • Review - 09/02/2023 Ausschnitt von DNA-Doppelhelix

    5th Gene Technology Report – a critical observation of a cutting-edge technology

    The societal importance of genetic technologies was demonstrated during the coronavirus pandemic, when it was possible to rapidly develop suitable vaccines thanks to genetic engineering methods. As a result, the Fifth Gene Technology Report published in autumn 2021 reads like a validation of many years of work, as well as making it clear that the will to continue the detailed long-term monitoring is very much present.

    https://biopro-v9-test-gi.xanium.io/en/article/news/5th-gene-technology-report-critical-observation-cutting-edge-technology
  • RHEACELL GmbH - 28/07/2022 Zeichnerische Umsetzung des Verhältnisses von M1 und M2 Makrophagen mithilfe einer Waage. Im Stadium der Entzündung überwiegen M1 Makrophagen, bei Wundheilung M2 Makrophagen.

    Innovative stem cell therapy for chronic wounds

    Non-healing, chronically inflamed wounds can be very painful and carry the risk of serious infections. The Heidelberg company RHEACELL has developed a unique drug based on ABCB5-positive mesenchymal stem cells that helps reprogramme the relevant immune cells and promote healing.

    https://biopro-v9-test-gi.xanium.io/en/article/news/innovative-stem-cell-therapy-chronic-wounds
  • Press release - 29/03/2022

    Biocopy presents "ValidaTe" – A novel ultra-fast screening technology

    ValidaTe enables characterization of efficacy and safety of T-cell drug candidates in days rather than months. The breakthrough speed and unprecedented density of data processed can give partner companies a competitive advantage. New high-throughput microarray technology for label-free characterization of drug candidate interactions can significantly accelerate development in immune-oncology.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/biocopy-presents-validate-novel-ultra-fast-screening-technology
  • 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 - 14/03/2022

    Do gut bacteria influence treatment success of CAR-T cell therapies?

    Through the Endeavour Awards, the Mark Foundation supports research projects that bring together scientists from different disciplines to advance the prevention, diagnosis and treatment of cancer. One of the only four Endeavour Awards presented this year goes to a project coordinated by scientists from the German Cancer Research Center (DKFZ).

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/do-gut-bacteria-influence-treatment-success-car-t-cell-therapies
  • Dossier - 16/12/2021 In-vivo-Gentherapien wie Zolgensma und Ex-vivo-Gentherapien wie CAR-T-Zellen.

    Advanced therapy medicinal products: gene and cell therapies

    Novel gene and cell therapies for treating incurable and hereditary diseases have raised high expectations. However, success has so far been limited to the long-established bone marrow transplants involving the administration of haematopoietic stem cells used to treat blood cancer. CAR T-cell therapies have recently emerged as a major new hope in cancer treatment.

    https://biopro-v9-test-gi.xanium.io/en/article/dossier/advanced-therapy-medicinal-products-gene-and-cell-therapies
  • Press release - 14/12/2021

    EU regulation approved: G-BA collaborates on European health technology assessment

    Today, the EU Parliament adopted the EU Regulation on Health Technology Assessment (HTA), which includes not only new medicines (including gene and cell therapies), but also medical devices.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/eu-regulation-approved-g-ba-collaborates-european-health-technology-assessment
  • Press release - 15/11/2021

    Using T cell to target malignant brain tumors

    Doctors and scientists from the German Cancer Research Center (DKFZ) and from Heidelberg University's Medical Faculty Mannheim have successfully tested a neoantigen-specific transgenic immune cell therapy for malignant brain tumors for the first time using an experimental model in mice.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/using-t-cell-target-malignant-brain-tumors
  • 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
  • Article - 10/03/2021 Bild2-Mahlwerk.JPG

    Faster to single cells using miniature grinder

    Tissue cells are needed for medical diagnostics, cell therapies and tissue engineering, among other things. A novel tissue grinder gently and automatically dissociates cells from tissue. In November 2020, the newly founded biotech company Fast Forward Discoveries GmbH (FFX) delivered its first tissue grinders to customers.

    https://biopro-v9-test-gi.xanium.io/en/article/news/faster-single-cells-using-miniature-grinder
  • 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
  • Innovative Therapies - 20/08/2020 Das Bild zeigt eine pipettierende Frau in Nahaufnahme. Symbolbild für analytische Dienstleistungen des portraitierten Unternehmens.

    Labor Dr. Merk is fully committed to viral therapies

    Labor Dr. Merk & Kollegen is reorienting its business towards viral therapeutics. With this change of strategy, the company, which has decades of expertise in virology, wants to position itself in a timely fashion in the growing new market for advanced therapy medicinal products (ATMP). In gene and virotherapies (oncolytic viruses), tumour vaccines and CAR-T cell therapies, viruses are essential as vectors, killers of tumour cells or…

    https://biopro-v9-test-gi.xanium.io/en/article/news/labor-dr-merk-fully-committed-viral-therapies
  • 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://biopro-v9-test-gi.xanium.io/en/article/dossier/immunology-forefront-medical-progress
  • 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://biopro-v9-test-gi.xanium.io/en/article/news/using-car-t-cells-for-treating-cancer

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