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  • Press release - 13/06/2024

    Position of the cell nucleus affects epigenetics and therefore gene activity and cell function

    Depending on whether the cell nucleus of an epithelial cell is located on the outer or inner side of the tissue, the genome is more or less acetylated - genes can therefore be translated easier or harder. Scientists from the German Cancer Research Center (DKFZ) have demonstrated this for the first time in the development of the Drosophila wing.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/position-cell-nucleus-affects-epigenetics-and-therefore-gene-activity-and-cell-function
  • Press release - 25/10/2023

    Epigenetically acting drugs could support cancer immunotherapy

    Epigenetically active drugs enable the cell to read parts of the genome that were previously blocked and inaccessible. This leads to the formation of new mRNA transcripts and also new proteins, as scientists from the German Cancer Research Center and the University Hospital Tübingen have now published. These "therapy-induced epitopes" could help the immune system recognize cancer cells.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/epigenetically-acting-drugs-could-support-cancer-immunotherapy
  • Press release - 25/10/2023

    Epigenetically acting drugs could support cancer immunotherapy

    Epigenetically active drugs enable the cell to read parts of the genome that were previously blocked and inaccessible. This leads to the formation of new mRNA transcripts and also new proteins, as scientists from the German Cancer Research Center and the University Hospital Tübingen have now published. These "therapy-induced epitopes" could help the immune system recognize cancer cells.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/epigenetisch-wirkende-medikamente-koennten-krebs-immuntherapie-unterstuetzen
  • Press release - 21/09/2023

    Mutation-specific peptide vaccine against midline gliomas used in patients for the first time

    Tumor vaccines can help the body fight cancer. These vaccines alert the patient's immune system to proteins that are harbouring cancer-typical alterations. Physicians and cancer researchers from Heidelberg and Mannheim have now treated adult patients with advanced midline gliomas, difficult-to-treat brain tumors, with a peptide vaccine for the first time.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/mutation-specific-peptide-vaccine-against-midline-gliomas-used-patients-first-time
  • Press release - 09/05/2023

    New strategy for clinically relevant protein sequencing

    Proteins have characteristic amino acid sequences, the analysis of which is fundamental for research and medicine. These can be decoded; however, so-called protein sequencing is expensive and time-consuming. A large-scale research project led by Prof. Dr. Jan Behrends from the Institute of Physiology at the University of Freiburg now aims to establish a new technology for protein sequencing using nanopores, which will be rapid and cost-effective.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/new-strategy-clinically-relevant-protein-sequencing
  • Press release - 09/12/2022

    Epigenetic emergency switch improves defense against infections

    During infections, the hematopoietic system switches from normal to emergency mode. This improves the defense against the pathogens. Scientists at the German Cancer Research Center (Deutsches Krebsforschungszentrum, DKFZ) have now found an epigenetic switch in blood stem cells and progenitor cells of mice that can trigger the switch from one mode to the other.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/epigenetic-emergency-switch-improves-defense-against-infections
  • Press release - 31/08/2022

    Using nanopores to detect epigenetic changes faster

    Changes known as epigenetic modifications play an important role in cancer development, among other things. Being able to analyze them quickly and reliably could, for example, contribute significantly to the further development of personalized therapy.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/using-nanopores-detect-epigenetic-changes-faster
  • Gene regulation as a starting point for cancer therapies - 02/12/2021 Schematische Darstellung der verschiedenen Stadien der Genexpression. Nukleinsäurestränge sind durch farbige Linien, Proteine durch farbige Ellipsen und die Methylierung durch kleine Kreise dargestellt.

    New investigation method for deciphering complex epigenetic networks

    The development and maintenance of uncontrolled cell division in tumours is often due to the unbalanced, complex interplay of regulatory epigenetic networks. Researchers at the Institute of Biochemistry and Technical Biochemistry in Stuttgart have developed a new screening system to identify essential components that can serve as targets for anticancer drugs.

    https://biopro-v9-test-gi.xanium.io/en/article/news/new-investigation-method-deciphering-complex-epigenetic-networks
  • Gene regulation - 20/07/2021 Vor schwarzem Hintergrund ist ein gelb leuchtendes Chromosom zwischen blau gefärbten Chromosomen sichtbar.

    The many faces of the epigenetic regulator MOF

    Epigenetic modifications play a crucial role in coordinated gene transcription, and are required for a fertilised egg cell to be able to develop into an organism with different cell types. Dr. Asifa Akhtar from the Max Planck Institute of Immunobiology and Epigenetics in Freiburg has been studying the essential epigenetic regulator protein MOF for 20 years.

    https://biopro-v9-test-gi.xanium.io/en/article/news/die-vielen-gesichter-des-epigenetischen-regulators-mof
  • Press release - 17/05/2021

    New findings in genome research

    The working group around Dr. Philipp Rathert at the Institute for Biochemistry and Technical Biochemistry investigates the regulation of epigenetic networks of certain cancers and ways of treating them. The working group published its new findings in April.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/new-findings-genome-research
  • Press release - 24/02/2021

    Disease progression in childhood cancer: Lengthening of telomeres promotes relapse

    Neuroblastoma can spread relentlessly or shrink spontaneously. Scientists from the Hopp Children’s Cancer Center Heidelberg (KiTZ), the German Cancer Research Center (DKFZ), the University of Heidelberg and the National Center for Tumor Diseases (NCT) Heidelberg have shown that some malignant neuroblastomas employ a trick to avoid cell death: they use a special mechanism to lengthen the telomeres at the end of their chromosomes.

    https://biopro-v9-test-gi.xanium.io/en/article/press-release/disease-progression-childhood-cancer-lengthening-telomeres-promotes-relapse
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