Scientists eliminate key Alzheimer’s feature in animal model
Turning off NHE6 in mice in pre-clinical studies prevented amyloid beta aggregation, a key feature of Alzheimer's disease, pointing to new therapies.
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Turning off NHE6 in mice in pre-clinical studies prevented amyloid beta aggregation, a key feature of Alzheimer's disease, pointing to new therapies.
A new grant will allow an international team to determine if scent-processing nerves in the nose play a role in the development of Parkinson's and could aid in the development of novel therapeutics.
Professor Ulrich G Steidl received the National Institute of Cancer's Outstanding Investigator Award to study myelodysplastic syndromes (MDS) and acute myeloid leukaemia (AML).
The small molecule successfully targeted the C9orf72 gene that causes amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD).
Researchers used Raman spectroscopy to monitor immunotherapy response in mice, potentially improving cancer treatments in the future.
Scientists have found that Hutchinson-Gilford Progeria Syndrome (HGPS) can be prevented with treatments targeting the cardiovascular system using a novel mouse model.
A new study is the first to identify N-acylethanolamine acid amidase as a new drug target to treat different forms of chronic pain.
A new gene therapy restored motor skill-learning and usual behaviours in Angelman syndrome mouse models, suggesting a novel therapy for the condition.
German, Norwegian and British scientists have identified molecular targets for therapies that could prevent breast cancer recurrence.
In an exclusive with Drug Target Review, researchers at the University at Buffalo explain how they developed a novel peptide that could be a future treatment for chronic inflammatory pain.
A new method, called synapse for T-cell activation (synTac), can attack HIV-infected T cells and may be a new cure for HIV and other diseases.
Activating the protein channel TRPML1 induced selective melanoma cell death while sparing normal cells, suggesting a potential pathway for new cancer therapies.
Scientists have created a nanofibre-based sheet to control and direct the migration of cells, possibly leading to brain tumour therapies.
Washington University will receive $7.5 million from the NIH to study senescent cells for treatments against age-related diseases.
Scientists have identified potential cancer drugs to treat pulmonary hypertension using experimental and computational approaches.