Cartilage growth gene TRPV4 shows promise for joint repair therapy
The discovery that the TRPV4 gene regulates cartilage growth could lead to treatments for osteoarthritis and other cartilage diseases.
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Genomics is the branch of molecular biology concerned with the structure, function, evolution, and mapping of genomes.
The discovery that the TRPV4 gene regulates cartilage growth could lead to treatments for osteoarthritis and other cartilage diseases.
A potential drug to treat a subset of gastrointestinal stroma tumours (GIST) have been found to tackle intestinal tract cancer.
First-of-its-kind study uses a multi-omics approach to provide a list of causal candidate genes associated with alcohol use disorder (AUD).
A team have found that two DNA changes appear to predict acute lymphoblastic leukaemia, illuminating genetic understanding of the disease.
Researchers at the University of East Finland have been using skin cells to investigate pathological hallmarks in frontotemporal dementia patients.
Scientists have identified the mechanism behind the conversion of skin cells into immature muscle cells, which could lead to therapies preventing muscle degeneration.
Scientists have developed a new strategy using brain-wide genome-editing technology that reduced Alzheimer’s disease pathologies in mice.
A new study has identified a vital enzyme, known as APOBEC3A, that could lead to new treatments against cancers and viral infections.
Scientists used a synthetic thyroid hormone in mice to regulate the TREM2 gene implicated in diseases such as Alzheimer’s and Parkinson’s.
Scientists have uncovered an important clue to the COVID-19-related multisystem inflammatory syndrome in children (MIS-C).
A study has shown that inhibiting the REST gene boosted insulin-producing cells during early pancreas development in animals.
Frameshifting therapy has been shown to reduce the number of mast cells by “mutating” mRNA, showing promise as a new cancer treatment.
A team of scientists used a CRISPR-Cas9 technique known as prime editing to correct cystic fibrosis in cultured human stem cells.
New insights into lung squamous cell carcinoma (LSCC) have emerged from a proteogenomic study, leading to the identification of potential drug targets.
In this interview, read about the compilation of a new high-resolution cell atlas of the mouse brain using spatial genomics and transcriptomics.