Fluorescence technique developed to image living brain at capillary level
A new non-invasive microscopic fluorescence imaging method has been developed to reveal details of the brain in animal models of various diseases.
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A new non-invasive microscopic fluorescence imaging method has been developed to reveal details of the brain in animal models of various diseases.
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Researchers have explored the interaction between SARS-CoV-2 RNA and the host cell, uncovering possible targets to prevent viral replication.
The WHO and Swiss Confederation are set to launch a BioHub Facility, intended to facilitate the sharing of pathogens globally.
Researchers have successfully created an unbiased, high-throughput microtitration assay for the quantification of Ebola virus in cell lines.
A new modelling method could be used as a surveillance tool to monitor emerging infectious SARS-CoV-2 variants, scientists say.
Combining two genomic methodologies, researchers have shown that pancreatic exocrine cells are implicated in type 1 diabetes.
A new pre-clinical mouse model could enable the study of HIV infection and the testing of cell therapies against the virus.
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Solutions to aid understanding of cellular and molecular pathways in diabetes and translate these findings into prevention and treatment strategies.
The development of a Parkinson’s disease model, using hiPSC-derived neural cells, to assess alpha-synuclein pre-formed fibril-induced toxicity.
11 May 2021 | By PerkinElmer
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Epithelial cell communication depends on the side of the cell, which could have implications for understanding how cancer spreads.
Researchers have produced a computational simulation of the SARS-CoV-2 Spike protein, finding spots that glycans do not cover.