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Crown BioScience experts explore organoid models and high-content imaging to evaluate T-cell-targeted therapies and ...
Kanazawa University and colleagues have developed a promising new approach to cancer treatment. By using tiny, naturally ...
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AZoOptics on MSNUsing High-Speed Atomic Force Microscopy to Improve Biomarker DiscoveryHigh-speed atomic force m (HS-AFM) reveals nanoscale differences in small extracellular vesicles (sEVs), improving biomarker ...
mRNA-1273 is an mRNA-lipid nanoparticle ... S protein-specific T cells (response magnitude) as well as the proportion of participants with responses determined to be positive (response rate), as ...
Nanomedicine. 2014;9(12):1885-1900. While not specific to determining the precise localization of NPs, rather confocal and transmission electron microscopy are pertinent, flow cytometry can be ...
Progress is being made to overcome these barriers. For example, CAR T cells targeting specific proteins are currently being developed in both preclinical and clinical studies. Modulating the tumor ...
Drug-carrying DNA aptamers can deliver a one-two punch to leukemia by precisely targeting the elusive cancer stem cells that seed cancer relapses, researchers at the University of Illinois ...
T cells are generated in the thymus and are produced to recognize and target pathogens. As these cells develop, they are trained to recognize ‘non-self’ markers and eliminate them. This pathogen ...
A super-resolution microscopy technique offers an unparalleled glimpse into how monoclonal antibodies bind to their targets on cancer cells to induce cell death.
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