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Extracellular vesicles mediate disease-related cell communication in cancer and neurodegeneration. Recent studies suggest that EV analysis should extend beyond total uptake to include target-cell entry routes, recipient-cell responses, and cargo degradation or release. Tumor-derived sEVs enter cells through defined, subtype-influenced routes and can trigger Ca²⁺ signaling that enhances uptake. In a neurodegeneration model, human microglia took up tau, an aggregation-prone protein linked to Alzheimer’s disease, but incompletely degraded fibrillar tau, releasing aggregation-inducing tau, partly in EV-associated form. |
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Summary:
Highlighted technique: For EV uptake and intracellular response analysis, ultracentrifugation-free exosome isolation kit, exosome membrane labeling kit, and intracellular Ca²⁺ ion measurement kit are available. |
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Summary: Highlighted technique: To support research on extracellular tau uptake, microglial responses, and EV-mediated release, tools are available for evaluating endocytosis-related uptake processes and LDH-based cytotoxicity after tau exposure. |
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Exosome related Indicators (click to open/close)
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