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Content and Resources

Into the world of EVs The story of extracellular vesicles (EVs) is akin to the narrative of scientific curiosity crossing various disciplines such as hematology, cell biology, virology, and more. These diverse fields eventually converged to uncover the existence of these small biologically active vesicles. The knowledge gained from each domain plays a crucial role in unveiling the significance of EVs as an essential component of our physiology. Learn more about EVs.
Deciphering Heterogeneity of EVs The story of extracellular vesicles (EVs) is akin to the narrative of scientific curiosity crossing various disciplines such as hematology, cell biology, virology, and more. These diverse fields eventually converged to uncover the existence of these small biologically active vesicles. The knowledge gained from each domain plays a crucial role in unveiling the significance of EVs as an essential component of our physiology. Learn more about EVs.
Applications of Ultracentrifugation in Purification and Characterization of Biomolecules Ultracentrifuges spin samples with centrifugal forces typically spanning 100,000 – 1,000,000 x g. At these high forces, the constituent molecules in the sample separate based on their physical properties (e.g., size, mass, density, anisotropy).
Unveiling the Hidden Signals: Overcoming Autofluorescence in Spectral Flow Cytometry Analysis Autofluorescence serves as a valuable indicator of cellular processes and states, aiding in the identification of cell populations and assessment of cell health and function in conventional flow cytometry. However, it can also pose challenges by potentially masking specific fluorescent markers, particularly those emitting weaker signals, leading to inaccurate measurement. Learn more about the strategies for autofluorescence management in spectral flow cytometry.

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