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Titlebook: Jahrbuch der Schiffbautechnischen Gesellschaft; Sechzehnter Band Schiffbautechnischen Gesellschaft Book 1915 Verlag von Julius Springer 191

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Schiffbautechnischen Gesellschaftosome-based therapies, including limitations and barriers to clinical translation. Strategies to overcome these challenges are discussed, along with emerging trends and future directions in exosome research for stroke and TIA. In conclusion, this chapter highlights the therapeutic impact of exosomes
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Schiffbautechnischen Gesellschaftles (EVs) is now becoming common. These membrane vesicles can be specific to the organs from which they originate, or else can just contain cell debris or markers of cell death [1]. The potential role of EVs as intercellular messengers is a scientific hypothesis that has attracted much attention dur
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Schiffbautechnischen Gesellschaftles (EVs) is now becoming common. These membrane vesicles can be specific to the organs from which they originate, or else can just contain cell debris or markers of cell death [1]. The potential role of EVs as intercellular messengers is a scientific hypothesis that has attracted much attention dur
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eveal a novel method for the isolation, purification, and characterization of distinct EV subtypes: exosomes and sMVs. This method, based on sequential centrifugal ultrafiltration (SCUF), affords unbiased isolation of EVs from conditioned medium from a human colon cancer cell model. For both EV subt
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Richard Baumannely released from all types of cells and detected in all biological fluids. They carry a wide array of bioactive molecules, including mRNAs, none-coding RNAs (e.g., microRNAs, lncRNAs, circRNAs, etc), proteins and lipids. Importantly, the abundance and nature of loaded molecules inside exosomes fluc
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