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January 15, 2026Nature Biomedical Engineering6 citations

Small intracellular vesicles outperform small extracellular vesicles in uptake, drug delivery and retinal neuroprotection

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HZHui ZhangXYXinyue YuFYFuhua Yang

Key Points

  • To compare the properties of small intracellular and extracellular vesicles in drug delivery and retinal neuroprotection.
  • Developed isolation protocols for small intracellular vesicles from multiple cell types
  • Conducted molecular and functional profile comparisons between intracellular and extracellular vesicles
  • Performed in vitro and in vivo models to test cellular uptake and therapeutic efficacy
  • Intracellular vesicles showed enhanced cellular uptake and reduced endoplasmic reticulum stress
  • Demonstrated superior drug-loading capacity and efficient delivery of neuroprotective factors
  • Molecular profiling revealed distinct signatures and higher phospholipid levels in intracellular vesicles

Abstract

Small extracellular vesicles have been widely studied for their therapeutic properties and ability to deliver bioactive molecules. In addition to secretory vesicles, cells contain small intracellular vesicles involved in physiological and metabolic processes, whose therapeutic potential remains unexplored. Here we developed protocols to isolate small intracellular vesicles from multiple cell types and systematically compared their molecular and functional profiles to extracellular vesicles. Intracellular vesicles are smaller, yield higher quantities and demonstrate enhanced cellular uptake in both in vitro and in vivo models. Molecular profiling revealed that intracellular vesicles are enriched in proteins associated with the endoplasmic reticulum and Golgi apparatus, possess distinct microRNA signatures linked to intracellular membrane systems, and contain elevated levels of phospholipids such as phosphatidylcholine and phosphatidylethanolamine. Vesicles derived from umbilical cord mesenchymal stem cells showed superior therapeutic efficacy in a model of retinal degeneration by reducing endoplasmic reticulum stress and delivering neuroprotective factors. In addition, intracellular vesicles exhibited enhanced drug-loading capacity and efficient delivery of lipophilic compounds to the retina. These findings position intracellular vesicles as promising candidates for therapeutic applications.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69683e135818e7dbd7c631dahttps://doi.org/10.1038/s41551-025-01596-1
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