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ab59479 被引用在 18 文献中.

  • Matsuzaki K  et al. MiR-21-5p in urinary extracellular vesicles is a novel biomarker of urothelial carcinoma. Oncotarget 8:24668-24678 (2017). WB ; Human . PubMed: 28160564
  • Wang T  et al. Increasing circulating exosomes-carrying TRPC5 predicts chemoresistance in metastatic breast cancer patients. Cancer Sci 108:448-454 (2017). PubMed: 28032400
  • Beltrami C  et al. Human Pericardial Fluid Contains Exosomes Enriched with Cardiovascular-Expressed MicroRNAs and Promotes Therapeutic Angiogenesis. Mol Ther 25:679-693 (2017). PubMed: 28159509
  • Nakase I  et al. Arginine-rich cell-penetrating peptide-modified extracellular vesicles for active macropinocytosis induction and efficient intracellular delivery. Sci Rep 7:1991 (2017). WB . PubMed: 28512335
  • Nakase I  et al. Vectorization of biomacromolecules into cells using extracellular vesicles with enhanced internalization induced by macropinocytosis. Sci Rep 6:34937 (2016). WB ; Human . PubMed: 27748399
  • El-Saghir J  et al. ATL-derived exosomes modulate mesenchymal stem cells: potential role in leukemia progression. Retrovirology 13:73 (2016). PubMed: 27760548
  • Hurwitz SN  et al. Nanoparticle analysis sheds budding insights into genetic drivers of extracellular vesicle biogenesis. J Extracell Vesicles 5:31295 (2016). WB ; Human . PubMed: 27421995
  • Wang DJ  et al. Lactation-Related MicroRNA Expression in Microvesicles of Human Umbilical Cord Blood. Med Sci Monit 22:4542-4554 (2016). WB ; Human . PubMed: 27885249
  • Milutinovic B  et al. Glycome complexity of human seminal plasma high molecular mass components: Evaluation of the contribution of acid-soluble glycoproteins/mucins and extracellular vesicles. Arch Biochem Biophys 609:20-30 (2016). Human . PubMed: 27639309
  • Westmoreland D  et al. Super-resolution microscopy as a potential approach to diagnosis of platelet granule disorders. J Thromb Haemost 14:839-49 (2016). PubMed: 26806224
  • Nakase I  et al. Active macropinocytosis induction by stimulation of epidermal growth factor receptor and oncogenic Ras expression potentiates cellular uptake efficacy of exosomes. Sci Rep 5:10300 (2015). PubMed: 26036864
  • Nakase I & Futaki S Combined treatment with a pH-sensitive fusogenic peptide and cationic lipids achieves enhanced cytosolic delivery of exosomes. Sci Rep 5:10112 (2015). PubMed: 26011176
  • Rodríguez M  et al. Exosomes enriched in stemness/metastatic-related mRNAS promote oncogenic potential in breast cancer. Oncotarget 6:40575-87 (2015). WB . PubMed: 26528758
  • Kosanovic M & Jankovic M Isolation of urinary extracellular vesicles from Tamm- Horsfall protein-depleted urine and their application in the development of a lectin-exosome-binding assay. Biotechniques 57:143-9 (2014). PubMed: 25209049
  • Zonneveld MI  et al. Recovery of extracellular vesicles from human breast milk is influenced by sample collection and vesicle isolation procedures. J Extracell Vesicles 3:N/A (2014). WB ; Human . PubMed: 25206958
  • Rodríguez M  et al. Different exosome cargo from plasma/bronchoalveolar lavage in non-small-cell lung cancer. Genes Chromosomes Cancer 53:713-24 (2014). PubMed: 24764226
  • Soldevilla B  et al. Tumor-derived exosomes are enriched in ?Np73, which promotes oncogenic potential in acceptor cells and correlates with patient survival. Hum Mol Genet N/A:N/A (2013). PubMed: 24067531
  • Raymond AD  et al. HIV Type 1 Nef is released from infected cells in CD45(+) microvesicles and is present in the plasma of HIV-infected individuals. AIDS Res Hum Retroviruses 27:167-78 (2011). WB ; Human . PubMed: 20964480

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