4.7 Article

Isolation of Cancer-Derived Exosomes Using a Variety of Magnetic Nanostructures: From Fe3O4 Nanoparticles to Ni Nanowires

期刊

NANOMATERIALS
卷 10, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/nano10091662

关键词

cancer exosomes; magnetic isolation; nanowires; nanorods; magnetosomes

资金

  1. MN Futures Program of the University of Minnesota
  2. Skippy Frank Fund for Life Sciences and Translational Research
  3. Morris Animal Foundation [D15CA-047]
  4. Animal Cancer Care and Research Program of the University of Minnesota
  5. Spanish Government [MAT2017-83631-C3]
  6. Basque Government [IT1245-19]
  7. National Science Foundation through the National Nano Coordinated Infrastructure Network (NNCI) [ECCS-1542202]

向作者/读者索取更多资源

Isolating and analyzing tumor-derived exosomes (TEX) can provide important information about the state of a tumor, facilitating early diagnosis and prognosis. Since current isolation methods are mostly laborious and expensive, we propose herein a fast and cost-effective method based on a magnetic nanoplatform to isolate TEX. In this work, we have tested our method using three magnetic nanostructures: (i) Ni magnetic nanowires (MNWs) (1500 x 40 nm), (ii) Fe3O4 nanorods (NRs) (41 x 7 nm), and (iii) Fe3O4 cube-octahedral magnetosomes (MGs) (45 nm) obtained from magnetotactic bacteria. The magnetic response of these nanostructures has been characterized, and we have followed their internalization inside canine osteosarcoma OSCA-8 cells. An overall depiction has been obtained using a combination of Fluorescence and Scanning Electron Microscopies. In addition, Transmission Electron Microscopy images have shown that the nanostructures, with different signs of degradation, ended up being incorporated in endosomal compartments inside the cells. Small intra-endosomal vesicles that could be precursors for TEX have also been identified. Finally, TEX have been isolated using our magnetic isolation method and analyzed with a Nanoparticle tracking analyzer (NanoSight). We observed that the amount and purity of TEX isolated magnetically with MNWs was higher than with NRs and MGs, and they were close to the results obtained using conventional non-magnetic isolation methods.

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