4.8 Article

Blood circulation of soft nanomaterials is governed by dynamic remodeling of protein opsonins at nano-biointerface

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-020-16772-x

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资金

  1. Canadian Institutes of Health Research (CIHR)
  2. Natural Sciences and Engineering Council of Canada (NSERC)
  3. Canada Foundation for Innovation (CFI)
  4. Michael Smith Foundation for Health Research (MSFHR)
  5. MSFHR postdoctoral fellowship
  6. NSERC CGS-M
  7. NSERC CREATE NanoMat Program
  8. Genome Canada
  9. Genome British Columbia [214PRO]

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Nanomaterials in the blood must mitigate the immune response to have a prolonged vascular residency in vivo. The composition of the protein corona that forms at the nano-biointerface may be directing this, however, the possible correlation of corona composition with blood residency is currently unknown. Here, we report a panel of new soft single molecule polymer nanomaterials (SMPNs) with varying circulation times in mice (t(1/2 beta) similar to 22 to 65h) and use proteomics to probe protein corona at the nano-biointerface to elucidate the mechanism of blood residency of nanomaterials. The composition of the protein opsonins on SMPNs is qualitatively and quantitatively dynamic with time in circulation. SMPNs that circulate longer are able to clear some of the initial surface-bound common opsonins, including immunoglobulins, complement, and coagulation proteins. This continuous remodelling of protein opsonins may be an important decisive step in directing elimination or residence of soft nanomaterials in vivo.

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