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A Transferrin Triggered Pathway for Highly Targeted Delivery of Graphene-Based Nanodrugs to Treat Choroidal Melanoma

Journal Article


Abstract


  • The synthesis of transferrin (Tf)-modified pegylated graphene (PG) and its application as a highly efficient drug delivery carrier for therapy of Ocular Choroidal Melanoma-1 (OCM-1) cells is presented. For the first reported time, nanoscaled PG is prepared using an environmentally friendly ball-milling technique. The unique 2D nanostructure obtained using this PG synthesis approach offers considerable advantages in terms of drug loading and delivery, as well as the conjugation of Tf to PG providing a more targeted delivery vehicle. A highly efficient targeted pathway toward OCM-1 cells triggered by an affinity between Tf and Tf receptors expressed on the surface of OCM-1 cells is reported first here. PG-Tf is observed to easily anchor anticancer drugs such as doxorubicin via π–π stacking. This work performs a Transwell two cells coculture experiment, a 3D in vitro tumor model, and an in vivo mouse model with OCM-1 tumors to demonstrate the composite's therapeutic superiority over conventional systems for the targeted delivery and controlled release of antitumor drugs.

Authors


  •   Zhao, Bingxin (external author)
  •   Dong, Kalun (external author)
  •   Lin, Mimi (external author)
  •   Dong, Gongxian (external author)
  •   Shan, Suyan (external author)
  •   Lawson, Tom (external author)
  •   Yan, Lu (external author)
  •   Zhang, Wenjing (external author)
  •   Shi, Bingyang (external author)
  •   Chou, Shulei
  •   Baker, Mark Scott. (external author)
  •   Liu, Yong (external author)

Publication Date


  • 2018

Citation


  • Zhao, B., Dong, K., Lin, M., Dong, G., Shan, S., Lawson, T., Yan, L., Zhang, W., Shi, B., Chou, S., Baker, M. S. & Liu, Y. (2018). A Transferrin Triggered Pathway for Highly Targeted Delivery of Graphene-Based Nanodrugs to Treat Choroidal Melanoma. Advanced Healthcare Materials, 7 (16), 1800377 -1-1800377 -6.

Scopus Eid


  • 2-s2.0-85051843746

Ro Metadata Url


  • http://ro.uow.edu.au/aiimpapers/3219

Start Page


  • 1800377 -1

End Page


  • 1800377 -6

Volume


  • 7

Issue


  • 16

Place Of Publication


  • Germany

Abstract


  • The synthesis of transferrin (Tf)-modified pegylated graphene (PG) and its application as a highly efficient drug delivery carrier for therapy of Ocular Choroidal Melanoma-1 (OCM-1) cells is presented. For the first reported time, nanoscaled PG is prepared using an environmentally friendly ball-milling technique. The unique 2D nanostructure obtained using this PG synthesis approach offers considerable advantages in terms of drug loading and delivery, as well as the conjugation of Tf to PG providing a more targeted delivery vehicle. A highly efficient targeted pathway toward OCM-1 cells triggered by an affinity between Tf and Tf receptors expressed on the surface of OCM-1 cells is reported first here. PG-Tf is observed to easily anchor anticancer drugs such as doxorubicin via π–π stacking. This work performs a Transwell two cells coculture experiment, a 3D in vitro tumor model, and an in vivo mouse model with OCM-1 tumors to demonstrate the composite's therapeutic superiority over conventional systems for the targeted delivery and controlled release of antitumor drugs.

Authors


  •   Zhao, Bingxin (external author)
  •   Dong, Kalun (external author)
  •   Lin, Mimi (external author)
  •   Dong, Gongxian (external author)
  •   Shan, Suyan (external author)
  •   Lawson, Tom (external author)
  •   Yan, Lu (external author)
  •   Zhang, Wenjing (external author)
  •   Shi, Bingyang (external author)
  •   Chou, Shulei
  •   Baker, Mark Scott. (external author)
  •   Liu, Yong (external author)

Publication Date


  • 2018

Citation


  • Zhao, B., Dong, K., Lin, M., Dong, G., Shan, S., Lawson, T., Yan, L., Zhang, W., Shi, B., Chou, S., Baker, M. S. & Liu, Y. (2018). A Transferrin Triggered Pathway for Highly Targeted Delivery of Graphene-Based Nanodrugs to Treat Choroidal Melanoma. Advanced Healthcare Materials, 7 (16), 1800377 -1-1800377 -6.

Scopus Eid


  • 2-s2.0-85051843746

Ro Metadata Url


  • http://ro.uow.edu.au/aiimpapers/3219

Start Page


  • 1800377 -1

End Page


  • 1800377 -6

Volume


  • 7

Issue


  • 16

Place Of Publication


  • Germany