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Intrabilayer 64Cu Labeling of Photoactivatable, Doxorubicin-Loaded Stealth Liposomes

  • Dandan Luo
  • , Shreya Goel
  • , Hai Jun Liu
  • , Kevin A. Carter
  • , Dawei Jiang
  • , Jumin Geng
  • , Christopher J. Kutyreff
  • , Jonathan W. Engle
  • , Wei Chiao Huang
  • , Shuai Shao
  • , Chao Fang
  • , Weibo Cai
  • , Jonathan F. Lovell
  • SUNY Buffalo
  • University of Wisconsin-Madison
  • Shanghai Jiao Tong University

Research output: Contribution to journalArticlepeer-review

71 Scopus citations

Abstract

Doxorubicin (Dox)-loaded stealth liposomes (similar to those in clinical use) can incorporate small amounts of porphyrin-phospholipid (PoP) to enable chemophototherapy (CPT). PoP is also an intrinsic and intrabilayer 64Cu chelator, although how radiolabeling impacts drug delivery has not yet been assessed. Here, we show that 64Cu can radiolabel the stable bilayer of preformed Dox-loaded PoP liposomes with inclusion of 1% ethanol without inducing drug leakage. Dox-PoP liposomes labeled with intrabilayer copper behaved nearly identically to unlabeled ones in vitro and in vivo with respect to physical parameters, pharmacokinetics, and CPT efficacy. Positron emission tomography and near-infrared fluorescence imaging visualized orthotopic mammary tumors in mice with passive liposome accumulation following administration. A single CPT treatment with 665 nm light (200 J/cm2) strongly inhibited primary tumor growth. Liposomes accumulated in lung metastases, based on NIR imaging. These results establish the feasibility of CPT interventions guided by intrinsic multimodal imaging of Dox-loaded stealth PoP liposomes.

Original languageEnglish
Pages (from-to)12482-12491
Number of pages10
JournalACS Nano
Volume11
Issue number12
DOIs
StatePublished - Dec 26 2017

Keywords

  • chemophototherapy
  • doxorubicin
  • image-guided drug delivery
  • liposomes
  • porphyrin-phospholipid

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