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Authors Song X, Ju R, Xiao Y, Wang X, Liu S, Fu M, Liu J, Gu L, Li X, Cheng L
Received 14 May 2017
Accepted for publication 17 September 2017
Published 11 October 2017 Volume 2017:12 Pages 7433—7451
DOI https://doi.org/10.2147/IJN.S141787
Checked for plagiarism Yes
Review by Single-blind
Peer reviewers approved by Dr Alexander Kharlamov
Peer reviewer comments 5
Editor who approved publication: Dr Linlin Sun
Abstract: Chemotherapy for aggressive non-small-cell lung cancer (NSCLC) usually
results in a poor prognosis due to tumor metastasis, vasculogenic mimicry (VM)
channels, limited killing of tumor cells, and severe systemic toxicity. Herein,
we developed a kind of multifunctional targeting epirubicin liposomes to
enhance antitumor efficacy for NSCLC. In the liposomes, octreotide was modified
on liposomal surface for obtaining a receptor-mediated targeting effect, and
honokiol was incorporated into the lipid bilayer for inhibiting tumor metastasis
and eliminating VM channels. In vitro cellular assays showed that
multifunctional targeting epirubicin liposomes not only exhibited the strongest
cytotoxic effect on Lewis lung tumor cells but also showed the most efficient
inhibition on VM channels. Action mechanism studies showed that multifunctional
targeting epirubicin liposomes could downregulate PI3K, MMP-2, MMP-9,
VE-Cadherin, and FAK and activate apoptotic enzyme caspase 3. In vivo results exhibited that multifunctional targeting epirubicin
liposomes could accumulate selectively in tumor site and display an obvious
antitumor efficacy. In addition, no significant toxicity of blood system and
major organs was observed at a test dose. Therefore, multifunctional targeting
epirubicin liposomes may provide a safe and efficient therapy strategy for
NSCLC.
Keywords: octreotide,
honokiol, chemotherapy, vasculogenic mimicry, tumor metastasis, targeting drug
delivery