| Literature DB >> 29132246 |
Tao Wang1, Radhika Narayanaswamy1, Huilan Ren1, James W Gillespie2, Valery A Petrenko2, Vladimir P Torchilin1.
Abstract
Pancreatic cancer has been a life-threatening illness associated with high incidence and mortality rates. Paclitaxel (PCT) that causes mitotic arrest in cancer cells disrupting microtubule function is used for pancreatic cancer treatment. Nausea, anorexia and abdominal pain are some of the typical dose-limiting toxicity associated gastrointestinal side effects of the drug. Here, we present the use of polymeric mixed micelles to enable a targeted delivery of PCT and to provide additional advantages such as enhanced drug solubility, bioavailability and minimal dose-limiting toxicity. Also, these micelles self-assemble with pancreatic cancer cells-specific phage proteins P38, L1 and with the hydrophobic drug PCT resolving the issue of complex chemistry efforts normally needed for any conjugation. Our cytotoxicity and binding experiment results in vitro in 2 D and 3 D models suggested that the phage protein-targeted drug-loaded micelles bind and exhibit higher cell killing over the non-targeted ones.Entities:
Keywords: Cancer targeting; in vitro uptake and cytotoxicity studies; nanoparticles; paclitaxel; pancreatic cancer; pharmacokinetics; polymeric micelles; self-assembling; spheroid model; targeted drug delivery
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Year: 2017 PMID: 29132246 PMCID: PMC6089220 DOI: 10.1080/1061186X.2017.1405424
Source DB: PubMed Journal: J Drug Target ISSN: 1026-7158 Impact factor: 5.121