Literature DB >> 25252589

Nonvascular drug-eluting stent coated with sodium caprate-incorporated polyurethane for the efficient penetration of paclitaxel into tumor tissue.

Dooyong Jeong1, Don Haeng Lee2, Dong Ki Lee3, Kun Na4.   

Abstract

To increase the therapeutic potency of nonvascular drug-eluting stents, sodium caprate was employed as a drug-penetration enhancer. A polytetrafluoroethylene-covered drug-eluting stent was coated with a mixture containing sodium caprate, paclitaxel, and polyurethane via the rolling coating technique. The coated stent has a smooth membrane surface with a 40-µm membrane thickness. Paclitaxel was released from the coated stent for two months. In the multilayered cell sheet model, sodium caprate in the polyurethane membrane (PUSC10) showed the possibility of enhancing the paclitaxel tissue penetration. The amount of penetrated paclitaxel for the sodium caprate-containing polyurethane membrane (PUSC10) was two times higher than that of sodium caprate-free polyurethane membrane. Additionally, the potential of sodium caprate was confirmed by a tumor-bearing small animal model. PUSC10 incorporated with Nile red (as a model fluorescence dye for visualization of drug penetration; PUSC10-Nile red) or PUSC10 incorporated with paclitaxel (PUSC10-paclitaxel) membrane was implanted at tumor sites in Balb/c mice. In the case of PUSC10-Nile red, the tissue penetration depth of Nile red was significantly increased from 30 µm (without sodium caprate) to 1060 µm (with sodium caprate). After seven days, an almost four times higher therapeutic area of PUSC10-paclitaxel was observed compared to that of polyurethane-paclitaxel (without sodium caprate) by a terminal deoxynucleotidyl transferase dUTP nick end labeling assay. The results indicate that sodium caprate improves the penetration and therapeutic efficiencies of drugs in drug-eluting stents, and thus, it has potential for local stent therapy.
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Entities:  

Keywords:  Drug-eluting stent; cancer therapy; paclitaxel; penetration; sodium caprate

Mesh:

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Year:  2014        PMID: 25252589     DOI: 10.1177/0885328214552712

Source DB:  PubMed          Journal:  J Biomater Appl        ISSN: 0885-3282            Impact factor:   2.646


  4 in total

1.  Efficacy of a Multiplex Paclitaxel Emission Stent Using a Pluronic® Mixture Membrane versus a Covered Metal Stent in Malignant Biliary Obstruction: A Prospective Randomized Comparative Study.

Authors:  Sung Ill Jang; Se Joon Lee; Seok Jeong; Don Haeng Lee; Myung-Hwan Kim; Hong Jin Yoon; Dong Ki Lee
Journal:  Gut Liver       Date:  2017-07-15       Impact factor: 4.519

2.  Safety Evaluation of Paclitaxel-Eluting Biliary Metal Stent with Sodium Caprate in Porcine Biliary Tract.

Authors:  Sung Ill Jang; Seok Jeong; Don Haeng Lee; Kun Na; Sugeun Yang; Dong Ki Lee
Journal:  Gut Liver       Date:  2019-04-17       Impact factor: 4.519

3.  Influence of Polymer Composition on the Controlled Release of Docetaxel: A Comparison of Non-Degradable Polymer Films for Oesophageal Drug-Eluting Stents.

Authors:  Paris Fouladian; Franklin Afinjuomo; Mohammad Arafat; Amanda Bergamin; Yunmei Song; Anton Blencowe; Sanjay Garg
Journal:  Pharmaceutics       Date:  2020-05-11       Impact factor: 6.321

4.  Mathematical Based Calculation of Drug Penetration Depth in Solid Tumors.

Authors:  Hamidreza Namazi; Vladimir V Kulish; Albert Wong; Sina Nazeri
Journal:  Biomed Res Int       Date:  2016-06-08       Impact factor: 3.411

  4 in total

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