Literature DB >> 26307827

Development of RGD-Functionalized PEG-PLA Micelles for Delivery of Curcumin.

Liyan Zhao, Chunfen Yang, Jinfeng Dou, Yanwei Xi, Hongxiang Lou, Guangxi Zhai.   

Abstract

Curcumin (Cur), a hydrophobic polyphenolic compound, possesses a wide range of biological activities. However, its prominent application in cancer treatment is limited due to low aqueous solubility and rapid metabolism. Recently, micelle-based drug delivery system has been proven to be an attractive alternative for poorly soluble drugs. In order to improve the application of Cur as an anti-cancer agent, in this study, we synthesized the αvβ3 integrin-targeted peptide (RGD) functionalized polymer (RGD-PEG-PLA). The RGD conjugated Cur loaded micelles (Cur-RPP) were prepared using the thin-film hydration method with modification and the preparation process was optimized with a central composite design. The obtained Cur-RPP presented spherical shape with a particle size of 20 nm and high drug loading (4.70%). Compared with the Cur propylene glycol solution, the in vitro release of Cur from the prepared micelles showed the sustained-release property. Cellular uptake of Cur-RPP was found to be higher than that of non-RGD modified micelles due to the binding effect between αvβ3 integrin and RGD in human umbilical vein endothelial cells (HUVEC) and mouse melanoma cell lines (B16). In B16 tumor-bearing mice, Cur-RPP showed the stronger inhibiting effect on growth of tumor compared with non-RGD modified micelles. It could be concluded from these results that the RGD modified micelles might be a potential carrier for Cur.

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Year:  2015        PMID: 26307827     DOI: 10.1166/jbn.2015.1919

Source DB:  PubMed          Journal:  J Biomed Nanotechnol        ISSN: 1550-7033            Impact factor:   4.099


  2 in total

Review 1.  Emerging uses of PLA-PEG copolymer in cancer drug delivery.

Authors:  Rohit Mundel; Tanya Thakur; Mary Chatterjee
Journal:  3 Biotech       Date:  2022-01-10       Impact factor: 2.406

2.  PGlu-Modified Nanocrystalline Cellulose Improves Mechanical Properties, Biocompatibility, and Mineralization of Polyester-Based Composites.

Authors:  Mariia Stepanova; Ilia Averianov; Mikhail Serdobintsev; Iosif Gofman; Natalya Blum; Natalya Semenova; Yuliya Nashchekina; Tatiana Vinogradova; Viktor Korzhikov-Vlakh; Mikko Karttunen; Evgenia Korzhikova-Vlakh
Journal:  Materials (Basel)       Date:  2019-10-21       Impact factor: 3.623

  2 in total

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