Fabrication of polymer matrix-free nanocomposites based on Angelica gigas Nakai extract and their application to breast cancer therapy

  • Lee, Song Yi
  • Lee, Jeong-Jun
  • Nam, Suyeong
  • Kang, Wie-Soo
  • Yoon, In-Soo
  • ... Cho, Hyun-Jong
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초록

Nanocomposites (NCs) based on the ethanol extract of Angelica gigas Nakai (AGN EtOH ext) were developed for breast cancer therapy. Polymer matrix-free nano-sized particles based on the extract of natural product were fabricated using a modified emulsification-solvent evaporation method. Without the use of polymer matrix, toxicity can be minimized and the clinical application may be assured. AGN NCs with approximately 200nm mean diameter, narrow size distribution, and negative zeta potential were prepared in this study. Sustained release of decursin (D) and decursinol angelate (DA) (as major components of AGN) from AGN NCs was observed at pH 7.4. Cellular accumulation efficiency and intracellular distribution of AGN NCs were evaluated in MCF-7 (human breast adenocarcinoma) cells. According to the results of antiproliferation assay in MCF-7 cells, IC50 value of AGN NCs group (27.4 +/- 4.0 mu g/mL) was lower than that of AGN EtOH ext group (75.3 +/- 13.7 mu g/mL) (p<0.05). Also, the percentage of apoptotic events of AGN NCs group was significantly higher than that of AGN EtOH ext group (p<0.05). All these findings suggest that developed AGN NCs can be used as one of promising nanosystems for the therapy of breast cancers. (C) 2017 Elsevier B.V. All rights reserved.

키워드

Angelica gigas NakaiAnticancer activityBreast cancerEthanol extractNanocompositesTARGETED DRUG-DELIVERYWATER-SOLUBLE DRUGSCELL-CYCLE ARRESTANTITUMOR EFFICACYHELA-CELLSNANOPARTICLESNANOCRYSTALSAPOPTOSISDECURSINSYSTEMS
제목
Fabrication of polymer matrix-free nanocomposites based on Angelica gigas Nakai extract and their application to breast cancer therapy
저자
Lee, Song YiLee, Jeong-JunNam, SuyeongKang, Wie-SooYoon, In-SooCho, Hyun-Jong
DOI
10.1016/j.colsurfb.2017.08.040
발행일
2017-11-01
유형
Article
저널명
Colloids and Surfaces B: Biointerfaces
159
페이지
781 ~ 790