Sahin A, Spiroux F, Guedon I, Arslan F B, Sarcan E T, Ozkan T, Colak N, Yuksel S, Ozdemir S, Ozdemir B, Akbas S, Ultav G, Aktas Y, Capan Y
Pharmazie. 2017 Sep 1;72(9):525-528. doi: 10.1691/ph.2017.7015.
In the preparation of nanoparticles (NPs) by the nanoprecipitation method, emulsifiers play a key role for NPs' characteristics. The present study aimed to investigate the combined emulsifier effect on ibuprofen loaded poly(lactic-co-glycolic acid) (PLGA) NPs' characteristics and anticancer activity. Ibuprofen loaded PLGA NPs were prepared by nanoprecipitation using different concentrations of PVA (poly(vinyl alcohol)) or PVA-TPGS (d-α-tocopherol polyethylene glycol 1000 succinate) combination as emulsifier. It was found that encapsulation efficiencies of NPs varied between 17.9 and 41.9 % and the highest encapsulation efficiency was obtained with 0.5% PVA + 0.1% TPGS (coded as PLGA PVA/TPGS NPs). PLGA PVA/TPGS NPs were characterized and compared with PLGA PVA NPs, which was obtained by 0.5% PVA alone. Polydispersity index of PLGA PVA/TPGS and PLGA PVA NPs were found to be 0.08 and 0.15, respectively. Incorporation of TPGS with PVA slightly decreased the initial ibuprofen release. Transmission electron microscopy analyses demonstrated a nearly uniform particle size distribution and spherical particle shape of the PLGA PVA/TPGS NPs. Additionally, PLGA PVA/TPGS NPs were significantly more cytotoxic than PLGA PVA NPs on the MCF-7 (human breast adenocarcinoma cells) and Caco-2 (human epithelial colorectal adenocarcinoma) cells (p<0.05). Also PLGA PVA/TPGS NPs were not cytotoxic on normal cells (L929, mouse healthy fibroblast cells) (p>0.05). In conclusion, these results indicated that using a combination of TPGS and PVA as an emulsifier in nanoprecipitation could be a promising approach for preparing ibuprofen loaded PLGA NPs because of their improved characteristics and anticancer activity.
在通过纳米沉淀法制备纳米颗粒(NPs)的过程中,乳化剂对纳米颗粒的特性起着关键作用。本研究旨在探讨复合乳化剂对载布洛芬聚乳酸 - 乙醇酸共聚物(PLGA)纳米颗粒特性及抗癌活性的影响。采用不同浓度的聚乙烯醇(PVA)或PVA - TPGS(d-α-生育酚聚乙二醇1000琥珀酸酯)组合作为乳化剂,通过纳米沉淀法制备载布洛芬PLGA纳米颗粒。结果发现,纳米颗粒的包封率在17.9%至41.9%之间变化,其中使用0.5% PVA + 0.1% TPGS(编码为PLGA PVA/TPGS纳米颗粒)时获得了最高包封率。对PLGA PVA/TPGS纳米颗粒进行了表征,并与仅使用0.5% PVA制备的PLGA PVA纳米颗粒进行了比较。发现PLGA PVA/TPGS和PLGA PVA纳米颗粒的多分散指数分别为0.08和0.15。TPGS与PVA的结合略微降低了布洛芬的初始释放量。透射电子显微镜分析表明,PLGA PVA/TPGS纳米颗粒具有几乎均匀的粒径分布和球形颗粒形状。此外,PLGA PVA/TPGS纳米颗粒对MCF - 7(人乳腺腺癌细胞)和Caco - 2(人上皮结肠腺癌)细胞的细胞毒性明显高于PLGA PVA纳米颗粒(p<0.05)。而且PLGA PVA/TPGS纳米颗粒对正常细胞(L929,小鼠健康成纤维细胞)没有细胞毒性(p>0.05)。总之,这些结果表明,在纳米沉淀过程中使用TPGS和PVA的组合作为乳化剂,由于其改善的特性和抗癌活性,可能是制备载布洛芬PLGA纳米颗粒的一种有前景的方法。