Han Jaesik, Oh Jungju, Ihm Sung-Hee, Lee Minhyung
a BK21 Plus Future Biopharmaceutical Human Resources Training and Research Team, Department of Bioengineering , College of Engineering, Hanyang University , Seoul , Korea ;
b Department of Internal Medicine , Hallym University College of Medicine , Chuncheon , Korea.
J Drug Target. 2016 Aug;24(7):618-23. doi: 10.3109/1061186X.2015.1132220. Epub 2016 Jan 15.
Islet transplantation is one of many therapeutic approaches for the treatment of diabetes. During transplant procedures, the isolated islets are subjected to hypoxic conditions, and undergo the apoptotic process. Curcumin has a cytoprotective effect, and may therefore be useful for the protection of islets under hypoxia. However, curcumin is hydrophobic, and an efficient curcumin carrier is required for effective treatment. In this study, R3V6 peptide micelles, composed of a 3-arginine stretch and 6-valine stretch, were evaluated as a curcumin carrier to INS-1 insulinoma cells. Curcumin was loaded into R3V6 micelles at a weight ratio of 10:3 (R3V6:curcumin). The size and surface charge of the curcumin-loaded R3V6 micelles (R3V6-curcumin) were approximately 250 nm and 17.49 mV, respectively. R3V6-curcumin delivered curcumin to the INS-1 cells more efficiently than either curcumin alone or a simple mixture of R3V6 and curcumin. MTT assay indicated that under hypoxia, R3V6-curcumin protected INS-1 cells more efficiently than curcumin alone. TUNEL and reactive oxygen species (ROS) assays suggested that R3V6-curcumin reduced INS-1 cell apoptosis under hypoxia. These results demonstrate that R3V6 peptide micelles are an effective carrier of curcumin, and that R3V6-curcumin may improve the viability of pancreatic β-cells in islet transplantation.
胰岛移植是治疗糖尿病的众多治疗方法之一。在移植过程中,分离出的胰岛会处于缺氧状态,并经历凋亡过程。姜黄素具有细胞保护作用,因此可能有助于在缺氧条件下保护胰岛。然而,姜黄素具有疏水性,需要一种有效的姜黄素载体才能进行有效治疗。在本研究中,由3个精氨酸片段和6个缬氨酸片段组成的R3V6肽胶束被评估为向INS-1胰岛素瘤细胞输送姜黄素的载体。姜黄素以10:3的重量比(R3V6:姜黄素)加载到R3V6胶束中。负载姜黄素的R3V6胶束(R3V6-姜黄素)的大小和表面电荷分别约为250 nm和17.49 mV。R3V6-姜黄素向INS-1细胞递送姜黄素的效率比单独的姜黄素或R3V6与姜黄素的简单混合物更高。MTT分析表明,在缺氧条件下,R3V6-姜黄素比单独的姜黄素更有效地保护INS-1细胞。TUNEL和活性氧(ROS)分析表明,R3V6-姜黄素在缺氧条件下减少了INS-1细胞凋亡。这些结果表明,R3V6肽胶束是姜黄素的有效载体,并且R3V6-姜黄素可能会提高胰岛移植中胰腺β细胞的活力。