Innovation Center for Medical Redox Navigation, Department of Advanced Medical Initiatives, Kyushu University, Fukuoka, Japan.
Int J Nanomedicine. 2013;8:1989-99. doi: 10.2147/IJN.S40239. Epub 2013 May 17.
This study describes the applications of a naturally occurring small heat shock protein (Hsp) that forms a cage-like structure to act as a drug carrier. Mutant Hsp cages (HspG41C) were expressed in Escherichia coli by substituting glycine 41 located inside the cage with a cysteine residue to allow conjugation with a fluorophore or a drug. The HspG41C cages were taken up by various cancer cell lines, mainly through clathrin-mediated endocytosis. The cages were detected in acidic organelles (endosomes/lysosomes) for at least 48 hours, but none were detected in the mitochondria or nuclei. To generate HspG41C cages carrying doxorubicin (DOX), an anticancer agent, the HspG41C cages and DOX were conjugated using acid-labile hydrazone linkers. The release of DOX from HspG41C cages was accelerated at pH 5.0, but was negligible at pH 7.2. The cytotoxic effects of HspG41C-DOX against Suit-2 and HepG2 cells were slightly weaker than those of free DOX, but the effects were almost identical in Huh-7 cells. Considering the relatively low release of DOX from HspG41C-DOX, HspG41C-DOX exhibited comparable activity towards HepG2 and Suit-2 cells and slightly stronger cytotoxicity towards Huh-7 cells than free DOX. Hsp cages offer good biocompatibility, are easy to prepare, and are easy to modify; these properties facilitate their use as nanoplatforms in drug delivery systems and in other biomedical applications.
本研究描述了一种天然存在的小分子热休克蛋白 (Hsp) 的应用,该蛋白形成笼状结构作为药物载体。通过将笼内的甘氨酸 41 替换为半胱氨酸残基,使突变的 Hsp 笼 (HspG41C) 在大肠杆菌中表达,从而允许与荧光团或药物缀合。HspG41C 笼被各种癌细胞系摄取,主要通过网格蛋白介导的内吞作用。笼在酸性细胞器(内体/溶酶体)中至少检测到 48 小时,但在线粒体或核中均未检测到。为了生成携带阿霉素(DOX)的 HspG41C 笼,一种抗癌剂,使用酸不稳定的腙键将 HspG41C 笼和 DOX 缀合。在 pH 5.0 时,DOX 从 HspG41C 笼中的释放加速,但在 pH 7.2 时可忽略不计。HspG41C-DOX 对 Suit-2 和 HepG2 细胞的细胞毒性作用略低于游离 DOX,但在 Huh-7 细胞中几乎相同。考虑到 HspG41C-DOX 中 DOX 的相对较低释放,HspG41C-DOX 对 HepG2 和 Suit-2 细胞的活性与游离 DOX相当,对 Huh-7 细胞的细胞毒性略强于游离 DOX。Hsp 笼具有良好的生物相容性,易于制备,易于修饰;这些特性使其易于用作药物传递系统和其他生物医学应用中的纳米平台。