Department of Pharmaceutical Sciences and Center for Drug Delivery and Nanomedicine, University of Nebraska Medical Center, Omaha, 68198-5830, USA.
Biomaterials. 2010 Feb;31(5):923-33. doi: 10.1016/j.biomaterials.2009.09.101. Epub 2009 Oct 22.
Polymeric micelles with cross-linked ionic cores of poly(methacrylic acid) and nonionic shell of poly(ethylene oxide) (cl-micelles) are shown here to readily internalize in epithelial cancer cells but not in normal epithelial cells that form tight junctions (TJ). The internalization of such cl-micelles in the cancer cells proceeded mainly through caveolae-mediated endocytosis. In confluent normal epithelial cells this endocytosis route was absent at the apical side and the cl-micelles sequestered in TJ regions of the cell membrane without entering the cells for at least 24h. Disruption of the TJ by calcium deprivation resulted in redistribution of cl-micelles inside the cells. In cancer cells following initial cellular entry the cl-micelles bypassed the early endosomes and reached the lysosomes within 30min. This allowed designing cl-micelles with cytotoxic drug, doxorubicin, linked via pH-sensitive hydrazone bonds, which were cleaved in the acidic environment of lysosomes resulting in accumulation of the drug in the nucleus after 5h. Such pH-sensitive cl-micelles displayed selective toxicity to cancer cells but were non-toxic to normal epithelial cells. In conclusion, we describe major difference in interactions of cl-micelles with cancer and normal cells that can lead to development of novel drug delivery system with reduced side effects and higher efficacy in cancer chemotherapy.
具有交联离子核的聚(甲基丙烯酸)和非离子壳的聚(氧化乙烯)的聚合物胶束(cl-micelles)很容易被上皮癌细胞内化,但不能被形成紧密连接(TJ)的正常上皮细胞内化。这种 cl-micelles 在癌细胞中的内化主要通过小窝蛋白介导的内吞作用进行。在细胞紧密连接的正常上皮细胞中,这种内吞途径在顶端侧不存在,cl-micelles 被隔离在细胞膜的 TJ 区域内,至少在 24 小时内不会进入细胞。钙剥夺导致 TJ 破坏,导致 cl-micelles 在细胞内重新分布。在癌细胞中,cl-micelles 在初始细胞进入后,在 30 分钟内绕过早期内体,到达溶酶体。这使得设计具有通过 pH 敏感腙键连接的细胞毒性药物阿霉素的 cl-micelles 成为可能,在溶酶体的酸性环境中,这些键被切断,导致药物在 5 小时后在核内积累。这种 pH 敏感的 cl-micelles 对癌细胞表现出选择性毒性,但对正常上皮细胞没有毒性。总之,我们描述了 cl-micelles 与癌细胞和正常细胞相互作用的主要差异,这可能导致开发新的药物输送系统,减少副作用,提高癌症化疗的疗效。