标题: | 开发具声光显影与磁控制药物释放之标靶药物奈米载体材料结构 Developed Multifunctional Drug Nanocarriers Capable of Photoacosustic Tomography, Targeting Therapy and Magneitcally-Triggered Release |
作者: | 陈三元 CHEN San-Yuan 国立交通大学材料科学与工程学系(所) |
关键字: | 奈米载体;控制释放药物;金奈米棒;声光显影;Nanocarrier;Controlled drug release;Nano-Au;Potoacoustic tomography |
公开日期: | 2010 |
摘要: | 癌症肿瘤治療乃为全球医療研究所最棘手与关注的问题。在传统的癌症化学治療方法中,抗癌药物不 能区分正常细胞与癌细胞,因此造成有限的治療效果与许多副作用。在本计画中,利用材料与药物的 结合,设计与制备一种具多功能性的药物奈米载体,除了具有控制释放药物与标靶癌细胞之功能,还 可以同步利用声光显影,追踪肿瘤治療情形。然而,传统的药物释放,仅利用药物载体的特性与所在 的环境变化來运作,在人体中并未真正达到完善地控制释放的目标。基于此创新的研究构想,提出利 用药物载体的制程控制,发展具有磁敏感性的奈米核壳胶囊结构,在未加磁场的狀态下,该奈米胶囊 药物自然释放量趋近于零,然而当此奈米胶囊抵达肿瘤位置时,可以利用外部的磁场刺激磁奈米载 体,控制药物快速的局部释放,将大量的抗癌药物释放于肿瘤之位置,达到肿瘤治療的效果。此外, 利用奈米载体表面修饰技术,架接肿瘤标把分子于奈米胶囊的表面上,提升奈米胶囊进入癌细胞的效 率,将载体大量累积于肿瘤位置,并且搭配声光显影,來追踪该奈米胶囊于体内的位置,期望在未來 可达到快速有效率的局部释药于肿瘤细胞,并同时于体内侦测药物释放情形,达到另一个新世代标靶 治療的需求。 The magnetic nanocapsules capable of carrying therapeutic drug molecules and possessing targeted therapy were synthesized as the bifunctional magnetic vectors that can be triggered for control release of therapeutic agent by an external magnetic field and bioimaging through photoacoustic tomography. The drug release profiles of cpsules can be well-regulated through an ultra thin layer of outer magnetic shell. Remote control of drug release from the nanocapsules was successfully achieved using an external magnetic field where the core phase being structurally disintegrated to a certain extent while subjecting to magnetic stimulus, resulting in a burst release of the encapsulated drug. However, a relatively slow and linear release restored immediately right after removal of the stimulus. More than surprisingly, the nanocapsules demonstrated a high uptake efficiency by HeLa cell line while the surface of the capsules was modified by the tumor-targeting lignads. In addition, combing the gold nanorods, the nanocarriers also provide some advantages, such as photoacoustic tomograpy for in vivo bioimaging for “monitoring” drug delivery. Therefore, the multifunctional drug-carriers is able to be triggered by thermal and magnetic changes, and especially put emphasis on “target” drug-delivery using photoacoustic tomography, cell labeling or others detecting technique. |
官方说明文件#: | NSC99-2622-E009-019-CC3 |
URI: | http://hdl.handle.net/11536/100232 https://www.grb.gov.tw/search/planDetail?id=2169862&docId=348680 |
显示于类别: | Research Plans |