标题: 一种新颖双性氧化矽-几丁聚醣混成分子在药物控制释放之应用及此混成分子之磁性功能化研究
A Novel Drug Delivery Sytem Based on an Amphiphilic Silane-Chitosan Hybrid Molecule and Its Magnetic Functionalization
作者: 刘典谟
Liu Dean-Mo
国立交通大学材料科学与工程学系(所)
公开日期: 2011
摘要: 在这一年的国科会计画(NSC98-2113-M-009-004),透过分子的设计与13C NMR
与29Si NMR 的键定,本实验室已成功的合成出一种两性的氧化矽-几丁聚醣混成
分子(简写为S-CHC)(CHC 为一新型改质carboxyl-hexanoyl 几丁聚醣)。在此二年期
的提案中,我们将更深入地研究此种新型混成分子与特定药物分子间的作用,将
以疏水药物(紫杉醇)与亲水药物(小红莓)做为模型。此两性混成分子的亲水、疏
水端和药物分子作用所产生的物理、化学行为将会深入探讨。我们预期此两性混
成分子会对药物分子有不同程度的亲合度,藉此亲合力的诱引来捕抓药物,改善
药物包覆的效率,同时藉由分子间的控制来影响药物释放之动力学。。此混成分
子(控制组与包覆药物组)对于正常细胞(上皮细胞)与癌细胞(肺癌,乳癌细胞)的细
胞相容性与标靶胞吞作用也是我们研究的重点之一。此外,在未来的研究方向
里,我们亦企图增加此混成分子的功能性,可能藉由化学改质在silanol 的部分
架接磁性物质(例如;氧化铁)。此多功能的磁性添加、两性S-CHC 混成分子可同
时结合磁控制药物释放,诊断和标靶,增加治疗的效益。我们高度期望此silica-CHC
混成分子和磁添加的silica-CHC 混成分子可具新奇且之前未被探讨的特性,而这
项研究工作应该会开出一条新的路径,深入了解此一针对在临床上重要药物分子
的新混成系统,及其在生物医学应用的潜力,将在化学物理和生物医学的基础
上,同时提供科学和技术的优势。
With an advanced development of amphiphilic silica-CHC (abbrev. As S-CHC) hybrid
molecule (where CHC is indicative of a newly-formed carboxyl-hexanoyl chitosan) which
has been successfully synthesized in this lab in a recent 1-year NSC project
(NSC-98-2113-M-009-004) through a molecular design and characterization with C- and Si-
NMR spectra. In this 2-year proposal, we continue the work toward a deeper analysis in
regard with the interaction of such a new hybrid molecule with specific drug molecules
involved both hydrophobic drug (paclitaxel) and hydrophilic drug (doxorubin hydrochloride)
as two model molecules. Both physical and chemical interactions of hydrophobic segments
and hydrophilic segments interplaying between the new amphiphilic hybrid molecule and
those drug molecules can be expected. We expect that both interactions may bring affinity of
various strengths to impart drug-hybrid interaction, thus enhancing affinity-driven
entrapment efficiency and in the meantime, molecularly regulate resulting release kinetics. It
is also critical to learn the cytocompatibility and targeting endocytosis (Wei-Ling Tung,
Shang-Hsiu Hu, and Dean-Mo Liu*, “Design and Synthesis of Functionalized Nanoparticles with
Magnetically-remoted Drug Release Control and Enhanced Targeting Intracellular Delivery for
Cancerous Cells”, Journal of Controlled release, in review 2009) of the new hybrid (control and with
drug) toward both normal cells (epithelial cell line) and cancerous cells (A549 and MCF-7)
through a targeting moiety anchorage. Beside, we also intend to enhance the functionality of
the new hybrid molecule with a further chemical modification using magnetic lattice (i.e.,
Fe3O4) along the silanol group of the hybrid chain. A multifunctionality of the
magnetic-doped amphiphilic S-CHC hybrid included magnetically-remoted control drug
releasing, diagnosis, and targeting can be integrated simultaneously to strengthen therapeutic
efficacy and strategy. It is highly anticipated that such a S-CHC and magnetic-doped S-CHC
molecular hybrid should exhibit new properties that may not be explored before and this
research work should pave a new avenue to provide both scientific and technical advantages
based on an in-depth understanding the chemical, physical, and biomedical fundamentals of
this new hybrid systems toward clinically important drug molecules, associated with its
potential biomedical applications.
官方说明文件#: NSC99-2113-M009-013-MY2
URI: http://hdl.handle.net/11536/99075
https://www.grb.gov.tw/search/planDetail?id=2222882&docId=356508
显示于类别:Research Plans