完整后设资料纪录
DC 栏位语言
dc.contributor.author刘典谟en_US
dc.contributor.authorLiu Dean-Moen_US
dc.date.accessioned2014-12-13T10:42:33Z-
dc.date.available2014-12-13T10:42:33Z-
dc.date.issued2011en_US
dc.identifier.govdocNSC100-2622-M009-002-CC3zh_TW
dc.identifier.urihttp://hdl.handle.net/11536/99235-
dc.identifier.urihttps://www.grb.gov.tw/search/planDetail?id=2314743&docId=362098en_US
dc.description.abstract眼科用药一般以口服或是眼药水为主。考量到口服会因人体代谢消耗,而眼药水
则只有1%到7%的剂量可被眼睛所吸收;因此,本实验室计画发展出一种医用型
隐形眼镜,除了市面上所要求的高保水性,并具有特殊医疗效果,这也是本研究
计画的主要重点。利用本实验室研发出的奈米药物载体与隐形眼镜材料silicone
hydrogel,制成复合性水胶材料。本实验室在近年已成功研发出具有生物相容性
之双性几丁聚醣(CHC) , 同时加以改质成新的无机- 有机双性混成分子
(NSC-98-2113-M-009-004),本身同时具有疏水端及亲水端,可以将药物(疏水或
亲水)包覆在此结构内部。双性混成分子可透过自组装形成奈米颗粒或是中空的
奈米微胞,也可控制其尺寸和疏水程度。利用此双性混成分子在初步保水性测试,
已可与市面上贩售高保水性隐形眼镜相媲美;而在药物释放初期研究(制作成复
合性水胶材料), 显示可控制的药物释放行为, 突显本计画之高度可行性。本研
究计画将深入探讨此复合材料的化学、物理、生医特性。
zh_TW
dc.description.abstractOphthalmic solutions are generally administrated via oral or eye drops. In terms of
oral, drugs were largely consumed by metabolism, resulting in poor therapeutic
efficacy. In terms of eye drops, only 1% to 7% of the dose delivered from eye drop is
absorbed by the eye. Therefore, it is technically and industrially important if a contact
lens capable of eluting therapeutic agents in a wide variety of manners to meet clinical
demands, which renders not only high water uptake, but also imparts diverse
therapeutic ability. Combining a novel drug nanocarrier developed recently in this lab,
namely amphiphilic hybrid chitosan (CHC), and commercial available silicone
contact lens material, giving a composite material, we intend in this proposal to
employ the CHC as drug carrier to form a drug-eluting contact lens, a topic that has
been raised a huge attention in medical device worldwide in recent decade, but seems
very lean and little developed in Taiwan. The CHC hybrid macromolecule has been
confirmed capable of self-assembling to hollow nanocapsules with controllable size
and hydrophobicity (NSC-98-2113-M-009-004). In our early evaluation, this hybrid
molecule appears to show excellent compatibility to the silicone hydrogels (provided
from cooperative partner of this proposal) and it also demonstrated a high feasibility
of drug elution. On these bases, we believe an in-depth understanding the chemical,
physical, and biomedical fundamentals of this system is critically needed and urgent,
which is aimed to trigger the development of medical-grade contact lenses.
en_US
dc.description.sponsorship行政院国家科学委员会zh_TW
dc.language.isozh_TWen_US
dc.subject双性几丁聚醣复合物zh_TW
dc.subject自组装zh_TW
dc.subject药物释放zh_TW
dc.subject矽水胶zh_TW
dc.subject奈米载体zh_TW
dc.subject药物释放zh_TW
dc.subjectAmphiphlic hybrid chitosan (CHC)en_US
dc.subjectself-assemblyen_US
dc.subjectcontrolled drug deliveryen_US
dc.subjectsilicone hydrogelen_US
dc.subjectnanocapsuleen_US
dc.title双性聚多醣-矽胶核-壳奈米胶囊在带药型矽水胶隐形眼镜之研究开发zh_TW
dc.titleSynthesis and Development of Silicone-Based Drug-Eluting Contact Lens Using Polysaccharide-Silicone Core-Shell Nanocapsules with Combined Functionsen_US
dc.typePlanen_US
dc.contributor.department国立交通大学材料科学与工程学系(所)zh_TW
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