标题: 与金奈米粒子共轭之自组装超分子胜肽水胶生物材料之合成及分析
Synthesis and analysis of self-assembly peptide supramolecular hydrogel biomaterial conjugated with gold nanoparticles
作者: 黄舜强
Huang, Shun-Chiang
柯富祥
Ko, Fu–Hsiang
材料科学与工程学系奈米科技硕博士班
关键字: 超分子;水胶;金奈米粒子;supramolecule;hydrogel;gold nanoparticle
公开日期: 2012
摘要: 在近年来,水胶复合物在生物材料上的应用发展备受瞩目,例如生物分析、化学检测、药物释放。将不同奈米结构的材料做新颖的结合,有助于多功能材料的发展。在本篇研究中,合成2-Naphthylacetic acid- L-Phenylalanine- L-Phenylalanine- L-Cysteine (NapFFC) 自组装超分子水胶并与金奈米粒子做共轭结合,为一种新颖且具有潜力的复合材料。对于环境因素改变形成胶体的条件,例如浓度、酸硷值、离子强度、温度及反应时间,可以藉由视觉观察得知。分析NapFFC与金奈米粒子之间的作用力,讨论得知保护能力的来源,以及NapFFC和奈米粒子彼此为性质互补的材料。吾人观察到因为自组装分子所产生的纤维网状并分析不同种类的螺旋结构。NapFFC在335奈米所释放的萤光强度有助于判断在60 μM以下的浓度,而在这范围不会有自我消光的现象发生。利用金奈米粒子对于萤光有消光的作用,因其具备灵敏及准确的特性,连结在金奈米粒子分子数量亦能求得。在本篇未来研究展望中,吾人再使用一样的萤光检测方法,发现汞离子具有类似的消光特性。此外,在细胞存活率也表现出良好的生物相容性。本篇研究所做的分析结果对于日后在生物材料上的发展有所贡献。
Recently, development of hydrogel nanocomposites offered tremendous scope for future biomaterial applications, including bioanalysis, chemical sensing, and drug delivery. Smart combinations of different nanostructured materials supported the development of multifunctional nanomaterials. In this study, synthesizing self-assembly peptide supramolecular hydrogel 2-Naphthylacetic acid- L-Phenylalanine- L-Phenylalanine- L-Cysteine (NapFFC) has been done and conjugated with gold nanoparticles (AuNPs) as a new and potential composite material. Finding stimuli-response properties for critical hydrogelation conditions such as concentration, pH, ionic strength, temperature, and incubation time were defined by visual. Further discussion for protection ability resulted from interaction between NapFFC and AuNPs was analyzed, and the results showed hydrogel and nanoparticles were complementary materials. Fibrous network and various kinds of helix structure resulted from self-assembly molecule blocks was observed and analyzed. Fluorescence intensity emitted at 335 nm was also helpful to obtain concentration of NapFFC under 60 μM within which self-quenching didn’t occur. Utilizing fluorescence quenching effect of AuNPs was quite sensitive and precise to measure the accurate amounts of molecules bound to the surface of AuNPs. This method was also used to detect quenching effectiveness of mercury ions in this study. Moreover, cell viability showed good biocompatibility. These analysis and results of composite material were attractive feature for exploitation in the field of biomaterials.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070051601
http://hdl.handle.net/11536/71967
显示于类别:Thesis