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Multifunctional mesoporous silica nanospheres for biosensor, stimuli-responsive controlled-release drug delivery carriers and gene transfection vectors.

机译:多功能中孔二氧化硅纳米球,用于生物传感器,刺激响应型控释药物传递载体和基因转染载体。

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摘要

Structurally well-defined mesoporous silica materials with tunable pore size and narrow pore-size distribution have attracted much attention for their potential applications in sensing, drug delivery and gene transfer. A series of mesoporous silica nanosphere-based (MSN) nano-devices were synthesized and utilized for the aforementioned applications.; For sensing application, we provide a first example in utilization of a multi-functionalized mesoporous silica material to selectively detect dopamine. A second application, rooted in this work, is the selective detection of amino-containing neurotransmitters under physiological condition.; The drug delivery applications have been built around a controlled release drug delivery device. In the original conception, the system is using surface-derivatized cadmium sulfide (CdS) nanocrystals as chemically removable caps to encapsulate several drug molecules and neurotransmitters inside the organically functionalized MSN mesoporous framework. To study the cap-dependence release profile, adenosine 5-triphosphate (ATP) molecules were encapsulated in the MSNs followed by capping of the mesopores with chemically removable caps, such as CdS nanoparticles and poly(amido amine) dendrimers (PAMAM). A luciferase chemiluminescence imaging method was employed to investigate the kinetics and mechanism of the ATP release with various disulfide-reducing agents as uncapping triggers in real time. By varying the chemical nature of the "cap" and "trigger" molecules in our MSN system, we observed that the release profiles could be regulated.; Further, the PAMAM dendrimers of low generations were utilized as MSN caps for drug delivery. The biocompatibility and delivery efficiency of the later MSN system in interaction with HeLa cervical cancer cells were demonstrated. The system renders the possibility to serve as a universal transmembrane carrier for intracellular drug delivery and imaging applications. This is the first uptake study of MCM-41 type mesoporous silicas into eukaryotic cells.; The last application presented in the current dissertation is gene delivery. A MSN based gene transfection system was developed, where second generation (G2) PAMAMs were covalently attached to the surface of MSN. The G2-PAMAM-capped MSN material (G2-MSN) was able to complex with a plasmid DNA (pEGFP-C1). The gene transfection efficacy, uptake mechanism, and biocompatibility of the G2-MSN system with various cell types were investigated.
机译:具有可调节的孔径和狭窄的孔径分布的结构明确的介孔二氧化硅材料因其在传感,药物递送和基因转移中的潜在应用而备受关注。合成了一系列介孔二氧化硅纳米球基(MSN)纳米器件,并用于上述应用。对于传感应用,我们提供了利用多功能介孔二氧化硅材料选择性检测多巴胺的第一个示例。植根于这项工作的第二个应用是在生理条件下选择性检测含氨基的神经递质。围绕控释药物递送装置构建了药物递送应用。在最初的概念中,该系统使用表面衍生的硫化镉(CdS)纳米晶体作为化学可移动的盖子,以将几种药物分子和神经递质封装在有机功能化的MSN介孔框架内。为了研究帽依赖性释放曲线,将5-三磷酸腺苷(ATP)分子封装在MSN中,然后用化学可拆下的帽(例如CdS纳米颗粒和聚(胺基胺)树状大分子(PAMAM))将中孔封端。采用萤光素酶化学发光成像方法实时研究了以各种二硫键还原剂作为解封触发物的ATP释放的动力学和机理。通过改变我们的MSN系统中“帽”和“触发”分子的化学性质,我们观察到释放曲线可以被调节。此外,低代的PAMAM树状聚合物被用作MSN帽用于药物递送。证明了后来的MSN系统与HeLa宫颈癌细胞相互作用的生物相容性和递送效率。该系统提供了用作细胞内药物递送和成像应用的通用跨膜载体的可能性。这是MCM-41型介孔二氧化硅进入真核细胞的第一个研究。本文提出的最后一个应用是基因传递。开发了基于MSN的基因转染系统,其中第二代(G2)PAMAM共价附于MSN表面。带有G2-PAMAM的MSN材料(G2-MSN)能够与质粒DNA(pEGFP-C1)复合。研究了G2-MSN系统与各种细胞类型的基因转染效率,摄取机制和生物相容性。

著录项

  • 作者

    Lai, Cheng-Yu.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Chemistry Inorganic.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;生物化学;
  • 关键词

  • 入库时间 2022-08-17 11:43:57

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