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Visible-light induced reactions in lamellar phospholipid assemblies

机译:层状磷脂组装体中的可见光诱导反应

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摘要

Cyanine photosensitizers are visible-light absorbing dyes commercially useful in photography and available in a variety of structures with tunable redox, absorptivity and excited state properties. The areas of research described in this dissertation all utilize cyanine dyes to photosensitize various processes to visible-light within the confines of lamellar phospholipid assemblies. In Chapter III, an efficient three component, liposome-bound photochemical molecular device for transfer of energy and electrons is described. A porphyrin (free base or metallated) serves as the energy donor, a cyanine functions as the energy acceptor/electron acceptor and Ph₃BnB- acts as an electron donor. In Chapter IV, the first example of visible-light sensitized bilayer polymerization is presented. Sensitizing the polymerization of two-dimensional lipid assemblies to visible-light is part of a current research effort to exploit the properties of polymerized supramolecular structures. Extending the polymerization sensitivity of such amphiphile aggregates to lower energy visible-light creates possibilities for applications where UV photolysis would not be useful. Applications of liposomes as drug delivery vehicles thus far have relied upon such release mechanisms as pH sensitivity or target specific interactions to empty the liposome contents to the cell. Chapter V describes a new system for the successful destabilization of liposomes at pH 4.5 via visible-light sensitive polymerization of lipids. Visible-light sensitized polymerization induces the release of liposome aqueous contents providing temporal and spatial control over the release event and lower energy irradiation with more tissue penetration than UV photolysis.
机译:花青光敏剂是在商业上可用于照相的可见光吸收染料,并且可以以具有可调的氧化还原,吸收率和激发态特性的各种结构获得。本文所研究的领域均利用花青染料对层状磷脂组装体范围内的可见光进行光敏化。在第三章中,描述了一种有效的三组分脂质体结合的光化学分子器件,用于传递能量和电子。卟啉(游离碱或金属化的)用作能量供体,花菁用作能量受体/电子受体,Ph₃BnB-用作电子供体。在第四章中,给出了可见光敏化双层聚合的第一个例子。使二维脂质组装体对可见光敏感的聚合是利用聚合的超分子结构性质的当前研究工作的一部分。将这种两亲性聚集体的聚合敏感性扩展至较低能量的可见光,为在没有紫外光解作用的应用中提供了可能性。迄今为止,脂质体作为药物递送载体的应用依赖于诸如pH敏感性或靶标特异性相互作用之类的释放机制以将脂质体内容物排空到细胞中。第五章介绍了通过脂质对可见光敏感的聚合作用成功使脂质体在pH 4.5下稳定的新系统。可见光敏化聚合诱导脂质体含水量的释放,从而提供了对释放事件的时间和空间控制,并具有比UV光解更多的组织穿透力,更低的能量辐照。

著录项

  • 作者

    Clapp Paula Jean 1968-;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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