以超分子方法走向纳米医学:综述。

R Cao, R Villalonga, A Fragoso
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引用次数: 16

摘要

本文综述了环糊精(CD)衍生物通过共价和非共价相互作用(主-客体超分子相互作用)稳定蛋白质(酶)的研究结果。后一种方法引入了金属表面酶固定的新方法,可用于制备生物传感器和治疗性纳米器件。用含硫环糊精衍生物修饰金(和银)电极和纳米颗粒的表面。当蛋白质(酶)的一个或多个庞大的疏水部分被包含到CD腔中时,蛋白质(酶)被超分子固定在修饰的表面上。该蛋白也可以用典型的CD客体(如金刚烷)进行修饰,以实现更稳定的固定。本文提出了不同的例子,例如基于金刚烷修饰的单层细胞色素c的生物传感器,以及包含与过氧化氢酶和超氧化物歧化酶相关的CD稳定的双酶纳米器件,这些CD与互补的主客体残基修饰有关。分析了这种新方法发展生物传感器和治疗性纳米器件的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards nanomedicine with a supramolecular approach: a review.

A review dedicated mainly to the results obtained by the authors on the use of cyclodextrin (CD) derivatives on protein (enzyme) stabilization through covalent and non-covalent interactions (host-guest supramolecular interactions) is presented here. This latter procedure served to introduce a new method for enzyme immobilization on metallic surfaces that can be used to prepare biosensors and therapeutic nanodevices. The surfaces of gold (and silver) electrodes and nanoparticles were modified with sulphur-containing cyclodextrin derivatives. The protein (enzyme) was then supramolecularly immobilized on the modified surface when one or more of its bulky hydrophobic moieties was included into the CD cavity. The protein can also be modified with a typical CD guest, such as adamantane, to achieve a more stable immobilization. Different examples are presented, such as a biosensor based on monolayers of adamantane-modified cytochrome c and a bienzymatic nanodevice comprising gold nanoparticles stabilized with CD associated to catalase and superoxide dismutase modified with complementary host-guest residues. The possibilities of this new approach for the development of biosensors and therapeutic nanodevices are analyzed.

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