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一种具有优异的微环境敏感性的双组分电荷转移水凝胶:用于生物硫醇的响应性平台。

A two-component charge transfer hydrogel with excellent sensitivity towards the microenvironment: a responsive platform for biogenic thiols.

机构信息

Department of Organic Chemistry, Indian Institute of Science, Bangalore, Karnataka 560012, India.

出版信息

Soft Matter. 2020 Nov 21;16(43):9882-9889. doi: 10.1039/d0sm00502a. Epub 2020 Oct 5.

Abstract

A two-component charge transfer (CT) hydrogel has been derived from a supramolecular heteroassembly of a pyrene amino acid conjugate (PyHisOH, donor) with a 4-chloro-7-nitrobenzofurazan (NBD-Ox, acceptor) derivative in aqueous medium. The mechanical stiffness, as well as the thermal stability of the CT hydrogels largely depend on the relative ratios of donor and acceptor units as well as on their overall concentration. Moreover, the gel-to-sol transition is found to be susceptible to various external stimuli such as heat, pH, metal ions, etc. Circular dichroism and morphological investigation reveal the formation of left-handed helical fibers in the CT gel network. XRD studies show the lamellar packing of the interactive units in the 3D network of the CT hydrogel. The determination of different rheological parameters confirms the viscoelastic as well as the thixotropic nature of the CT gel. Furthermore, the CT gel is employed for turn-on sensing of biogenic thiols, cyan fluorescence was observed with cysteine/homocysteine, while blue fluorescence with glutathione. Nucleophilic attack at the NBD moiety leads to the formation of thermodynamically stable amino-linked derivatives for cysteine or homocysteine and kinetically controlled thiol-linked adduct for glutathione. Thus, the current system presents a unique opportunity, where a CT hydrogel sample is involved for discriminating biogenic thiols via specific chemodosimetric interactions.

摘要

一种由超分子杂化组装而成的两亲性给体(PyHisOH)与受体(4-氯-7-硝基苯并呋咱(NBD-Ox)衍生物)制备的双组分电荷转移(CT)水凝胶。CT 水凝胶的机械刚度和热稳定性在很大程度上取决于供体和受体单元的相对比例以及它们的总浓度。此外,凝胶到溶胶的转变对各种外部刺激(如热、pH 值、金属离子等)很敏感。圆二色谱和形态学研究表明,在 CT 凝胶网络中形成了左手螺旋纤维。XRD 研究表明,在 CT 水凝胶的 3D 网络中,相互作用单元呈层状堆积。不同流变学参数的测定证实了 CT 凝胶的粘弹性和触变性。此外,CT 凝胶还用于生物硫醇的开启感应,半胱氨酸/同型半胱氨酸观察到氰基荧光,而谷胱甘肽观察到蓝色荧光。亲核试剂进攻 NBD 部分,导致形成热力学稳定的氨基键合衍生物用于半胱氨酸或同型半胱氨酸,以及动力学控制的硫醇键合加合物用于谷胱甘肽。因此,该体系提供了一个独特的机会,可以通过特异性化学计量相互作用来区分生物硫醇。

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