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用环糊精和环糊精-客体包合物功能化的脂肪族聚酯纳米纤维

Aliphatic Polyester Nanofibers Functionalized with Cyclodextrins and Cyclodextrin-Guest Inclusion Complexes.

作者信息

Narayanan Ganesh, Shen Jialong, Boy Ramiz, Gupta Bhupender S, Tonelli Alan E

机构信息

Fiber and Polymer Science Program, North Carolina State University, Raleigh, NC 27695, USA.

Department of Textile Engineering, Namık Kemal University, Corlu/Tekirdag 59860, Turkey.

出版信息

Polymers (Basel). 2018 Apr 11;10(4):428. doi: 10.3390/polym10040428.

Abstract

The fabrication of nanofibers by electrospinning has gained popularity in the past two decades; however, only in this decade, have polymeric nanofibers been functionalized using cyclodextrins (CDs) or their inclusion complexes (ICs). By combining electrospinning of polymers with free CDs, nanofibers can be fabricated that are capable of capturing small molecules, such as wound odors or environmental toxins in water and air. Likewise, combining polymers with cyclodextrin-inclusion complexes (CD-ICs), has shown promise in enhancing or controlling the delivery of small molecule guests, by minor tweaking in the technique utilized in fabricating these nanofibers, for example, by forming core⁻shell or multilayered structures and conventional electrospinning, for controlled and rapid delivery, respectively. In addition to small molecule delivery, the thermomechanical properties of the polymers can be significantly improved, as our group has shown recently, by adding non-stoichiometric inclusion complexes to the polymeric nanofibers. We recently reported and thoroughly characterized the fabrication of polypseudorotaxane (PpR) nanofibers without a polymeric carrier. These PpR nanofibers show unusual rheological and thermomechanical properties, even when the coverage of those polymer chains is relatively sparse (~3%). A key advantage of these PpR nanofibers is the presence of relatively stable hydroxyl groups on the outer surface of the nanofibers, which can subsequently be taken advantage of for bioconjugation, making them suitable for biomedical applications. Although the number of studies in this area is limited, initial results suggest significant potential for bone tissue engineering, and with additional bioconjugation in other areas of tissue engineering. In addition, the behaviors and uses of aliphatic polyester nanofibers functionalized with CDs and CD-ICs are briefly described and summarized. Based on these observations, we attempt to draw conclusions for each of these combinations, and the relationships that exist between their presence and the functional behaviors of their nanofibers.

摘要

在过去二十年中,通过静电纺丝制备纳米纤维越来越受到关注;然而,直到最近十年,才开始使用环糊精(CDs)或其包合物(ICs)对聚合物纳米纤维进行功能化处理。通过将聚合物静电纺丝与游离CDs相结合,可以制备出能够捕获小分子的纳米纤维,如伤口气味或水和空气中的环境毒素。同样,将聚合物与环糊精包合物(CD-ICs)相结合,通过对制备这些纳米纤维的技术进行微小调整,例如形成核壳或多层结构以及传统静电纺丝,分别实现小分子客体的增强或控制释放,已显示出一定的前景。除了小分子递送外,正如我们小组最近所展示的,通过向聚合物纳米纤维中添加非化学计量的包合物,可以显著改善聚合物的热机械性能。我们最近报道并全面表征了无聚合物载体的聚准轮烷(PpR)纳米纤维的制备。这些PpR纳米纤维表现出不同寻常的流变学和热机械性能,即使聚合物链的覆盖率相对较低(约3%)。这些PpR纳米纤维的一个关键优势是其纳米纤维外表面存在相对稳定的羟基,随后可利用这些羟基进行生物共轭,使其适用于生物医学应用。尽管该领域的研究数量有限,但初步结果表明其在骨组织工程方面具有巨大潜力,并且在组织工程的其他领域进行额外的生物共轭也有潜力。此外,还简要描述和总结了用CDs和CD-ICs功能化的脂肪族聚酯纳米纤维的行为和用途。基于这些观察结果,我们试图对这些组合中的每一种以及它们的存在与纳米纤维功能行为之间的关系得出结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9366/6415270/a41df39573a7/polymers-10-00428-g001.jpg

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