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基于离子液体-肽两亲性分子组装体开发纳米级杂化物作为新型功能材料。

Development of Nanoscale Hybrids from Ionic Liquid-Peptide Amphiphile Assemblies as New Functional Materials.

作者信息

Daso Rachel E, Osborn Luke J, Thomas Marie F, Banerjee Ipsita A

机构信息

Department of Chemistry, Fordham University, 441 East Fordham Road, Bronx, New York 10458, United States.

Department of Natural Science, Fordham College at Lincoln Center, 113 W. 60th Street, New York, New York 10023, United States.

出版信息

ACS Omega. 2020 Jun 11;5(24):14543-14554. doi: 10.1021/acsomega.0c01254. eCollection 2020 Jun 23.

Abstract

Over the years, ionic liquids (ILs) have gained tremendous importance because of their unique properties and plethora of applications. In this work, we have developed a new nanoscale hybrid gel consisting of 1-ethyl-3-methylimidazolium dimethyl phosphate, [Cmim][dmp], and self-assembled peptide nanoassemblies. The peptide nanoassemblies were formed by self-assembly of a newly synthesized peptide bolaamphiphile bis(-α-amido-threonine) 1,7 heptane dicarboxylate (ThrC7). Upon mild heating and sonication of the IL and ThrC7 nanoassemblies, ThrC7-IL nanocomposites were formed. We explored the formation of nanohybrids by varying the ratio of IL to ThrC7 assemblies. While at lower IL ratios, a gelatinous matrix was formed, at higher IL ratios, highly ordered multilayered structures were observed by atomic force microscopy (AFM) imaging. The interactions between the ThrC7 nanofibers and [Cmim][dmp] IL were probed by Fourier transform infrared spectroscopy, transmission electron microscopy, and AFM imaging. Differential scanning calorimetry and thermogravimetric analysis showed that the nanohybrids illustrated distinct thermal phase changes due to changes in hydrogen bonding interactions and unfolding of the nanoassemblies. The viscoelastic behavior of the nanohybrids indicated that the materials displayed higher storage modulus upon incorporation of the ThrC7 nanoassemblies when compared to the IL. Furthermore, the nanohybrids were found to adhere to and promote proliferation of human dermal fibroblasts, while cytotoxicity was observed toward MCF-7 breast cancer cells. Thus, for the first time, we have developed peptide-based nanohybrids with an imidazolium-based IL with unique structural properties that may open new avenues for exploring potential biological applications.

摘要

多年来,离子液体(ILs)因其独特的性质和大量的应用而变得极为重要。在这项工作中,我们开发了一种新型的纳米级混合凝胶,它由1-乙基-3-甲基咪唑鎓二甲基磷酸盐([Cmim][dmp])和自组装肽纳米组装体组成。肽纳米组装体是由新合成的肽两亲分子双(-α-氨基苏氨酸)1,7庚烷二羧酸酯(ThrC7)自组装形成的。在对IL和ThrC7纳米组装体进行温和加热和超声处理后,形成了ThrC7-IL纳米复合材料。我们通过改变IL与ThrC7组装体的比例来探索纳米杂化物的形成。在较低的IL比例下,形成了凝胶状基质,而在较高的IL比例下,通过原子力显微镜(AFM)成像观察到了高度有序的多层结构。通过傅里叶变换红外光谱、透射电子显微镜和AFM成像研究了ThrC7纳米纤维与[Cmim][dmp] IL之间的相互作用。差示扫描量热法和热重分析表明,由于氢键相互作用的变化和纳米组装体的解折叠,纳米杂化物呈现出明显的热相变。纳米杂化物的粘弹性行为表明,与IL相比,在加入ThrC7纳米组装体后,材料表现出更高的储能模量。此外,发现纳米杂化物能粘附并促进人皮肤成纤维细胞的增殖,而对MCF-7乳腺癌细胞具有细胞毒性。因此,我们首次开发了基于肽的纳米杂化物与基于咪唑鎓的IL,其具有独特的结构性质,这可能为探索潜在的生物应用开辟新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc3b/7315584/0cfc1d32ec1c/ao0c01254_0001.jpg

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