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芘荧光法在疏水改性淀粉纳米颗粒特性表征中的应用。

Applications of Pyrene Fluorescence to the Characterization of Hydrophobically Modified Starch Nanoparticles.

机构信息

Institute for Polymer Research, Waterloo Institute for Nanotechnology, Department of Chemistry , University of Waterloo , Waterloo , Ontario N2L 3G1 , Canada.

出版信息

Langmuir. 2018 Jul 24;34(29):8611-8621. doi: 10.1021/acs.langmuir.8b01591. Epub 2018 Jul 16.

Abstract

Several aspects of pyrene fluorescence were applied to gain an insight into the nature of the microdomains in hydrophobically modified starch nanoparticles (HM-SNPs), prepared by reacting SNPs with propionic and hexanoic anhydride to yield C3- and C6-SNPs, respectively. The fluorescence experiments took advantage of the inherent hydrophobicity of pyrene to bind onto the hydrophobic domains generated by the HM-SNPs, and its specific response to the polarity of its environment, to probe its accessibility to quenchers such as oxygen or nitromethane dissolved in water. The equilibrium constant K for the binding of pyrene onto HM-SNPs, the ratio ( I/ I) describing the relative hydrophobicity of the microenvironment experienced by pyrene, its lifetime (τ), and the rate constant of quenching of pyrene bound to the HM-SNPs by water-soluble nitromethane ( k) were determined as a function of the degree of substitution and weight fraction (wt %) of the hydrophobic modifier. The C3- and C6-SNPs yielded similar parameters at low levels of hydrophobic modification, indicating higher hydrophobicity of the modified SNPs with increasing modification level. However, SNPs modified with more than 5 wt % of hexanoyl pendants all displayed enhanced hydrophobicity for the C6-SNPs relative to the C3-SNPs. This substantial enhancement is attributed to the formation of larger hydrophobic microdomains by the hexanoyl pendants of the C6-SNPs above the 5 wt % C6-modification threshold, which did not occur with the C3-SNPs. Finally, the size of the SNPs did not appear to influence their relative hydrophobicity. These experiments demonstrate how the fluorescence of pyrene can be harnessed to provide information about the relative hydrophobicity of HM-SNPs.

摘要

几种芘荧光特性被应用于深入了解疏水改性淀粉纳米颗粒(HM-SNPs)的微域性质,该纳米颗粒是通过 SNPs 与丙酸和己酸酐反应分别得到 C3-SNPs 和 C6-SNPs 制得的。荧光实验利用芘的固有疏水性,使其结合到 HM-SNPs 产生的疏水性微域中,以及其对环境极性的特异性响应,来探测其对溶解在水中的猝灭剂(如氧气或硝基甲烷)的可接近性。芘结合到 HM-SNPs 的平衡常数 K、描述芘所经历的微环境相对疏水性的比值(I/ I)、其寿命(τ)以及水溶性硝基甲烷猝灭结合到 HM-SNPs 的芘的速率常数(k),都被确定为疏水改性剂的取代度和重量分数(wt %)的函数。在低疏水改性水平下,C3-和 C6-SNPs 产生了相似的参数,表明随着改性水平的提高,改性 SNPs 的疏水性更高。然而,当改性 SNPs 中己酰基侧链的重量百分比超过 5wt%时,所有 C6-SNPs 的疏水性相对于 C3-SNPs 都表现出增强的趋势。这种显著的增强归因于 C6-SNPs 中己酰基侧链形成了更大的疏水性微域,而 C3-SNPs 中则没有发生这种情况。最后, SNPs 的大小似乎并不影响它们的相对疏水性。这些实验表明,如何利用芘的荧光特性来提供有关 HM-SNPs 相对疏水性的信息。

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