首页> 外文期刊>ACS applied materials & interfaces >Versatile, Reversible, and Reusable Gel of a Monocholesteryl Conjugated Calix[4]arene as Functional Material to Store and Release Dyes and Drugs Including Doxorubicin, Curcumin, and Tocopherol
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Versatile, Reversible, and Reusable Gel of a Monocholesteryl Conjugated Calix[4]arene as Functional Material to Store and Release Dyes and Drugs Including Doxorubicin, Curcumin, and Tocopherol

机译:单胆固醇共轭杯[4]芳烃作为功能性材料的多功能,可逆和可重复使用的凝胶,可存储和释放染料和药物,包括阿霉素,姜黄素和生育酚

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摘要

Gels are interesting soft materials owing to their functional properties leading to potential applications. This paper deals with the synthesis of monocholesteryl derivatized calix[4]arene (G) and its instantaneous gelation at a minimum gelator concentration of 0.6% in 1:1 v/v THF/acetonitrile. The gel shows remarkable thermoreversibility by exhibiting T-gel -> sol at similar to 48 degrees C and is demonstrated for several cycles. The gel shows an organized network of nanobundles, while that of the sol shows spherical nanoaggregates in microscopy. A bundle with similar to 12 nm diameter possessing hydrophobic pockets in itself is obtained from computationally modeled gel, and hence the gel is suitable for storage and release applications. The guest-entrapped gels exhibit the same Microstructures as that observed with simple gels, while fluorescence spectra and molecular mechanics suggests that the drug molecules occupy the hydrophobic pockets. All the entrapped drug molecules are released into water, suggesting a complete recovery of the trapped species. The reusability of the gel for the storage and release of the drug into water is demonstrated for four consecutive cycles, and hence the gel formed from G acts as a functional material that finds application in drug delivery.
机译:凝胶由于其功能特性导致潜在的应用而成为令人关注的柔软材料。本文研究了单胆固醇基衍生的杯[4]芳烃(G)的合成及其在1:1 v / v THF /乙腈中的最小胶凝剂浓度为0.6%时的瞬时胶凝。该凝胶通过在类似于48摄氏度的温度下显示T-gel-> sol表现出卓越的热可逆性,并被证明了多个循环。凝胶显示出纳米束的有组织的网络,而溶胶的凝胶在显微镜下显示出球形的纳米聚集体。通过计算模型化的凝胶获得了直径类似于12 nm的束,其本身本身具有疏水性口袋,因此该凝胶适用于储存和释放应用。截留了客体的凝胶表现出与简单凝胶所观察到的相同的微观结构,而荧光光谱和分子力学表明药物分子占据了疏水口袋。所有截留的药物分子都释放到水中,表明被捕集的物种已完全恢复。证明了该凝胶可重复使用,用于将药物存储和释放到水中四个连续的周期,因此,由G形成的凝胶可作为功能材料用于药物输送。

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