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甲氧基插层蒙脱石纳米片的合成与表征作为 5-氟尿嘧啶药物的潜在载体,具有增强的负载、释放和细胞毒性性能。

Synthesis and Characterization of Methoxy-Exfoliated Montmorillonite Nanosheets as Potential Carriers of 5-Fluorouracil Drug with Enhanced Loading, Release, and Cytotoxicity Properties.

机构信息

Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia.

Botany and Microbiology Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Molecules. 2023 Aug 5;28(15):5895. doi: 10.3390/molecules28155895.

Abstract

Natural bentonite clay (BE) underwent modification steps that involved the exfoliation of its layers into separated nanosheets (EXBE) and further functionalization of these sheets with methanol, forming methoxy-exfoliated bentonite (Mth/EXBE). The synthetically modified products were investigated as enhanced carriers of 5-fluorouracil as compared to raw bentonite. The modification process strongly induced loading properties that increased to 214.4 mg/g (EXBE) and 282.6 mg/g (Mth/EXBE) instead of 124.9 mg/g for bentonite. The loading behaviors were illustrated based on the kinetic (pseudo-first-order model), classic isotherm (Langmuir model), and advanced isotherm modeling (monolayer model of one energy). The Mth/EBE carrier displays significantly higher loading site density (95.9 mg/g) as compared to EXBE (66.2 mg/g) and BE (44.9 mg/g). The loading numbers of 5-Fu in each site of BE, EXBE, and Mth/EXBE (>1) reflect the vertical orientation of these loaded ions involving multi-molecular processes. The loading processes that occurred appeared to be controlled by complex physical and weak chemical mechanisms, considering both Gaussian energy (<8 KJ/mol) as well as loading energy (<40 KJ/mol). The releasing patterns of EXBE and Mth/EXBE exhibit prolonged and continuous properties up to 100 h, with Mth/EXBE displaying much faster behaviors. Based on the release kinetic modeling, the release reactions exhibit non-Fickian transport release properties, validating cooperative diffusion and erosion release mechanisms. The cytotoxicity of 5-Fu is also significantly enhanced by these carriers: 5-Fu/BE (8.6% cell viability), 5-Fu/EXBE (2.21% cell viability), and 5-Fu/Mth/EXBE (0.73% cell viability).

摘要

天然膨润土 (BE) 经历了改性步骤,包括其层状结构的剥离成分离的纳米片 (EXBE),以及进一步用甲醇对这些纳米片进行功能化,形成甲氧基剥离膨润土 (Mth/EXBE)。与天然膨润土相比,合成改性产物被用作 5-氟尿嘧啶的增强载体。改性过程强烈诱导了负载性能,负载量增加到 214.4mg/g (EXBE) 和 282.6mg/g (Mth/EXBE),而膨润土的负载量为 124.9mg/g。负载行为是基于动力学(伪一级模型)、经典等温线(朗缪尔模型)和先进的等温线模型(单层模型)进行说明的。与 EXBE(66.2mg/g)和 BE(44.9mg/g)相比,Mth/EBE 载体具有明显更高的负载位密度(95.9mg/g)。BE、EXBE 和 Mth/EXBE 中每个位点的 5-Fu 负载数(>1)反映了这些负载离子的垂直取向,涉及多分子过程。在每个位点发生的负载过程似乎受到复杂的物理和弱化学机制的控制,同时考虑了高斯能(<8KJ/mol)和负载能(<40KJ/mol)。EXBE 和 Mth/EXBE 的释放模式表现出长达 100 小时的延长和连续特性,其中 Mth/EXBE 表现出更快的行为。基于释放动力学模型,释放反应表现出非菲克扩散释放特性,验证了协同扩散和侵蚀释放机制。这些载体也显著增强了 5-Fu 的细胞毒性:5-Fu/BE(8.6%细胞活力)、5-Fu/EXBE(2.21%细胞活力)和 5-Fu/Mth/EXBE(0.73%细胞活力)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51c0/10421137/53e467576425/molecules-28-05895-g001.jpg

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