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[UiO-66-NH@纤维素杂化气凝胶用于保健品中西地那非的固相萃取]

[Utilization of UiO-66-NH@cellulose hybrid aerogel for solid-phase extraction of sildenafil in health products].

作者信息

Chen Zhifan, Wu Yeyu, Tan Xuecai, Meng Jianqing, Cen Jie, Liu Min

机构信息

School of Chemistry and Chemical and Engineering, Guangxi University for Nationalities, Key Laboratory of Chemistry and Engineering of Forest Products, State Ethnic Affairs Commission, Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, Guangxi Collaborative Innovation Center for Chemistry and Engineering of Forest Products, Key Laboratory of Guangxi Colleges and Universities for Food Safety and Pharmaceutical Analytical Chemistry, Nanning 530008, China.

出版信息

Se Pu. 2022 Jun;40(6):556-564. doi: 10.3724/SP.J.1123.2021.11022.

Abstract

Sildenafil is a prescription drug used to treat pulmonary hypertension and erectile dysfunction. However, the illegal addition of sildenafil to health supplements may be hazardous to human health. Therefore, it is imperative to develop a method for the detection of sildenafil in health products. Solid-phase extraction (SPE) is typically used for the separation, purification, and enrichment of samples, with the aim of reducing the matrix interference of the samples and improving the detection sensitivity. SPE is widely employed in the detection of trace compounds in complex samples. Metal-organic frameworks (MOFs) are hybrid crystalline materials composed of metal ions and organic ligands. MOFs offer the advantages of a large specific surface area, permanent nanopores, good stability, and pore controllability. Owing to their advantages, researchers have attempted to use MOFs for SPE; however, it is difficult to collect MOFs in the powder form when they are directly used in SPE, necessitating the use of a substrate material to fix the MOFs. Hence, this study proposes a novel SPE method with high sensitivity that employs a UiO-66-NH@cellulose hybrid aerogel, for the detection of sildenafil in health products. First, UiO-66-NH was synthesized by a hydrothermal method. Cellulose nanocrystal (CNC) was modified with an aldehyde group to obtain CNC-CHO, and carboxymethyl cellulose (CMC) was modified with a hydrazide group to obtain CMC-NHNH. Subsequently, UiO-66-NH was added to the CNC-CHO solution, mixed with the CMC-NHNH solution, and then crosslinked to load UiO-66-NH and form a hybrid aerogel as a bulk adsorbent. This bulk hybrid aerogel could be collected easily without extra force for use in SPE. The synthesized hybrid aerogel was characterized by X-ray powder diffraction, scanning electron microscopy, Fourier transform-infrared (FT-IR) spectroscopy, and nitrogen gas adsorption/desorption. The results showed that UiO-66-NH was successfully loaded on the pore surface of the hybrid aerogel, which made the pore of aerogel become more regular and a larger surface area. Investigation of the loading amount of UiO-66-NH in the hybrid aerogel revealed that a higher amount of UiO-66-NH could yield better extraction efficiency. The highest amount of UiO-66-NH that could be loaded in the hybrid aerogel was 50%. The experimental conditions affecting the enrichment of sildenafil were optimized, and determined to be the following: pH of the sample, 9.0; extraction time, 60 min; eluent, acetonitrile; elution time, 40 min; elution volume, 3×2 mL; salt ion concentration, 0. Separation was performed on an Agilent Zorbax Eclipse Plus C18 column (150 mm×4.6 mm, 5 μm) with a phosphate solution containing 0.1 mol/L triethylamine (pH=6.50)-acetonitrile (30∶70, v/v) as the mobile phase. The detection wavelength was set at 292 nm. Under the optimal conditions, the UiO-66-NH@cellulose hybrid aerogel was used as an adsorbent to extract sildenafil in different concentrations. The peak area was proportional to the sildenafil concentration in the range of 10-2000 ng/mL, with limit of detection (LOD, =3) of 2.85 ng/mL and enrichment factor of 59.17. The correlation coefficient () was 0.9950. Compared to previous preconcentration methods for sildenafil, this method offered a wider linear range. Five batches of hybrid aerogels were simultaneously prepared under the same conditions and used to extract sildenafil; the relative standard deviation (RSD, =3) was 1.71%, indicating that the prepared hybrid aerogels offered good reproducibility. The used composite aerogels were freeze-dried again and reused to extract sildenafil; the recovery was still maintained at 85.23% after five extraction cycles, indicating that the UiO-66-NH@cellulose hybrid aerogel had good regeneration ability. The feasibility of the developed method was verified by analyzing five health products. The results demonstrated the presence of 3.01 μg/g sildenafil in one of the products and no sildenafil in the others. The recoveries of this SPE method ranged from 74.93% to 89.12%, with RSDs in the range of 2.8%-5.3%, proving the feasibility of this analytical method.

摘要

西地那非是一种用于治疗肺动脉高压和勃起功能障碍的处方药。然而,在健康补充剂中非法添加西地那非可能对人体健康有害。因此,开发一种检测健康产品中西地那非的方法势在必行。固相萃取(SPE)通常用于样品的分离、纯化和富集,目的是减少样品的基质干扰并提高检测灵敏度。SPE广泛应用于复杂样品中痕量化合物的检测。金属有机框架(MOF)是由金属离子和有机配体组成的混合晶体材料。MOF具有比表面积大、永久性纳米孔、稳定性好和孔径可控等优点。由于其优点,研究人员尝试将MOF用于SPE;然而,当MOF直接用于SPE时,很难收集粉末形式的MOF,因此需要使用基质材料来固定MOF。因此,本研究提出了一种采用UiO-66-NH@纤维素混合气凝胶的高灵敏度新型SPE方法,用于检测健康产品中的西地那非。首先,通过水热法合成UiO-66-NH。用醛基修饰纤维素纳米晶体(CNC)得到CNC-CHO,用酰肼基修饰羧甲基纤维素(CMC)得到CMC-NHNH。随后,将UiO-66-NH加入到CNC-CHO溶液中,与CMC-NHNH溶液混合,然后交联以负载UiO-66-NH并形成混合气凝胶作为块状吸附剂。这种块状混合气凝胶可以轻松收集,无需额外用力即可用于SPE。通过X射线粉末衍射、扫描电子显微镜、傅里叶变换红外(FT-IR)光谱和氮气吸附/脱附对合成的混合气凝胶进行了表征。结果表明,UiO-66-NH成功负载在混合气凝胶的孔表面,使气凝胶的孔变得更加规则且表面积更大。对混合气凝胶中UiO-66-NH的负载量进行研究发现,较高量的UiO-66-NH可产生更好的萃取效率。混合气凝胶中可负载的UiO-66-NH的最高量为50%。对影响西地那非富集的实验条件进行了优化,确定为:样品pH为9.0;萃取时间为60分钟;洗脱剂为乙腈;洗脱时间为40分钟;洗脱体积为3×2 mL;盐离子浓度为0。在Agilent Zorbax Eclipse Plus C18柱(150 mm×4.6 mm,5μm)上进行分离,以含有0.1 mol/L三乙胺(pH = 6.50)的磷酸盐溶液-乙腈(30∶70,v/v)作为流动相。检测波长设定为292 nm。在最佳条件下,使用UiO-66-NH@纤维素混合气凝胶作为吸附剂萃取不同浓度的西地那非。在10 - 2000 ng/mL范围内,峰面积与西地那非浓度成正比,检测限(LOD,n = 3)为2.85 ng/mL,富集因子为59.17。相关系数(r)为0.9950。与先前西地那非的预浓缩方法相比,该方法具有更宽的线性范围。在相同条件下同时制备五批混合气凝胶并用于萃取西地那非;相对标准偏差(RSD,n = 3)为1.71%,表明制备的混合气凝胶具有良好的重现性。用过的复合气凝胶再次冷冻干燥并重复用于萃取西地那非;经过五次萃取循环后回收率仍保持在85.23%,表明UiO-66-NH@纤维素混合气凝胶具有良好的再生能力。通过分析五种健康产品验证了所开发方法的可行性。结果表明,其中一种产品中存在3.01μg/g的西地那非,其他产品中未检测到西地那非。该SPE方法的回收率在74.93%至89.12%之间,RSD在2.8%至5.3%之间,证明了该分析方法的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3396/9404075/214713f5deb2/cjc-40-06-556-img_1.jpg

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