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SDS 与线性亲水聚合物的基质用于 MEKC 中高低分子量透明质酸的拆分。

The matrix of SDS integrated with linear hydrophilic polymer for resolution of high- and low-molecular weight hyaluronic acids in MEKC.

机构信息

Department of Surgery, Division of General Surgery, Zuoying Branch of Kaohsiung Armed Forces General Hospital, Kaohsiung, Taiwan.

School of Pharmacy, College of Pharmacy, Kaohsiung Medical University, Kaohsiung, Taiwan.

出版信息

J Food Drug Anal. 2020 Jan;28(1):159-166. doi: 10.1016/j.jfda.2019.10.005. Epub 2019 Nov 27.

Abstract

Hyaluronic acid (HA), a multi-functional material, has a high dispersion in molecular weight, and the functions of HA are determined through the size. Nevertheless, hyaluronic acid mixtures are not easily separated due to their polydispersity. In this study, a capillary electrophoresis strategy was developed for resolution of different molecular-weight HA without enzymatic digestion. Here, hyaluronic acid mixtures with low molecular weight (380 kD; LHA) and high molecular weight (2180 kD; HHA) were successfully resolved by the SDS integrated with low molecular-weight polymer in capillary electrophoresis. By optimizing experimental conditions, the separation of LHA and HHA was completed within 14 min. The optimal conditions were as follows: the running buffer was 25 mM borate buffer (pH 9.75) containing 30 mM SDS and 10% polyethylene glycol (MW: 8000); applied voltage was 20 kV (detector at cathode side) and separation temperature was set at 25 °C. The data of method validation showed that calibration plots were linear (r ≥ 0.9977) over a range of 10-50 μg/mL for LHA, and 40-200 μg/mL for HHA. In the evaluation of precision and accuracy for this method, the RSD and RE values were all less than 4.2%. This fascinating technique was successfully applied to the quality control of cosmetic and pharmaceutical containing different ratios of LHA and HHA, and it was feasible for serving as a tool to quantitatively analyze different sizes of HA for clinical survey.

摘要

透明质酸(HA)是一种多功能材料,具有高分子量的高分散性,HA 的功能通过其大小来确定。然而,由于其多分散性,HA 混合物不易分离。在这项研究中,开发了一种无需酶消化即可分离不同分子量 HA 的毛细管电泳策略。在这里,成功地通过 SDS 与毛细管电泳中的低分子量聚合物相结合,分离出低分子量(380 kD;LHA)和高分子量(2180 kD;HHA)的 HA 混合物。通过优化实验条件,在 14 分钟内完成了 LHA 和 HHA 的分离。最佳条件如下:运行缓冲液为 25 mM 硼酸缓冲液(pH 9.75),其中含有 30 mM SDS 和 10%聚乙二醇(MW:8000);施加电压为 20 kV(阴极侧检测),分离温度设定为 25°C。方法验证数据表明,校准曲线在 10-50 μg/mL 范围内(r≥0.9977)对 LHA 线性,在 40-200 μg/mL 范围内对 HHA 线性。在该方法的精密度和准确度评价中,RSD 和 RE 值均小于 4.2%。这项引人入胜的技术成功应用于含有不同比例 LHA 和 HHA 的化妆品和药物的质量控制,并且可以作为临床调查中定量分析不同大小 HA 的工具。

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