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帕罗西汀血药浓度监测样品前处理优化
Optimization of Sample Pre-Treatment for the Monitoring of Paroxetine Blood Drug Concentration

DOI: 10.12677/acm.2025.153655, PP. 614-620

Keywords: 帕罗西汀,血药浓度监测,样品前处理,瓶内处理技术,自动化前处理系统
Paroxetine
, Blood Drug Concentration Monitoring, Sample Pre-Treatment, In-Bottle Processing Technology, Automated Pre-Treatment System

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Abstract:

目的:探讨并优化帕罗西汀血药浓度监测中的样品前处理方法,旨在通过引入瓶内处理技术和自动化样品前处理系统,实现快速、高效的前处理流程,提高监测效率与准确性。方法:综述了两种关键的优化策略:一是采用特制瓶内置过滤膜的瓶内处理技术,直接在单一瓶内完成样品分离与杂质去除;二是引入自动化样品前处理系统,如固相萃取自动化平台和在线样品处理系统,通过预设程序自动化完成样品提取、净化、浓缩等步骤。结果:这些优化方法显著缩短了样品前处理时间,平均处理时间从数小时缩短至数分钟至半小时内,提高了监测效率。同时,确保了分析结果的准确性和一致性,减少了人为操作带来的误差。此外,自动化系统的应用降低了人力成本,满足了高通量监测的需求。结论:通过引入瓶内处理技术和自动化样品前处理系统,帕罗西汀血药浓度监测的样品前处理过程实现了快速与高效。这些优化策略不仅提升了监测效率,还保证了分析结果的准确性,为临床用药指导和个体化治疗提供了有力支持。
Objective: To explore and optimize the sample pre-treatment method in Paroxetine blood drug concentration monitoring. It aims to achieve a fast and efficient pre-processing process by introducing in-bottle treatment technology and automation sample processing systems to improve monitoring efficiency and accuracy. Methods: Two key optimization strategies are summarized: First, the in-bottle processing technology of the special bottle built-in filter film is used to complete the sample separation and impurity removal directly in a single bottle; And second, the automated sample pre-treatment systems are introduced, such as an automated platform for solid-phase extraction and an online sample processing system, to automatically complete the sample extraction, purification, concentration and other steps through the pre-set program. Result: These optimization methods significantly shortened the sample pre-treatment time, and the average processing time was shortened from a few hours to a few minutes to half an hour, which improved the monitoring efficiency. At the same time, the accuracy and consistency of the analysis results are ensured, and the errors brought by artificial operations are reduced. In addition, the application of automation systems reduces human costs and meets the demand for high-throughput monitoring. Conclusion: By introducing the pre-processing system of in-bottle treatment technology and automated samples, the sample pre-treatment process of Paroxetine blood drug concentration monitoring has achieved rapid and efficient. These optimization strategies not only improve the monitoring efficiency, but also ensure the accuracy of the analysis results, and provide strong support for clinical medication guidance and individualized therapy.

References

[1]  杨檬, 孙莉. 持续性姿势-知觉性头晕中西医研究进展[J]. 中国医药指南, 2025, 23(1): 75-78.
[2]  《国际精神病学杂志》2024年索引[J]. 国际精神病学杂志, 2024, 51(6): 2019-2024.
[3]  于天培, 崔豪飞. 帕罗西汀联合小剂量喹硫平治疗躯体症状障碍的疗效[J]. 中国药物与临床, 2024, 24(24): 1590-1594.
[4]  朱金芳, 陈兆霓, 刘滔滔, 等. 新型抗抑郁药血药浓度与临床疗效相关性的研究进展[J]. 中国临床新医学, 2020, 13(3): 317-321.
[5]  金永增, 孙亮, 李长坤, 等. 直接蛋白沉淀结合串联质谱法用于血浆中5-氟尿嘧啶治疗药物监测应用[J]. 环境化学, 2024, 43(2): 685-688.
[6]  赵梦强. 治疗药物监测中血药浓度样品前处理关键问题研究[D]: [硕士学位论文]. 石家庄: 河北医科大学, 2021.
[7]  果伟, 张玲, 王刚. 《中国精神科治疗药物监测临床应用专家共识(2022年版)》解读与展望[J]. 临床药物治疗杂志, 2024, 22(11): 13-18.
[8]  李晓琳. 基于群体药代动力学和治疗药物监测的帕罗西汀个体化用药研究[D]: [硕士学位论文]. 广州: 广州医科大学, 2023.
[9]  C. Hiemke, N. Bergemann, H.W. Clement, 等. 神经精神药理学治疗药物监测共识指南: 2017版[J]. 实用药物与临床, 2022, 25(1): 1-20.
[10]  臧彦楠, 牛梦溪, 杨琪, 等. 帕罗西汀血药浓度过高致视物模糊、复视1例[J]. 中国药师, 2020, 23(5): 921-922.
[11]  夏爽, 李小新, 郭晓, 等. 瓶内处理技术结合快速LC-MS提高利培酮血药浓度测定效率[J]. 中南药学, 2024, 22(5): 1270-1275.
[12]  谢以清, 吕悦广, 孟宪双, 等. 超分子溶剂萃取/超高效液相色谱-串联质谱法测定血浆中他克莫司含量[J]. 分析测试学报, 2023, 42(5): 559-567.
[13]  谢以清. 免疫抑制剂类药物临床质谱检测方法研究[D]: [硕士学位论文]. 北京: 北京中医药大学, 2023.
[14]  赵婷, 张惠兰, 李红健, 等. 液相色谱-质谱联用法测定双相情感障碍患者血浆中富马酸喹硫平的药物浓度[J]. 药学与临床研究, 2024, 32(4): 329-332.
[15]  曹银, 周旋, 戴彪, 等. UPLC-MS/MS法测定人血清中曲唑酮浓度及其临床个体化用药[J]. 中国药物警戒, 2024, 21(9): 991-997.
[16]  安迪, 阎彦, 王娜, 等. 用LC-MS/MS法测定血清中左乙拉西坦的浓度[J]. 中国临床药理学杂志, 2024, 40(4): 603-606.
[17]  张晓颖, 叶珍洁, 吴灵洁, 等. 超高效液相色谱-串联质谱法同时测定5种抗逆转录病毒药物血药浓度[J]. 医药导报, 2024, 43(2): 207-214.
[18]  林晓东, 王哲, 董瑶瑶, 等. 用UPLC-MS/MS法测定人血浆中他莫昔芬与活性代谢物吲哚昔芬的浓度及应用[J]. 中国临床药理学杂志, 2024, 40(1): 112-116.
[19]  王靖臣. 基于液质联用技术的血浆中胆固醇酯及鞘脂的分析方法的建立及应用[D]: [硕士学位论文]. 武汉: 华中科技大学, 2022.
[20]  陈桂英. 基于液质联用技术的分析方法在药物代谢及脂质组学中的应用[D]: [博士学位论文]. 武汉: 华中科技大学, 2017.

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