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基于聚氰基丙烯酸正丁酯的聚合物微泡的保质期评估及冻干处理

Shelf-Life Evaluation and Lyophilization of PBCA-Based Polymeric Microbubbles.

作者信息

Ojha Tarun, Pathak Vertika, Drude Natascha, Weiler Marek, Rommel Dirk, Rütten Stephan, Geinitz Bertram, van Steenbergen Mies J, Storm Gert, Kiessling Fabian, Lammers Twan

机构信息

Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences (UIPS), Utrecht University, 3584 CG Utrecht, The Netherlands.

Institute for Experimental Molecular Imaging, Faculty of Medicine, RWTH Aachen University, 52074 Aachen, Germany.

出版信息

Pharmaceutics. 2019 Aug 26;11(9):433. doi: 10.3390/pharmaceutics11090433.

Abstract

Poly(-butyl cyanoacrylate) microbubbles (PBCA-MB) are extensively employed for functional and molecular ultrasound (US) imaging, as well as for US-mediated drug delivery. To facilitate the use of PBCA-MB as a commercial platform for biomedical applications, it is important to systematically study and improve their stability and shelf-life. In this context, lyophilization (freeze drying) is widely used to increase shelf-life and promote product development. Here, we set out to analyze the stability of standard and rhodamine-B loaded PBCA-MB at three different temperatures (4 °C, 25 °C, and 37 °C), for a period of time of up to 20 weeks. In addition, using sucrose, glucose, polyvinylpyrrolidone (PVP), and polyethylene glycol (PEG) as cryoprotectants, we investigated if PBCA-MB can be lyophilized without affecting their size, concentration, US signal generation properties, and dye retention. Stability assessment showed that PBCA-MB remain largely intact for three and four weeks at 4 °C and 25 °C, respectively, while they disintegrate within one to two weeks at 37 °C, thereby compromising their acoustic properties. Lyophilization analyses demonstrated that PBCA-MB can be efficiently freeze-dried with 5% sucrose and 5% PVP, without changing their size, concentration, and US signal generation properties. Experiments involving rhodamine-B loaded MB indicated that significant dye leakage from the polymeric shell takes place within two to four weeks in case of non-lyophilized PBCA-MB. Lyophilization of rhodamine-loaded PBCA-MB with sucrose and PVP showed that the presence of the dye does not affect the efficiency of freeze-drying, and that the dye is efficiently retained upon MB lyophilization. These findings contribute to the development of PBCA-MB as pharmaceutical products for preclinical and clinical applications.

摘要

聚(氰基丙烯酸丁酯)微泡(PBCA - MB)被广泛应用于功能和分子超声(US)成像以及超声介导的药物递送。为了便于将PBCA - MB用作生物医学应用的商业平台,系统地研究和提高其稳定性及保质期非常重要。在这种情况下,冻干(冷冻干燥)被广泛用于延长保质期并促进产品开发。在此,我们着手分析标准的和负载罗丹明 - B的PBCA - MB在三个不同温度(4℃、25℃和37℃)下长达20周的稳定性。此外,我们使用蔗糖、葡萄糖、聚乙烯吡咯烷酮(PVP)和聚乙二醇(PEG)作为冷冻保护剂,研究PBCA - MB在冻干时其大小、浓度、超声信号产生特性和染料保留是否会受到影响。稳定性评估表明,PBCA - MB在4℃和25℃下分别在三到四周内基本保持完整,而在37℃下一到两周内就会解体,从而损害其声学特性。冻干分析表明,PBCA - MB可以用5%的蔗糖和5%的PVP有效冻干,而不会改变其大小、浓度和超声信号产生特性。涉及负载罗丹明 - B的微泡的实验表明,对于未冻干的PBCA - MB,在两到四周内聚合物壳体会发生显著的染料泄漏。用蔗糖和PVP对负载罗丹明的PBCA - MB进行冻干表明,染料的存在不影响冻干效率,并且在微泡冻干后染料能有效保留。这些发现有助于将PBCA - MB开发为用于临床前和临床应用的药品。

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