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首页> 外文期刊>Chemical engineering journal >Preparation of tPA-loaded microbubbles as potential theranostic agents: A novel one-step method via coaxial electrohydrodynamic atomization technique
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Preparation of tPA-loaded microbubbles as potential theranostic agents: A novel one-step method via coaxial electrohydrodynamic atomization technique

机译:作为潜在的治疗剂的TPA加载微泡的制备:通过同轴电流动力雾化技术的新型一步法

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In the present work, we demonstrated for the first time a simple method for the fabrication of drug loaded Microbubbles (MBs) by a single step via coaxial electrohydrodynamic atomization (CEHDA). As a proof of concept, a therapeutic agent (tissue plasminogen activator, tPA) and two types of shell materials (phospholipid and bovine serum albumin, BSA) were selected to produce tPA-entrapped MBs. Investigation using fluorescein isothiocyanate (FITC) labelled tPA revealed that the tPA-loaded MBs were successfully fabricated in a one-step procedure and the tPA was located in the shell layer for both the BSA and lipid MBs. By optimization of the operating conditions in terms of voltage, core/shell flow rate ratio as well as tPA volume ratio, minimum bubble sizes for tPA-BSA and tPA-lipid MBs were obtained. The fabricated tPA-BSA MBs was 41 mu m in mean diameter while similar to 41% of the tPA-lipid MBs ranged from 3 to 6 mu m and similar to 36% of them ranged from 6 to 9 mu m under optimal operating conditions. Sensitivity analysis on the effects of key process parameters was also performed to guide design and manipulation of bubble sizes. The investigation of gas phase showed that the usage of sulphur hexafluoride (SF6) as the core can enhance the stability of tPA-lipid bubbles. The presented one-step method displayed great flexibility for producing tPA-loaded MBs and thus can potentially serve as a new tool to generate/engineer tPA-bubbles for applications in ischemic stroke therapy. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本作工作中,我们首次证明了通过同轴电流动力雾化(CEHDA)通过单一步骤制造药物负载微泡(MBS)的简单方法。作为概念证明,选择治疗剂(组织纤溶酶原激活剂,TPA)和两种类型的壳材料(磷脂和牛血清白蛋白,BSA)以产生TPA斑点的MBS。使用荧光素异硫氰酸酯(FITC)标记的TPA的研究表明,在一步法中成功制造了TPA负载的MBS,并且TPA位于BSA和脂质MBS的壳层中。通过在电压,核/壳流量比以及TPA体积比中优化操作条件,获得TPA-BSA和TPA-脂质MB的最低气泡尺寸。制造的TPA-BSA MBS为41μm,平均直径为41μm,同样为41%的TPA-脂质MBS,范围为3至6μm,并且在最佳操作条件下,它们的36%在6至9μm范围内。还执行了对关键过程参数影响的灵敏度分析,以指导设计和操纵气泡尺寸。气相调查表明,六氟化硫(SF6)的用途作为核心可以增强TPA-脂泡泡的稳定性。本发明的一步法显示出生产TPA加载的MBS的巨大灵活性,因此可能用作为缺血性卒中治疗中的应用产生/工程师TPA气泡的新工具。 (c)2016年Elsevier B.v.保留所有权利。

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