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具有宏观球形铁核的聚合物基质中药物的重复按需释放。

Repetitive on-demand drug release from polymeric matrices containing a macroscopic spherical iron core.

机构信息

Process Development Group, Department of Chemical Engineering and Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600 MB, Eindhoven, The Netherlands.

Dolphys Medical, Den Dolech 2, 5612 AZ, Eindhoven, The Netherlands.

出版信息

J Mater Sci Mater Med. 2017 Sep 15;28(10):163. doi: 10.1007/s10856-017-5983-7.

Abstract

UNLABELLED

A system for multiple on-demand drug release has been prepared that can be activated with an alternating magnetic field as external trigger. The core/shell samples have been developed based on a macroscopic spherical iron core coated with a thermoresponsive polymer, poly(styrene-stat-butyl methacrylate), containing ibuprofen as a model drug. During exposure of the samples to the magnetic field (ON state), the release rate of ibuprofen is significantly increased, up to 35 times the release rate without the magnetic field (OFF state). Using one sample or two samples in line with the magnetic field does not influence the ON/OFF ratio of the system, showing the possibility of using multiple samples to increase and tune the drug dose. Increasing the concentration of ibuprofen in the polymer layer is shown to increase the release rate in both the ON and OFF states. Increasing the size of the iron core and, consequently, decreasing the polymer thickness, was found to only increase the release rate during exposure resulting in higher ON/OFF ratios. The developed on demand drug delivery systems represents a promising development towards on demand drug delivery implants.

REFLECTIONS ON CAREER GOALS

During my chemical engineering studies, it was only during my master thesis work that I decided to continue with PhD research as I really enjoyed doing original research. When coming to the end of my PhD research under supervision of Prof. Ulrich S. Schubert, I developed the ambition to pursue an academic career. Fortunately, I got the opportunity to stay with Prof. Schubert as project leader for the Dutch Polymer Institute (DPI). Within this position, I supervised ten researchers and was able to start developing my independent research lines. Despite that I now advise students to not stay in the same laboratory, this first position allowed me to gain some initial independence and to publish a large number of papers that has been a great benefit in my further career. After two and a half years I needed a new challenge that I found by taking up a part-time position at a start-up company in Eindhoven, Dolphys Medical BV, while I also continued as part-time group leader for the DPI. As senior product developer, I was in charge of the research and learned to focus on the application rather than scientific curiosity. This experience made me realize that I prefer the freedom to do academic blue sky research and decided to fully go for an academic position. After personal discussions with some prominent professors in the Netherlands, I applied for a postdoc fellowship in the Netherlands with Prof. Roeland Nolte as well as a Humboldt fellowship in Germany with Prof. Martin Möller, which I both got. As a result, I went one year 'abroad' to Aachen and returned to Nijmegen where I intended to start my independent career. However, another opportunity came along. Via my personal network I was informed that I would make a good chance if I applied for a new professor scheme in Ghent. So I applied and the rest is history. Picture of the Supramolecular Chemistry Group (2017).

摘要

未加说明

已经制备了一种用于多个按需药物释放的系统,该系统可以通过交变磁场作为外部触发来激活。基于涂有热响应聚合物聚(苯乙烯-丁基甲基丙烯酸酯)的宏观球形铁核,开发了核/壳样品,其中包含布洛芬作为模型药物。在将样品暴露于磁场(ON 状态)的过程中,布洛芬的释放速率显著增加,达到无磁场(OFF 状态)下的 35 倍。使用一个或两个与磁场一致的样品不会影响系统的 ON/OFF 比,这表明可以使用多个样品来增加和调整药物剂量。增加聚合物层中布洛芬的浓度被证明会增加 ON 和 OFF 状态下的释放速率。增加铁核的尺寸,从而减少聚合物的厚度,仅增加了暴露时的释放速率,导致更高的 ON/OFF 比。开发的按需药物输送系统代表了朝着按需药物输送植入物的有希望的发展。

职业目标反思

在我的化学工程学习期间,只有在硕士论文工作期间,我才决定继续攻读博士研究,因为我真的很喜欢做原创研究。当我在 Ulrich S. Schubert 教授的指导下完成博士研究时,我产生了追求学术生涯的雄心。幸运的是,我有机会留在 Schubert 教授身边,担任荷兰聚合物研究所(DPI)的项目负责人。在这个职位上,我指导了十位研究人员,并能够开始发展我独立的研究方向。尽管我现在建议学生不要留在同一个实验室,但这个第一份工作使我获得了一些初步的独立性,并发表了大量论文,这对我的进一步职业生涯有很大的帮助。两年半后,我需要一个新的挑战,我在埃因霍温的一家初创公司 Dolphys Medical BV 找到了这个挑战,同时我也继续担任 DPI 的兼职组长。作为高级产品开发人员,我负责研究并学会专注于应用而不是科学好奇心。这段经历使我意识到我更喜欢自由地进行学术蓝天研究,并决定完全追求学术职位。在与荷兰一些著名教授进行个人讨论后,我申请了荷兰的博士后奖学金,与 Roeland Nolte 教授一起申请了德国的洪堡奖学金,我都获得了。因此,我去了一年“国外”到亚琛,然后回到奈梅亨,我打算在那里开始我的独立职业生涯。然而,另一个机会出现了。通过我的个人网络,我得知如果我申请根特的一个新教授计划,我会有很好的机会。所以我申请了,其余的就成了历史。超分子化学小组的照片(2017 年)。

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