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磷酸二酯水凝胶在细胞支架和药物释放中的应用。

Phosphodiester Hydrogels for Cell Scaffolding and Drug Release Applications.

机构信息

IMO, Hasselt University, Agoralaan Gebouw D, 3590, Diepenbeek, Belgium.

Sensor Engineering, Faculty of Science and Engineering, Maastricht University, Urmonderbaan 22, Chemelot Center Court, Gebouw 200, 6167 RD Geleen, The Netherlands.

出版信息

Macromol Biosci. 2019 Jul;19(7):e1900090. doi: 10.1002/mabi.201900090. Epub 2019 Jun 5.

Abstract

Given the major structural role phosphodiesters play in the organism it is surprising they have not been more widely adopted as a building block in sophisticated biomimetic hydrogels and other biomaterials. The potential benefits are substantial: phosphoester-based materials show excellent compatibility with blood, cells, and a remarkable resistance to protein adsorption that may trigger a foreign-body response. In this work, a novel class of phosphodiester-based ionic hydrogels is presented which are crosslinked via a phosphodiester moiety. The material shows good compatibility with blood, supports the growth and proliferation of tissue and presents opportunities for use as a drug release matrix as shown with fluorescent model compounds. The final gel is produced via base-induced elimination from a phosphotriester precursor, which is made by the free-radical polymerization of a phosphotriester crosslinker. This crosslinker is easily synthesized via multigram one-pot procedures out of common laboratory chemicals. Via the addition of various comonomers the properties of the final gel may be tuned leading to a wide range of novel applications for this exciting class of materials.

摘要

鉴于磷酸二酯在生物体中扮演的主要结构角色,它们作为复杂仿生水凝胶和其他生物材料的构建块并没有得到更广泛的应用,这令人惊讶。其潜在的好处是巨大的:基于磷酸酯的材料与血液、细胞具有极好的相容性,并且对可能引发异物反应的蛋白质吸附具有显著的抵抗力。在这项工作中,提出了一类新型的基于磷酸二酯的离子水凝胶,其通过磷酸二酯部分交联。该材料与血液相容性良好,支持组织的生长和增殖,并为用作药物释放基质提供了机会,如荧光模型化合物所示。最终的凝胶是通过碱基诱导从膦酸三酯前体中消除而产生的,该前体是通过膦酸三酯交联剂的自由基聚合制备的。该交联剂可以通过常见的实验室化学品的多克一锅法轻松合成。通过添加各种共聚单体,可以调整最终凝胶的性能,为这类令人兴奋的材料开辟了广泛的新应用。

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