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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Double hydrophilic polyphosphoester containing copolymers as efficient templating agents for calcium carbonate microparticles
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Double hydrophilic polyphosphoester containing copolymers as efficient templating agents for calcium carbonate microparticles

机译:含双亲水性聚磷酸酯的共聚物,可作为碳酸钙微粒的有效模板剂

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The use of calcium carbonate (CaCO3) microparticles is becoming more and more attractive in many fields especially in biomedical applications in which the fine tuning of the size, morphology and crystalline form of the CaCO3 particles is crucial. Although some structuring compounds, like hyaluronic acid, give satisfying results, the control of the particle structure still has to be improved. To this end, we evaluated the CaCO3 structuring capacity of novel well-defined double hydrophilic block copolymers composed of poly(ethylene oxide) and a polyphosphoester segment with an affinity for calcium like poly(phosphotriester)s bearing pendent carboxylic acids or poly(phosphodiester) s with a negatively charged oxygen atom on each repeating monomer unit. These copolymers were synthesized by a combination of organocatalyzed ring opening polymerization, thiol-yne click chemistry and protection/deprotection methods. The formulation of CaCO3 particles was then performed in the presence of these block copolymers (i) by the classical chemical pathway involving CaCl2 and Na2CO3 and (ii) by a process based on supercritical carbon dioxide (scCO(2)) technology in which CO32- ions are generated in aqueous media and react with Ca2+ ions. Porous CaCO3 microspheres composed of vaterite nanocrystals were obtained. Moreover, a clear dependence of the particle size on the structure of the templating agent was emphasized. In this work, we show that the use of the supercritical process and the substitution of hyaluronic acid for a carboxylic acid containing copolymer decreases the size of the CaCO3 particles by a factor of 6 (similar to 1.5 mu m) while preventing their aggregation.
机译:在许多领域中,尤其是在生物医学应用中,碳酸钙(CaCO3)微粒的使用正变得越来越有吸引力,在生物医学应用中,CaCO3颗粒的大小,形态和晶体形式的微调至关重要。尽管某些结构化化合物(如透明质酸)给出令人满意的结果,但仍必须改善对颗粒结构的控制。为此,我们评估了新型良好定义的新型亲水双嵌段共聚物的CaCO3结构能力,该共聚物由聚环氧乙烷和对钙具有亲和力的聚磷酸酯链段组成,如带有侧链羧酸或聚磷酸二酯的聚磷酸三酯。在每个重复的单体单元上带有带负电的氧原子。这些共聚物是通过有机催化的开环聚合,硫醇-炔点击化学和保护/脱保护方法的组合而合成的。然后,在这些嵌段共聚物的存在下,执行CaCO3颗粒的配制(i)通过涉及CaCl2和Na2CO3的经典化学途径进行;(ii)通过基于超临界二氧化碳(scCO(2))技术的工艺进行,其中CO32-离子在水性介质中生成并与Ca2 +离子发生反应。获得了由球ate石纳米晶体组成的多孔CaCO3微球。此外,强调了粒度对模板剂结构的明确依赖性。在这项工作中,我们表明使用超临界过程和用透明质酸代替含羧酸的共聚物可将CaCO3颗粒的尺寸减小6倍(类似于1.5微米),同时防止其聚集。

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