首页> 外文期刊>Macromolecules >Versatile Ring-Opening Copolymerization and Postprinting Functionalization of Lactone and Poly(propylene fumarate) Block Copolymers: Resorbable Building Blocks for Additive Manufacturing
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Versatile Ring-Opening Copolymerization and Postprinting Functionalization of Lactone and Poly(propylene fumarate) Block Copolymers: Resorbable Building Blocks for Additive Manufacturing

机译:内酯的通醉环共聚和张平的内酯和聚(丙烷富马酸盐)嵌段共聚物的透明官能化:可再吸收的积木用于添加剂制造

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摘要

Additive manufacturing has the potential to change medicine, but clinical applications are limited by a lack of resorbable, printable materials. Herein, we report the first synthesis of polylactone and poly(propylene fumarate) (PPF) block copolymers with well-defined molecular masses and molecular mass distributions using sequential, ring-opening polymerization and ring-opening copolymerization methods. These new copolymers represent a diverse platform of resorbable printable materials. Furthermore, these polymers open a previously unexplored range of accessible properties among stereolithographically printable materials, which we demonstrate by printing a polymer with a molecular mass nearly 4 times that of the largest PPF homopolymer previously printed. To further demonstrate the potential of these materials in regenerative medicine, we report the postprinting “click” functionalization of the material using a copper-mediated azide–alkyne cycloaddition.
机译:添加剂制造有可能改变药物,但临床应用受到缺乏可再吸收的,可印刷材料的限制。 在此,我们报告了具有使用顺序,开环聚合和开环共聚方法的多定义分子量和分子量分布的聚丙烯酮和聚(丙烯富马酸酯)(PPF)嵌段共聚物的第一次合成。 这些新的共聚物代表了可再吸收的可打印材料的多样化平台。 此外,这些聚合物在立体可印刷材料中开放了先前未探测的可探测可接近性质范围,其通过将具有分子量的聚合物印刷为预先印刷的最大PPF均聚物的分子量近4倍。 为了进一步证明这些材料在再生医学中的潜力,我们将使用铜介导的叠氮化物 - 炔烃环加成来报告张贴“点击”官能化的官能化。

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