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From Drug-Eluting Stents to Biopharmaceuticals: Poly(ester amide) a Versatile New Bioabsorbabie Biopolymer

机译:从毒品洗脱支架到生物制药:聚(酯酰胺)一种通用的新生物植物植物生物聚合物

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New biodegradable and tissue-resorbable co-poly(ester amides) (PEAs) useful for biomedical applications were prepared using a versatile Active PolyCondensation (APC) method, which involves di-p-toluenesulfonic acid salts of bis-(L-a-amino acid)-a,co-alkylene diesters and active diesters of dicarboxylic acids as monomers. APC reactions were carried out at mild temperatures (40-60°C) and allowed the synthesis of regular, linear, polyfunctional PEAs with high molecular weights The physical properties of PEAs are critically dependent upon the structure of the polymer backbone, A wide range of mechanical properties and biodegradation rates can be achieved by varying the three components in the backbone: a-amino acids, diols and dicarboxylic acids Indeed, there is a growing need for wider variations of biocompatible PEA compositions and methods for the delivery of different therapeutic molecules at controlled rates, while affording enhanced mechanical and physical properties. Therefore, various types of new non-toxic building blocks based upon bulky diols (isosorbide, 17(3-estradiol), unsaturated (fumaric) and aromatic diacids (hydroxycinnamic acid, l,3-bis(4-carboxyphenoxy)-propane) were developed and successfully.
机译:使用通用的活性缩聚(APC)方法制备用于生物医学应用的新型可生物降解和可分解的共聚(豌豆),其涉及双 - (La-氨基酸)的二 - 对甲苯磺酸盐-A,共亚烷基二酯和二羧酸的活性二酯作为单体。在温和的温度(40-60℃)下进行APC反应,并允许合成具有高分子量的常规,线性的多官能豌豆,豌豆的物理性质均可致取决于聚合物主链的结构,各种各样的通过改变骨架中的三种组分来实现机械性能和生物降解率:确实存在氨基酸,二醇和二羧酸,越来越需要生物相容性豌豆组合物的更宽变化和用于递送不同治疗分子的方法受控速率,同时提供增强的机械和物理性质。因此,基于庞大二醇的各种类型的新型无毒结构块(异山梨醇,17(3-雌二醇),不饱和(富马)和芳族二酸(羟基氨基酸,L,3-双(4-羧基氧基) - 丙烷)是发达并成功。

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