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Synthesis and Hydrolytic Degradation of Substituted Poly(DL-Lactic Acid)s

机译:取代聚DL-乳酸的合成及水解降解

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摘要

Non-substituted racemic poly(DL-lactic acid) (PLA) and substituted racemic poly(DL-lactic acid)s or poly(DL-2-hydroxyalkanoic acid)s with different side-chain lengths, i.e., poly(DL-2-hydroxybutanoic acid) (PBA), poly(DL-2-hydroxyhexanoic acid) (PHA), and poly(DL-2-hydroxydecanoic acid) (PDA) were synthesized by acid-catalyzed polycondensation of DL-lactic acid (LA), DL-2-hydroxybutanoic acid (BA), DL-2-hydroxyhexanoic acid (HA), and DL-2-hydroxydecanoic acid (DA), respectively. The hydrolytic degradation behavior was investigated in phosphate-buffered solution at 80 and 37 °C by gravimetry and gel permeation chromatography. It was found that the reactivity of monomers during polycondensation as monitored by the degree of polymerization (DP) decreased in the following order: LA > DA > BA > HA. The hydrolytic degradation rate traced by DP and weight loss at 80 °C decreased in the following order: PLA > PDA > PHA > PBA and that monitored by DP at 37 °C decreased in the following order: PLA > PDA > PBA > PHA. LA and PLA had the highest reactivity during polymerization and hydrolytic degradation rate, respectively, and were followed by DA and PDA. BA, HA, PBA, and PHA had the lowest reactivity during polymerization and hydrolytic degradation rate. The findings of the present study strongly suggest that inter-chain interactions play a major role in the reactivity of non-substituted and substituted LA monomers and degradation rate of the non-substituted and substituted PLA, along with steric hindrance of the side chains as can be expected.
机译:具有不同侧链长度的未取代外消旋聚(DL-乳酸)(PLA)和取代外消旋聚(DL-乳酸)或聚(DL-2-羟基链烷酸),即聚(DL-2)通过酸催化DL-乳酸(LA)的缩聚反应合成了-羟基丁酸(PBA),聚(DL-2-羟基己酸)(PHA)和聚(DL-2-羟基癸酸)(PDA), DL-2-羟基丁酸(BA),DL-2-羟基己酸(HA)和DL-2-羟基癸酸(DA)。通过重量分析和凝胶渗透色谱法研究了磷酸盐缓冲溶液在80和37°C下的水解降解行为。发现通过聚合度(DP)监测的缩聚过程中单体的反应性按以下顺序降低:LA> DA> BA> HA。由DP追踪的水解降解率和80°C的失重按以下顺序降低:PLA> PDA> PHA> PBA,由DP在37°C监测的水解降解率按以下顺序降低:PLA> PDA> PBA> PHA。 LA和PLA分别在聚合反应和水解降解过程中具有最高的反应活性,其次是DA和PDA。 BA,HA,PBA和PHA在聚合和水解降解速率中的反应性最低。本研究的发现强烈表明,链间相互作用在未取代和取代的LA单体的反应性以及未取代和取代的PLA的降解速率以及侧链的空间位阻方面起着主要作用。被期望。

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