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Syntheses of random and block copolymers of lactides with 1,5-dioxepan-2-one and their biodegradability

机译:丙交酯与1,5-二氧戊环-2-一的无规和嵌段共聚物的合成及其生物降解性

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Random and block copolymerizations of l,5-dioxepan-2-one (DXO) with L-, D-, or D,L-lactide (LA) were performed with Sn(oct)_2 as an initiator in order to prepare novel type of biodegradable copolymers. The degradation of random copolymers, poly(DXO-ran-D,L-LA) with a compost were slightly higher than that of the corresponding poly(DXO-ran-L-LA). When the degradation of block copolymers, poly(DXO)-block-poly(D,L-LA or L-LA), were compared with those of poly(DXO-ran-D,L-LA or L-LA), the former copolymer showed less degradability. The enzymatic degradability using proteinase K is much higher than the degradation with a compost. Poly(DXO-ran-D,L-LA) showed large degradability compared with poly(DXO-ran-L-LA), while poly(DXO)-block-poly(D,L-LA or L-LA) indicates less degradability with proteinase K. In sharp contrast to L-LA or D,L-LA copolymers, poly(DXO-co-D-LA)s are inert toward the decomposition with proteinase K, while these polymers show better degradability using a compost. Triblock copolymers, poly(DXO/L-LA/DXO)s showed extremely high enzymatic degradation compared with poly(L-LA/DXO/L-LA)s because of the large hydrophilicity of the former copolymers. Random copolymeri-zation of DXO/L-LA/3-allyl-δ-valerolactone (3-AV) gave a interesting biodegradable copolymer, which can be modified into biodegradable graft polymer by further copolymerization with styrene.
机译:以Sn(oct)_2为引发剂进行1,5-二氧戊环-2-酮(DXO)与L-,D-或D,L-丙交酯(LA)的无规和嵌段共聚,以制备新型可生物降解的共聚物具有堆肥的无规共聚物聚(DXO-ran-D,L-LA)的降解略高于相应的聚(DXO-ran-L-LA)。当将嵌段共聚物聚(DXO)-嵌段-聚(D,L-LA或L-LA)的降解与聚(DXO-ran-D,L-LA或L-LA)的降解进行比较时,前一种共聚物显示出较低的降解性。使用蛋白酶K的酶促降解能力远高于堆肥的降解能力。聚(DXO-ran-D,L-LA)与聚(DXO-ran-L-LA)相比具有较大的降解性,而聚(D​​XO)-嵌段-聚(D,L-LA或L-LA)则显示较少蛋白酶K可降解。与L-LA或D,L-LA共聚物形成鲜明对比的是,聚(DXO-co-D-LA)对蛋白酶K分解呈惰性,而这些聚合物使用堆肥表现出更好的降解性。三嵌段共聚物聚(DXO / L-LA / DXO)与聚(L-LA / DXO / L-LA)相比显示出极高的酶促降解性,因为前者的亲水性很高。 DXO / L-LA / 3-烯丙基-δ-戊内酯(3-AV)的无规共聚得到了一种有趣的可生物降解的共聚物,可以通过与苯乙烯进一步共聚将其改性为可生物降解的接枝聚合物。

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