Rizzarelli Paola, Impallomeni Giuseppe, Montaudo Giorgio
Istituto di Chimica e Tecnologia dei Polimeri, Consiglio Nazionale delle Ricerche, Viale A Doria 6, 95125 Catania, Italy.
Biomacromolecules. 2004 Mar-Apr;5(2):433-44. doi: 10.1021/bm034230s.
High molar mass random poly(butylene succinate-co-butylene sebacate), P(BS-co-BSe), and poly(butylene succinate-co-butylene adipate), P(BS-co-BA), with different composition, were synthesized and subjected to enzymatic hydrolysis by Lipase from Mucor miehei or from Rhizopus arrhizus. The enzymatic hydrolysis of P(BS-co-BSe)s and P(BS-co-BA)s films produced a mixture of water-soluble monomers and co-oligomers that were separated and identified by on-line high performance liquid chromatography/electrospray ionization mass spectrometry (HPLC/ESI-MS). Optimization of the HPLC analysis allowed the separation of isobar co-oligomers, differing only for the co-monomers sequence. Oligomers with the same monomer composition and molar mass but different sequence were identified by HPLC/ESI-MS-MS on-line analysis. The results obtained show a preferential hydrolytic cleavage induced by the lipases used. In particular, these enzymes prefer cleaving sebacic ester bonds in P(BS-co-BSe) copolymers, whereas succinic ester bonds appear to be hydrolyzed faster than adipic ester bonds in P(BS-co-BA) copolyesters. 1H NMR analysis further substantiates these findings. The primary products generated by lipase hydrolysis of polyester films underwent further degradation at longer reaction times. The HPLC/ESI-MS analysis of these mixtures at various times provided the first evidence that lipase catalysis is active also in water solution, a hydrophobic effect induced by the aliphatic units of these polyesters.
合成了具有不同组成的高摩尔质量无规聚(丁二酸丁二醇酯 - 共 - 癸二酸丁二醇酯),即P(BS - co - BSe),以及聚(丁二酸丁二醇酯 - 共 - 己二酸丁二醇酯),即P(BS - co - BA),并将它们用米黑根毛霉或少根根霉的脂肪酶进行酶促水解。P(BS - co - BSe)和P(BS - co - BA)薄膜的酶促水解产生了水溶性单体和共低聚物的混合物,通过在线高效液相色谱/电喷雾电离质谱(HPLC/ESI - MS)对其进行分离和鉴定。HPLC分析的优化使得能够分离仅在共聚单体序列上不同的等压共低聚物。通过HPLC/ESI - MS - MS在线分析鉴定了具有相同单体组成和摩尔质量但序列不同的低聚物。所得结果表明所用脂肪酶诱导了优先的水解裂解。特别地,这些酶更倾向于裂解P(BS - co - BSe)共聚物中的癸二酸酯键,而在P(BS - co - BA)共聚酯中,琥珀酸酯键的水解似乎比己二酸酯键更快。1H NMR分析进一步证实了这些发现。聚酯薄膜经脂肪酶水解产生的初级产物在更长的反应时间下会进一步降解。在不同时间对这些混合物进行的HPLC/ESI - MS分析首次证明脂肪酶催化在水溶液中也具有活性,这是由这些聚酯的脂肪族单元引起的疏水效应。