Novel biocatalyst derived from Araujia sericifera latex:Synthesis and applicationsOA
Biocatalysts with lipase activity are increasingly required in different industrial sectors since they promote a large number of reactions with high selectivity and yield under mild conditions,promoting the development of more sustainable processes.Lipases derived from the latex of laticiferous plants are receiving increasing attention because they are easy to obtain and inexpensive.In this work,we have studied the synthesis of biocatalysts with lipase activity through the entrapment of microparticles of Araujia sericifera latex in a cross-linked chitosan matrix.The effect of the chitosan solution concentration(3-15 mg/ml),the cross-linking agent solution concentration(0-0.5 mol/l),the cross-linking time(0-60 min),the weight ratio latex microparticles/chitosan(1:1-3:1 wt/weight)and the pH value of the capture medium at the time of adding the latex microparticles(3-6)on the synthesis and activity of biocatalysts was studied.The performance of the entrapped microparticles synthesized under optimal conditions was evaluated in hydrolysis,esterification,and transesterification reactions with extremely promising results.This new biocatalyst showed comparable activity to Novozym 435,but its chemical and mechanical stability was considerably higher.It could be a good competitor for this prestigious commercial biocatalyst.
Daniel Sánchez;Gabriela Tonetto;María Luján Ferreira
Departamento de Ingeniería Química,Universidad Nacional del Sur(UNS),Avda.Alem 1253,Bahía Blanca 8000,Argentina Planta Piloto de Ingeniería Química-PLAPIQUI(UNS-CONICET),Camino La Carrindanga Km 7,CC 717,Bahía Blanca 8000,ArgentinaDepartamento de Ingeniería Química,Universidad Nacional del Sur(UNS),Avda.Alem 1253,Bahía Blanca 8000,Argentina Planta Piloto de Ingeniería Química-PLAPIQUI(UNS-CONICET),Camino La Carrindanga Km 7,CC 717,Bahía Blanca 8000,ArgentinaDepartamento de Química,Universidad Nacional del Sur(UNS),Avda.Alem 1253,Bahía Blanca 8000,Argentina Planta Piloto de Ingeniería Química-PLAPIQUI(UNS-CONICET),Camino La Carrindanga Km 7,CC 717,Bahía Blanca 8000,Argentina
化学化工
BiocatalystLipaseAraujia sericiferaHydrolysisEsterificationTransesterification
《Green Synthesis and Catalysis》 2026 (2)
P.188-197,10
funded by the Agencia Nacional de Promoción Científica y Tecnológica(National Agency of Scientific and Technological Promotion,Argentina),grants PICT 2018-03425,and PICT 2021-I-INVI-00207the Consejo Nacional de Investigaciones Científicas y Técnicas(National Council for Scientific,grants and Technological Research)grants PIP-2022-11220210100951,and PIBAA-2022-28720210100641,and the Universidad Nacional del Sur,grant PGI-24/M185.
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