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Featured researches published by Alfonso Robles.


Enzyme and Microbial Technology | 2012

Synthesis of 2-monoacylglycerols and structured triacylglycerols rich in polyunsaturated fatty acids by enzyme catalyzed reactions

A. Rodríguez; Luis Esteban; L. Martín; María J. Jiménez; Estrella Hita; Beatriz Castillo; Pedro A. González; Alfonso Robles

This paper studies the synthesis of structured triacylglycerols (STAGs) by a four-step process: (i) obtaining 2-monoacylglycerols (2-MAGs) by alcoholysis of cod liver oil with several alcohols, catalyzed by lipases Novozym 435, from Candida antartica and DF, from Rhizopus oryzae, (ii) purification of 2-MAGs, (iii) formation of STAGs by esterification of 2-MAGs with caprylic acid catalyzed by lipase DF, from R. oryzae, and (iv) purification of these STAGs. For the alcoholysis of cod liver oil, absolute ethanol, ethanol 96% (v/v) and 1-butanol were compared; the conditions with ethanol 96% were then optimized and 2-MAG yields of around 54-57% were attained using Novozym 435. In these 2-MAGs, DHA accounted for 24-31% of total fatty acids. In the operational conditions this lipase maintained a stable level of activity over at least 11 uses. These results were compared with those obtained with lipase DF, which deactivated after only three uses. The alcoholysis of cod liver oil and ethanol 96% catalyzed by Novozym 435 was scaled up by multiplying the reactant amounts 100-fold and maintaining the intensity of treatment constant (IOT=3g lipase h/g oil). In these conditions, the 2-MAG yield attained was about 67%; these 2-MAGs contained 36.6% DHA. The synthesized 2-MAGs were separated and purified from the alcoholysis reaction products by solvent extraction using solvents of low toxicity (ethanol and hexane); 2-MAG recovery yield and purity of the target product were approximately 96.4% and 83.9%, respectively. These 2-MAGs were transformed to STAGs using the optimal conditions obtained in a previous work. After synthesis and purification, 93% pure STAGs were obtained, containing 38% DHA at sn-2 position and 60% caprylic acid (CA) at sn-1,3 positions (of total fatty acids at these positions), i.e. the major TAG is the STAG with the structure CA-DHA-CA.


Biochemical Engineering Journal | 2009

Synthesis of 2-monoacylglycerols (2-MAG) by enzymatic alcoholysis of fish oils using different reactor types

Luis Esteban; María M. Muñío; Alfonso Robles; Estrella Hita; María J. Jiménez; Pedro A. González; Belén Camacho; Emilio Molina


Process Biochemistry | 2007

Production of structured triacylglycerols (STAG) rich in docosahexaenoic acid (DHA) in position 2 by acidolysis of tuna oil catalyzed by lipases

Estrella Hita; Alfonso Robles; Belén Camacho; Antonio Ramírez; Luis Esteban; María J. Jiménez; María M. Muñío; Pedro A. González; Emilio Molina


Process Biochemistry | 2008

Synthesis of 2-monoacylglycerols rich in polyunsaturated fatty acids by ethanolysis of fish oil catalyzed by 1,3 specific lipases

María M. Muñío; Luis Esteban; Alfonso Robles; Estrella Hita; María J. Jiménez; Pedro A. González; Belén Camacho; Emilio Molina


Biochemical Engineering Journal | 2009

Production of structured triacylglycerols by acidolysis catalyzed by lipases immobilized in a packed bed reactor

Estrella Hita; Alfonso Robles; Belén Camacho; Pedro A. González; Luis Esteban; María J. Jiménez; María M. Muñío; Emilio Molina


Biochemical Engineering Journal | 2011

Production of structured triacylglycerols rich in palmitic acid at sn-2 position and oleic acid at sn-1,3 positions as human milk fat substitutes by enzymatic acidolysis

Luis Esteban; María J. Jiménez; Estrella Hita; Pedro A. González; L. Martín; Alfonso Robles


Process Biochemistry | 2009

Synthesis of structured lipids by two enzymatic steps: Ethanolysis of fish oils and esterification of 2-monoacylglycerols

María M. Muñío; Alfonso Robles; Luis Esteban; Pedro A. González; Emilio Molina


Biochemical Engineering Journal | 2010

Production of triacylglycerols rich in palmitic acid at sn-2 position by lipase-catalyzed acidolysis

María J. Jiménez; Luis Esteban; Alfonso Robles; Estrella Hita; Pedro A. González; María M. Muñío; Emilio Molina


Applied Catalysis A-general | 2006

Mechanistic model for the lipase-catalyzed alcoholysis of triacylglycerols

F. Camacho; Alfonso Robles; Pedro A. González; Belén Camacho; Luis Esteban; Emilio Molina


Lwt - Food Science and Technology | 2011

Enzymatic production of human milk fat substitutes containing palmitic and docosahexaenoic acids at sn-2 position and oleic acid at sn-1,3 positions

Alfonso Robles; María J. Jiménez; Luis Esteban; Pedro A. González; L. Martín; A. Rodríguez; Emilio Molina

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L. Martín

University of Almería

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