Zvjezdana Findrik Blažević
University of Zagreb
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Zvjezdana Findrik Blažević.
Journal of Biotechnology | 2018
Martina Sudar; Đurđa Vasić-Rački; Michael Müller; Alexandra Walter; Zvjezdana Findrik Blažević
The Stetter reaction, a conjugate umpolung reaction, is well known for cyanide-catalyzed transformations of mostly aromatic aldehydes. Enzymatic Stetter reactions, however, have been largely unexplored, especially with respect to preparative transformations. We have investigated the kinetics of the MenD-catalyzed 1,4-addition of α-ketoglutaric acid to acrylonitrile which has shown that acrylonitrile, while an interesting candidate, is a poor substrate for MenD due to low affinity of the enzyme for this substrate. The kinetic model of the reaction was simplified to double substrate Michaelis-Menten kinetics where the reaction rate linearly depends on acrylonitrile concentration. Experiments at different initial concentrations of acrylonitrile under batch, repetitive batch, and fed-batch reactor conditions were carried out to validate the developed mathematical model. Thiamine diphosphate dependent MenD proved to be quite a robust enzyme; nevertheless, enzyme operational stability decay occurs in the reactor. The spontaneous reactivity of acrylonitrile towards polymerization was also taken into account during mathematical modeling. Almost quantitative conversion of acrylonitrile was achieved in all batch reactor experiments, while the yield of the desired product was dependent on initial acrylonitrile concentration (i.e., the concentration of the stabilizer additive). Using the optimized reactor parameters, it was possible to synthesize the product, 6-cyano-4-oxohexanoic acid, in a concentration of 250 mM. The highest concentration of product was achieved in a repetitive batch reactor experiment. A fed-batch reactor experiment also delivered promising results, especially regarding the short reaction time needed to achieve a 200 mM concentration of product. Hence, the enzymatic Stetter reaction with a highly reactive acceptor substrate can be performed on a preparative scale, which should enable similar transformations with acrylate, methacrylate, and methyl vinyl ketone.
Bioprocess and Biosystems Engineering | 2013
Ana Vrsalović Presečki; Zvjezdana Findrik Blažević; Đurđa Vasić-Rački
Journal of Molecular Catalysis B-enzymatic | 2014
Davor Valinger; Ana Vrsalović Presečki; Želimir Kurtanjek; Martina Pohl; Zvjezdana Findrik Blažević; Đurđa Vasić-Rački
Bioprocess and Biosystems Engineering | 2013
Ana Vrsalović Presečki; Zvjezdana Findrik Blažević; Đurđa Vasić-Rački
2nd Conference on Applied biocatalysis and 7th Meeting of Students and University Professors from maribor and Zagreb | 2011
Davor Valinger; Martina Sudar; Zvjezdana Findrik Blažević; Đurđa Vasić-Rački
XII. SUSRET MLADIH KEMIJSKIH INŽENJERA KNJIGA SAŽETAKA | 2018
Morana Česnik; Dino Skendrović; Martina Sudar; Đurđa Vasić-Rački; Raquel Roldán; Karel Hernández; Pere Clapés; Anna Szekrenyi; Wolf-Dieter Fessner; Zvjezdana Findrik Blažević
Knjiga sažetaka XII. Susret mladih kemijskih inženjera | 2018
Martina Miloloža; Josip Leko; Monika Šabić; Martina Sudar; Zvjezdana Findrik Blažević; Marija Vuković Domanovac
VI. hrvatski simpozij o kemiji i tehnologiji makromolekula, Knjiga sažetaka | 2017
Marija Vuković Domanovac; Zvjezdana Findrik Blažević; Tomislav Domanovac
Prva radionica HDKI-HKD: Intelektualno vlasništvo i komercijalni pristup za novo eksperimentalno i tehnološko rješenje u organskoj kemiji, Radni materijal | 2017
Zvjezdana Findrik Blažević; Nevena Milčić; Maja Majerić Elenkov; Martina Sudar
Knjiga sažetaka 25 HSKIKI | 2017
Morana Česnik; Martina Sudar; Đurđa Vasić-Rački; Pere Clapés; Zvjezdana Findrik Blažević