[1] S. Talekar, V. Ghodake, A. Kate, N. Samant, C. Kumar, S. Gadagkari, Preparation and characterization of cross-linked enzyme aggregates of Saccharomyces cerevisiae invertase, Aust. J. Basic Appl. Sci. 4(2010) 4760-4765. [2] Z. Lazar, E. Walczak, M. Robak, Simultaneous production of citric acid and invertase by Yarrowia lipolytica SUC+ transformants, Bioresour. Technol. 102(2011) 6982-6989. [3] M.C. Madhusudhan, K.S.M.S. Raghavarao, Aqueous two phase extraction of invertase from Baker's yeast:Effect of process parameters on partitioning, Process Biochem. 46(2011) 2014-2020. [4] T. Karkaş, S. Önal, Characteristics of invertase partitioned in poly(ethylene glycol)/magnesium sulfate aqueous two-phase system, Biochem. Eng. J. 60(2012) 142-150. [5] G.E.A. Awad, H. Amer, E.W. El-Gammal, W.A. Helmy, M.A. Esawy, M.M.M. Elnashar, Production optimization of invertase by Lactobacillus brevis mm-6 and its immobilization on alginate beads, Carbohydr. Polym. 93(2013) 740-746. [6] E.J. Tomotani, M. Vitolo, Production of high-fructose syrup using immobilized invertase in membrane reactor, J. Food Eng. 80(2007) 662-667. [7] M. Plascencia-Espinosa, A. Santiago-Hernández, P. Pavón-Orozco, V. Vallejo-Becerra, S. Trejo-Estrada, A. Sosa-Peinado, C.G. Benitez-Cardoza, M.E. Hidalgo-Lara, Effect of deglycosylation on the properties of thermophilic invertase purified from the yeast Candida guilliermondii Mplla, Process Biochem. 49(2014) 1480-1487. [8] A.S. Schmidt, A.M. Ventom, J.A. Asenjo, Partitioning and purification of α-amylase in aqueous two-phase systems, Enzym. Microb. Technol. 16(1994) 131-142. [9] D.Z. Wei, J.H. Zhu, X.J. Cao, Enzymatic synthesis of cephalexin in aqueous two-phase systems, Biochem. Eng. J. 11(2002) 95-99. [10] B.R. Babu, N.K. Rastogi, K.S.M.S. Raghavarao, Liquid-liquid extraction of bromelain and polyphenol oxidase using aqueous two-phase system, Chem. Eng. Process. 47(2008) 83-89. [11] S. Shahriari, V. Taghikhani, M. Vossoughi, A.A. Safekordi, I. Alemzadeh, G.R. Pazuki, Measurement of partition coefficients of β-amylase and amyloglucosidase enzymes in aqueous two-phase systems containing poly(ethylene glycol) and Na2SO4/KH2PO4 at different temperatures, Fluid Phase Equilib. 292(2010) 80-86. [12] L. Ferreira, X. Fan, L.M. Mikheeva, P.P. Madeira, L. Kurgan, V.N. Uversky, B.Y. Zaslavsky, Structural features for differences in protein partitioning in aqueous dextran-polyethylene glycol two-phase systems of different ionic compositions, Biochim. Biophys. Acta 1844(2014) 694-704. [13] J.A. Asenjo, B.A. Andrews, Aqueous two-phase systems for protein separation:A perspective, J. Chromatogr. A 1218(2011) 8826-8835. [14] I. Yücekan, S. Önal, Partitioning of invertase from tomato in poly(ethylene glycol)/sodium sulfate aqueous two-phase systems, Process Biochem. 46(2011) 226-232. [15] H. Hartounian, E.W. Kaler, S.I. Sandler, Aqueous two-phase systems. 2. Protein partitioning, Ind. Eng. Chem. Res. 33(1994) 2294-2300. [16] P.A. Pessôa Filho, R.S. Mohamed, Thermodynamic modeling of the partitioning of biomolecules in aqueous two-phase systems using a modified Flory-Huggins equation, Process Biochem. 39(2004) 2075-2083. [17] S. Gautam, L. Simon, Prediction of equilibrium phase compositions and β-glucosidase partition coefficient in aqueous two-phase systems, Chem. Eng. Commun. 194(2006) 117-128. [18] A.M.F. Fileti, G.A. Fischer, E.B. Tambourgi, Neural modeling of bromelain extraction by reversed micelles, Braz. Arch. Biol. Technol. 53(2010) 455-463 Performance comparison of the hybrid GMDH, original [19] J. Luo, W. Lin, X. Cai, J. Li, Optimization of fermentation media for enhancing nitriteoxidizing activity by artificial neural network coupling genetic algorithm, Chin. J. Chem. Eng. 20(2012) 950-957. [20] G. Pazuki, S.S. Kakhki, A hybrid GMDH neural network to investigate partition coefficients of Penicillin G Acylase in polymer-salt aqueous two-phase systems, J. Mol. Liq. 188(2013) 131-135. [21] S. Atashrouz, G. Pazuki, Y. Alimoradi, Estimation of the viscosity of nine nanofluids using a hybrid GMDH-type neural network system, Fluid Phase Equilib. 372(2014) 43-48. [22] F. Parvizian, M. Rahimi, S.M. Hosseini, Prediction of the characteristics of a new sonochemical reactor using an expert model, Chem. Eng. Commun. 203(2016) 683-691. [23] A.G. Ivakhnenko, Polynomial theory of complex systems, IEEE Trans. Syst. Man Cybern. 1(1971) 364-378. [24] S.Z. Reyhani, H. Ghanadzadeh, L. Puigjaner, F. Recances, Estimation of liquid-liquid equilibrium for a quarternary system using the GMDH algorithm, Ind. Eng. Chem. Res. 48(2009) 2129-2134. [25] S. Ketabchi, H. Ghanadzadeh, A. Ghanadzadeh, S. Fallahi, M. Ganji, Estimation of VLE of binary systems (tert-butanol +2-ethyl-1-hexanol) and (n-butanol +2-ethyl-1-hexanol) using GMDH-type neural network, J. Chem. Thermodyn. 42(2010) 1352-1355. [26] H. Ghanadzadeh, M. Ganji, S. Fallahi, Mathematical model of liquid-liquid equilibrium for a ternary system using the GMDH-type neural network and genetic algorithm, Appl. Math. Model. 36(2012) 4096-4105. [27] T. Kondo, J. Ueno, S. Takao, Hybrid multi-layered GMDH-type neural network using principal component regression analysis and its application to medical image diagnosis of liver cancer, Procedia Comput. Sci. 22(2013) 172-181. [28] C.E.A. Padilha, C.A.A. Padilha, D.F.S. Souza, J.A. Oliveira, G.R. Macedo, E.S. Santos, Prediction of rhamnolipid breakthrough curves on activated carbon and amberlite XAD-2 using artificial neural network and group method data handling models, J. Mol. Liq. 206(2015) 293-299. [29] M. Moghadam, S. Asgharzadeh, On the application of artificial neural network for modeling liquid-liquid equilibrium, J. Mol. Liq. 220(2016) 339-345. [30] S. Abdolrahimi, B. Nasernejad, G. Pazuki, Prediction of partition coefficients of alkaloids in ionic liquids based aqueous biphasic systems using hybrid group method of data handling (GMDH) neural network, J. Mol. Liq. 191(2014) 79-84. [31] G.L. Miller, Use of dinitrosalicylic acid reagent for determination of reducing sugar, Anal. Chem. 31(1959) 426-428. [32] C.F. Assis, L.S. Costa, R.F. Melo-Silveira, R.M. Oliveira, H.A.O. Rocha, G.R. Macedo, E.S. Santos, Chitooligosaccharides antagonize the cytotoxic effect of glucosamine, World J. Microbiol. Biotechnol. 28(2012) 1097-1105. [33] A. Shabri, R. Samsundin, A hybrid GMDH and Box-Jenkins models in time series forecasting, Appl. Math. Sci. 8(2014) 3051-3062. [34] L. Ferreira, P.P. Madeira, L. Mikheeva, V.N. Uversky, B. Zaslavsky, Effect of salt additives on protein partitioning in polyethylene glycol-sodium sulfate aqueous twophase systems, Biochim. Biophys. Acta 1834(2013) 2859-2866. |