Literature DB >> 15063616

Kluyveromyces lactis cells entrapped in Ca-alginate beads for the continuous production of a heterologous glucoamylase.

Elisabetta de Alteriis1, Giovanni Silvestro, Massimo Poletto, Vittorio Romano, Daniele Capitanio, Concetta Compagno, Palma Parascandola.   

Abstract

Viable cells of Kluyveromyces lactis, transformed with the glucoamylase gene from Arxula adeninivorans, were entrapped in beads of Ca-alginate and employed on a lab scale in a continuous stirred and a fluidised bed reactor (FBR), both fed with a rich medium (YEP) containing lactose as carbon source. Experiments with freely suspended cells in batch and chemostat had demonstrated that glucoamylase production was favoured in the presence of lactose and YEP medium. Employing controlled-sized beads having a 2.13 mm diameter, specific glucoamylase productivity was higher in the stirred reactor (CSTR) than in the FBR; in the latter a higher volumetric productivity was achieved, due to the lower void degree. The performance of the immobilised cell systems, in terms of specific glucoamylase productivity, was strongly affected by mass transfer limitations occurring throughout the gel due to the high molecular weight of the product. In the perspective to improve and scale-up the immobilised cell system proposed, a mathematical model, which takes into account substrate transfer limitations throughout the gel, has been developed. The effective lactose diffusivity was related to the bead reactive efficiency by means of the Thiele modulus. The regression of the model parameters on the experimental data of substrate consumption obtained both in the CSTR and in the FBR allowed to estimate lactose diffusivity and the kinetic parameters of the immobilised yeast.

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Year:  2004        PMID: 15063616     DOI: 10.1016/j.jbiotec.2003.10.028

Source DB:  PubMed          Journal:  J Biotechnol        ISSN: 0168-1656            Impact factor:   3.307


  1 in total

1.  The drug release profile from calcium-induced alginate gel beads coated with an alginate hydrolysate.

Authors:  Yoshifumi Murata; Daisaku Jinno; Dongchun Liu; Takshi Isobe; Kyouko Kofuji; Susumu Kawashima
Journal:  Molecules       Date:  2007-11-29       Impact factor: 4.411

  1 in total

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