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Designing cross-linked xylanase aggregates for bioconversion of agroindustrial waste biomass towards potential production of nutraceuticals

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논문

Designing cross-linked xylanase aggregates for bioconversion of agroindustrial waste biomass towards potential production of nutraceuticals

학술지

International journal of biological macromolecules

저자명

Hero, J.S.; Romero, C.M.; Pisa, J.H.; Perotti, N.I.; Olivaro, C.; Martinez, M.A.

초록

<P><B>Abstract</B></P> <P>Immobilized biocatalysts design has the potential to efficiently produce valuable bioproducts from lignocellulosic biomass. Among them, the carrier-free immobilization through the cross-linked enzyme aggregates technology is a simple and low-cost alternative. A two steps statistical approach was utilized to evaluate the synthesis of a cross-linked enzyme aggregate from a xylanolytic preparation, which was produced by <I>Cohnella</I> sp. AR92 grown in a peptone-based culture medium.</P> <P>The resulting immobilized biocatalyst, Xyl-CLEA, was significate more stable (25 to 45%) towards temperatures up to 50&deg;C with respect to the free enzyme, and retained over 50% of its initial activity after 5 consecutive cycles of reuse. By means of infrared spectroscopy and electron microscopy, the Xyl-CLEA showed architectural features described as signature of type I and type II of protein aggregates. These, were the result of the simultaneous aggregation of a multiplicity of proteins from the crude enzymatic extract.</P> <P>The enzymatic activity was assessed using alkali pretreated sugar cane bagasse as substrate. Whereas the free enzymatic preparation released xylose as the main product, the immobilized xylanase produced xylooligosaccharides, thus showing that the immobilization procedure modified the potential application of the extracellular xylanase from <I>Conhella</I> sp. AR92.</P> <P><B>Graphical abstract</B></P> <P>[DISPLAY OMISSION]</P>

발행연도

2018

발행기관

Elsevier

ISSN

0141-8130

ISSN

1879-0003

111

페이지

pp.229-236

주제어

Cohnella spp.; Xylanase immobilization; Xylooligosaccharides; Biorefinery

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1 2023-12-11

논문; 2018-05-01

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