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Hybrid fed-batch bioreactor operation design: control of substrate uptake enhances recombinant protein production in high-cell-density fermentations

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논문

Hybrid fed-batch bioreactor operation design: control of substrate uptake enhances recombinant protein production in high-cell-density fermentations

학술지

Journal of chemical technology and biotechnology

저자명

Ç alık, Pınar; Hoxha, Bebeta; Ç alık, Gü zide; Ö zdamar, Tunç er H

초록

<P><B>Abstract</B></P><P><B>BACKGROUND</B></P><P>The hybrid fed&#8208;batch bioreactor (HFBB) operation is a novel design method for high&#8208;cell&#8208;density fermentations. It employs fed&#8208;batch and batch operations, starting with fed&#8208;batch that in turn shifts to the next, and proceeds in successive cycles to enhance production and productivity by controlling the substrate uptake rate.</P><P><B>RESULTS</B></P><P>The method was tested for the production of recombinant human growth hormone (rhGH) in <I>Pichia pastoris</I> under GAP promoter with carbon sources of (i) glucose and (ii) pre&#8208;treated hydrolyzed sugar&#8208;beet molasses containing equimolar glucose and fructose. The superior strategies were: (i) GH2, a HFBB with glucose feeding composed of &Delta;t<SUB>FB</SUB> = 1.5 h fed&#8208;batch periods with continuous&#8208;feed stream designed with the pre&#8208;determined growth rate &micro; = 0.10 h<SUP>&minus;1</SUP>, which shift in turn to &Delta;t<SUB>B</SUB> = 0.5 h batch periods; and (ii) MH2, a HFBB with molasses feeding designed in a similar way to GH2. The highest rhGH production attained in GH2 was 611 mg dm<SUP>&minus;3</SUP> at 8 h, whereas it was 625 mg dm<SUP>&minus;3</SUP> at 13.5 h in MH2. In GH2, rhGH production increased 1.37&#8208;fold in half the cultivation time of GH2. However, in MH2 with dual carbon sources enriched with other substrates, higher rhGH production was obtained at the cost of lower productivity.</P><P><B>CONCLUSION</B></P><P>The HFBB is a powerful design method with a single carbon source which improves the productivity of high&#8208;cell&#8208;density fermentations. However, with molasses upon shifting to batch operations, the uptake of accumulated fructose is continued. Thus, the glamour of the HFBB is hindered for complex media fermentations to an extent, because multi&#8208;carbon sources contribute to the growth during the batch periods by lengthening the cultivation time. &copy; 2018 Society of Chemical Industry</P>

발행연도

2018

발행기관

John WileySons, Ltd.

ISSN

0268-2575

ISSN

1097-4660

93

11

페이지

pp.3326-3335

주제어

hybrid fed&#x2010; batch; bioreactor operation; high-cell-density fermentation; substrate uptake; fed&#x2010; batch; Pichia pastoris; GAP promoter;

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1 2023-12-11

논문; 2018-06-29

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