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bioreactor studies of heterologous protein production by ...

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7.2. Recommendations<br />

The foUowing further <strong>studies</strong> may be recommended regûrding the potential applications <strong>of</strong><br />

the proposed mathematical models and the developed immobilized ceii <strong>bioreactor</strong>.<br />

1. in this work. batch and continuous cultures <strong>of</strong> the model recombinant yeast have been<br />

snidied. Examining fed-batch fermentation could be an intemting topic since fed-batch<br />

opention mode <strong>of</strong>fers severai advantages (Parker and Seo. 1992). Effect <strong>of</strong> different<br />

feeding strategis on cd growth. plasmid instability and recombinant <strong>protein</strong> <strong>production</strong><br />

may be investigated. Test <strong>of</strong> the pmposed mode1 against the data obtained in fed-batch<br />

fermentations <strong>of</strong> recombinant yeast may be performed.<br />

2. Specific growth rate plays an important role in plasrnid loss and recombinant <strong>protein</strong><br />

<strong>production</strong>. Plasmid copy number. which is a function <strong>of</strong> pnetic and environmentd<br />

factors. is one <strong>of</strong> the most imponant considerations in recombinant ce11 systems. It may be<br />

wful to examine the relationship between plasmid copy number. promoter strength.<br />

specific growth rate. and recombinant <strong>protein</strong> yield.<br />

3. The proposed models may be further generalized <strong>by</strong> snidying more recombinant yeast<br />

suains. Based on the proposed model, an interface program could be developed for<br />

controlling and optimizing fermentation processes employing the recombinant yrasts.

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