Team:UCL London/Manufacturing/PurityYieldCost/ProcessDetails

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<h1>Process Details</h1>
<h1>Process Details</h1>
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<h2>Figure 1.</h2>
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Hence, based on the market research,<br />
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[[File:Ucl-content-Manufacturing-flow.jpg]]
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The amount of product needed to meet the market requirement<br />= 1,000,000 treatments per yr × 0.005g per treatment = 5 kg per year<br />
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Assume: 20 batches per year<br />
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Final product yield per batch = 5 kg/20 = 0.25 kg
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[[File:Ucl-content-Manufacturing-flow.jpg|center]]<br />
'''Figure 1.''' Comparison between the Current and Novel Bioprocesses.<br />
'''Figure 1.''' Comparison between the Current and Novel Bioprocesses.<br />
''Left:'' Flow Sheet of Current DNA Vaccine Manufacturing Process<br />
''Left:'' Flow Sheet of Current DNA Vaccine Manufacturing Process<br />
''Right:'' Flow Sheet of Novel DNA Vaccine Manufacturing Process with E.coili
''Right:'' Flow Sheet of Novel DNA Vaccine Manufacturing Process with E.coili
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[[File:Ucl-content-Manufacturing-tables.jpg|center]]<br />
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''(Abbreviations: UF/DF, Ultrafiltration/Diafiltration; AEC, Anion Exchange Chromatography; SEC, Size Exclusion Chromatography.)''
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Latest revision as of 22:33, 21 September 2011

Process Details

Hence, based on the market research,
The amount of product needed to meet the market requirement
= 1,000,000 treatments per yr × 0.005g per treatment = 5 kg per year
Assume: 20 batches per year
Final product yield per batch = 5 kg/20 = 0.25 kg

Ucl-content-Manufacturing-flow.jpg

Figure 1. Comparison between the Current and Novel Bioprocesses.
Left: Flow Sheet of Current DNA Vaccine Manufacturing Process
Right: Flow Sheet of Novel DNA Vaccine Manufacturing Process with E.coili

Ucl-content-Manufacturing-tables.jpg

(Abbreviations: UF/DF, Ultrafiltration/Diafiltration; AEC, Anion Exchange Chromatography; SEC, Size Exclusion Chromatography.)