Biopharmaceutical Process Optimization with Simulation and Scheduling Tools
Design and assessment activities associated with a biopharmaceutical process are performed at different levels of detail, based on the stage of development that the product is in. Preliminary “back-of-the envelope” assessments are performed early in the development lifecycle, whereas detailed design...
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doaj-70a081ef07c14f15bb1bf320387a7e022020-11-24T22:15:23ZengMDPI AGBioengineering2306-53542014-09-011415418710.3390/bioengineering1040154bioengineering1040154Biopharmaceutical Process Optimization with Simulation and Scheduling ToolsDemetri Petrides0Doug Carmichael1Charles Siletti2Alexandros Koulouris3Intelligen Inc., Scotch Plains, NJ 07076, USAIntelligen Inc., Scotch Plains, NJ 07076, USAIntelligen Inc., Scotch Plains, NJ 07076, USAIntelligen Inc., Scotch Plains, NJ 07076, USADesign and assessment activities associated with a biopharmaceutical process are performed at different levels of detail, based on the stage of development that the product is in. Preliminary “back-of-the envelope” assessments are performed early in the development lifecycle, whereas detailed design and evaluation are performed prior to the construction of a new facility. Both the preliminary and detailed design of integrated biopharmaceutical processes can be greatly assisted by the use of process simulators, discrete event simulators or finite capacity scheduling tools. This report describes the use of such tools for bioprocess development, design, and manufacturing. The report is divided into three sections. Section One provides introductory information and explains the purpose of bioprocess simulation. Section Two focuses on the detailed modeling of a single batch bioprocess that represents the manufacturing of a therapeutic monoclonal antibody (MAb). This type of analysis is typically performed by engineers engaged in the development and optimization of such processes. Section Three focuses on production planning and scheduling models for multiproduct plants.http://www.mdpi.com/2306-5354/1/4/154computer-aided bioprocess designbioprocess simulationcost analysiscycle time reductioncapacity analysisproduction schedulingdebottlenecking |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Demetri Petrides Doug Carmichael Charles Siletti Alexandros Koulouris |
spellingShingle |
Demetri Petrides Doug Carmichael Charles Siletti Alexandros Koulouris Biopharmaceutical Process Optimization with Simulation and Scheduling Tools Bioengineering computer-aided bioprocess design bioprocess simulation cost analysis cycle time reduction capacity analysis production scheduling debottlenecking |
author_facet |
Demetri Petrides Doug Carmichael Charles Siletti Alexandros Koulouris |
author_sort |
Demetri Petrides |
title |
Biopharmaceutical Process Optimization with Simulation and Scheduling Tools |
title_short |
Biopharmaceutical Process Optimization with Simulation and Scheduling Tools |
title_full |
Biopharmaceutical Process Optimization with Simulation and Scheduling Tools |
title_fullStr |
Biopharmaceutical Process Optimization with Simulation and Scheduling Tools |
title_full_unstemmed |
Biopharmaceutical Process Optimization with Simulation and Scheduling Tools |
title_sort |
biopharmaceutical process optimization with simulation and scheduling tools |
publisher |
MDPI AG |
series |
Bioengineering |
issn |
2306-5354 |
publishDate |
2014-09-01 |
description |
Design and assessment activities associated with a biopharmaceutical process are performed at different levels of detail, based on the stage of development that the product is in. Preliminary “back-of-the envelope” assessments are performed early in the development lifecycle, whereas detailed design and evaluation are performed prior to the construction of a new facility. Both the preliminary and detailed design of integrated biopharmaceutical processes can be greatly assisted by the use of process simulators, discrete event simulators or finite capacity scheduling tools. This report describes the use of such tools for bioprocess development, design, and manufacturing. The report is divided into three sections. Section One provides introductory information and explains the purpose of bioprocess simulation. Section Two focuses on the detailed modeling of a single batch bioprocess that represents the manufacturing of a therapeutic monoclonal antibody (MAb). This type of analysis is typically performed by engineers engaged in the development and optimization of such processes. Section Three focuses on production planning and scheduling models for multiproduct plants. |
topic |
computer-aided bioprocess design bioprocess simulation cost analysis cycle time reduction capacity analysis production scheduling debottlenecking |
url |
http://www.mdpi.com/2306-5354/1/4/154 |
work_keys_str_mv |
AT demetripetrides biopharmaceuticalprocessoptimizationwithsimulationandschedulingtools AT dougcarmichael biopharmaceuticalprocessoptimizationwithsimulationandschedulingtools AT charlessiletti biopharmaceuticalprocessoptimizationwithsimulationandschedulingtools AT alexandroskoulouris biopharmaceuticalprocessoptimizationwithsimulationandschedulingtools |
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1725794594964111360 |