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Dr Samia Rourou

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    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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    1. Rourou S, Ben Ayed Y, Trabelsi K, Majoul S, Kallel H. An animal component free medium that promotes the growth of various animal cell lines for the production of viral vaccines. Vaccine. 2014 May 19; 32(24):2767-9. PMID: 24583007.
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    2. Rourou S, Riahi N, Majoul S, Trabelsi K, Kallel H. Development of an in situ detachment protocol of Vero cells grown on Cytodex1 microcarriers under animal component-free conditions in stirred bioreactor. Appl Biochem Biotechnol. 2013 Aug; 170(7):1724-37. PMID: 23737305.
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    3. Kluge S, Rourou S, Vester D, Majoul S, Benndorf D, Genzel Y, Rapp E, Kallel H, Reichl U. Proteome analysis of virus-host cell interaction: rabies virus replication in Vero cells in two different media. Appl Microbiol Biotechnol. 2013 Jun; 97(12):5493-506. PMID: 23674149.
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    4. Rourou S, Hssiki R, Kallel H. Isolation of active peptides from plant hydrolysates that promote Vero cells growth in stirred cultures. BMC Proc. 2011; 5 Suppl 8:P116. PMID: 22373411; PMCID: PMC3285025.
    5. Trabelsi K, Majoul S, Rourou S, Kallel H. Development of a measles vaccine production process in MRC-5 cells grown on Cytodex1 microcarriers and in a stirred bioreactor. Appl Microbiol Biotechnol. 2012 Feb; 93(3):1031-40. PMID: 21935589.
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    6. Rourou S, van der Ark A, van der Velden T, Kallel H. Development of an animal-component free medium for vero cells culture. Biotechnol Prog. 2009 Nov-Dec; 25(6):1752-61. PMID: 19768803.
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    7. Rourou S, van der Ark A, Majoul S, Trabelsi K, van der Velden T, Kallel H. A novel animal-component-free medium for rabies virus production in Vero cells grown on Cytodex 1 microcarriers in a stirred bioreactor. Appl Microbiol Biotechnol. 2009 Nov; 85(1):53-63. PMID: 19521697.
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    8. Rourou S, van der Ark A, van der Velden T, Kallel H. A microcarrier cell culture process for propagating rabies virus in Vero cells grown in a stirred bioreactor under fully animal component free conditions. Vaccine. 2007 May 10; 25(19):3879-89. PMID: 17307281.
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    9. Kallel H, Diouani MF, Loukil H, Trabelsi K, Snoussi MA, Majoul S, Rourou S, Dellagi K. Immunogenicity and efficacy of an in-house developed cell-culture derived veterinarian rabies vaccine. Vaccine. 2006 May 29; 24(22):4856-62. PMID: 16600442.
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    10. Trabelsi K, Rourou S, Loukil H, Majoul S, Kallel H. Optimization of virus yield as a strategy to improve rabies vaccine production by Vero cells in a bioreactor. J Biotechnol. 2006 Jan 24; 121(2):261-71. PMID: 16153733.
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    11. Kallel H, Rourou S, Majoul S, Loukil H. A novel process for the production of a veterinary rabies vaccine in BHK-21 cells grown on microcarriers in a 20-l bioreactor. Appl Microbiol Biotechnol. 2003 Jun; 61(5-6):441-6. PMID: 12764557.
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    12. Kallel H, Jouini A, Majoul S, Rourou S. Evaluation of various serum and animal protein free media for the production of a veterinary rabies vaccine in BHK-21 cells. J Biotechnol. 2002 May 23; 95(3):195-204. PMID: 12007860.
      View in: PubMed
    13. Kallel H, Zaïri H, Rourou S, Essafi M, Barbouche R, Dellagi K, Fathallah DM. Use of Taguchi's methods as a basis to optimize hybridoma cell line growth and antibody production in a spinner flask. Cytotechnology. 2002 May; 39(1):9-14. PMID: 19003299; PMCID: PMC3449801.
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