Team:SupBiotech-Paris/Team

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A team is defined by two criteria: its members and the way it articulates itself. Come discover the characteristics of our team…<br>
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== Team Strategy ==
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{| style="color:#1b2c8a;background-color:#fff;" cellpadding="3" cellspacing="1" border="1" bordercolor="#fff" width="62%" align="center"
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Several elements are crucial for the development of an innovative project: <br>
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!align="center"|[[Team:SupBiotech-Paris|Home]]
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<div style="margin-left: 100px;">
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!align="center"|[[Team:SupBiotech-Paris/Team|The Team]]
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- the concept, <br>
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!align="center"|[[Team:SupBiotech-Paris/Project|The Project]]
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- the theoretical development that enables the building of a prototype, <br>
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!align="center"|[[Team:SupBiotech-Paris/Parts|Parts Submitted to the Registry]]
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- the experimental development that enables the validation of the prototype, <br>
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!align="center"|[[Team:SupBiotech-Paris/Modeling|Modeling]]
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- the providing of technical and material needs, <br>
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!align="center"|[[Team:SupBiotech-Paris/Notebook|Notebook]]
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- the foreseeing of ethical and social problems brought by the project, <br>
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|}
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</div>
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In this aim, we have structured our team as follows: <br>
 +
A management team, with experience in the development of innovative projects and a full vision on how to deal with them. <br>
 +
A R&D team to validate the theoretical and experimental concept. <br>
 +
A communication team to meet the internal and external needs of the project. <br>
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{|!align="justify"
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<span style="float: right">[[Team:SupBiotech-Paris/Team#drapeau|Haut de page]]</span>
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|You can write a background of your team here.  Give us a background of your team, the members, etc.  Or tell us more about something of your choosing.
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|[[Image:Example_logo.png|200px|left|frame]]
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''Tell us more about your project.  Give us background.  Use this is the abstract of your project.  Be descriptive but concise (1-2 paragraphs)''
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|[[Image:Supbiotech team.png|400px|right|framless]]
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== '''Who we are''' ==
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== Team ==
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{|border = "0"
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|-
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|rowspan="3"|
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Here is the story of our team throughout iGEM 2009: <br>
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<big>'''Instructors:'''</big>
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[[Image:Équipe.png|center|650px]]
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{|
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<u>Top row, from left to right :</u> Nassrine Lablack, David Charoy, Aurélie Négrel, Thierry Leclerc and Timothée Kirkhus.<br>
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*''' Instructor 1''':    Pierre Ougen
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<u>Bottom row, from left to right :</u> Ranya Jamali, Enguerrand Habran, Damien Parrello, Gaella Azzi, Cyprien Verseux  and Emma Valette.<br>
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[[Image:Pierre_Ougen.jpg|150px|caption|left|frameless]]
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Pierre Ougen is the project director of Sup'Biotech Paris and also immunology teacher. He is holder of two bachelors in Biochemistry and Human Biology, a master of Immunology (Institut Pasteur) and a PhD-Biochemistry Immunology.
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Team Leader at the Jean-Dausset Foundation, he built the Bank of 'Mega-YACs Humans.
 
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He has worked on mapping the genome of maize (Optical Mapping Project), |- but also on the Semliki-Virus to be produced by genetic recombination, recombinant human proteins for therapeutic purposes. Finally, his experiments led him to meet with Ian Wilmut and his team, creator of the famous sheep "Dolly".
 
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|}
 
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{|
 
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*''' Instructor 2''':    Gavin Browne   
 
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[[Image:Gavin_Browne.jpg|150px|caption|right|frameless]]
 
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: Gavin Browne is Industrial Economy and Science Communication Teacher, he is also in charge of International Relatonship.
 
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|}
 
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'''Enguerrand HABRAN''', specialized in R&D in biotechnologies, managed a team of 11 students during this adventure and brought the [[Team:SupBiotech-Paris/Concept#DVS|DVS]] project to a successful conclusion. Throughout his professional experience, he has acquired multiple competences in the realm of entrepreneurial and management skills, in particular by being project leader several times. <br>
 +
Passionate about science, he has conceived all through his curriculum an innovative concept based on a [[Team:SupBiotech-Paris/Concept#drapeau|vectorization]] principle. Convinced of its feasibility, he has chosen to pursue his research in order to create a prototype. To reach his goal, he has studied feverishly publications and has turned towards the grand names of the field. Once he had the sufficient theoretical knowledge, he developed his experimental competences in the laboratory of Professor COUVREUR, working on an anti-cancer nano-particle. <br>
 +
Combining theory and experimentation, he brought to light the underlying problems of vectorisation and elaborated with the rest of the team a [[Team:SupBiotech-Paris/Concept#DVS|double vectorisation system (DVS)]] to provide an answer. <br>
 +
After that, he selected, for the [https://2009.igem.org/Main_Page  iGEM] adventure, the students of the team according to their competences related to the project. <br>
 +
Enguerrand decided to take the lead of the R&D team and entrusted the communication team to '''Gaëlla AZZI'''. <br>
 +
Due to their common and complementary experiences in the creation and development of projects, Enguerrand was convinced of the asset of having Gaëlla in the iGEM project. Being a 5th year student specialized in Commercial Marketing in biotechnologies, she has obtained her competences throughout various professional experiences. <br>
 +
All along the iGEM adventure, she has managed a team of 3 students with whom she prospected the market for [[Team:SupBiotech-Paris/Acknowledgement#spo|sponsors]]. She has been brought to negotiate and oversee the orders of laboratory material suppliers so as to satisfy the internal needs of the R&D team. <br>
 +
She then turned her attention to the external problems of the project, particularly the ethics and social questions that were brought up by our concept. She thus supervised the creation of an [[Team:SupBiotech-Paris/Ethic#drapeau|ethics conference]] focused on synthetic biology. <br>
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<big>'''Undergrads:'''</big>
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[[image:Photo3.png|frameless|caption|right|150px]] '''Eve Ranya JAMALI''' and '''Emma VALETTE''', 4th year students, as well as '''Yolène MONEDERO''', a 5th year student specialised in Commercial Marketing in biotechnologies, have accomplished several different missions during the adventure. They prospected for [[Team:SupBiotech-Paris/Acknowledgement#spo|sponsors]] and worked on the elaboration of different communication medias. <br>
 +
It is especially their double competence in the scientific and communication fields that have rendered them interesting for this adventure. <br>
 +
A good visualisation of the concept and understanding of the ethical and societal questions brought up by it, aided by the numerous experiences in this field, have enabled Ranya to organize, and lead as best as possible the [[Team:SupBiotech-Paris/Ethic#drapeau|ethical conference]] and Emma to answer questions based on [[Team:SupBiotech-Paris/Safety#drapeau|Safety]].<br>
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: <big>'''R&D Team''':</big>
 
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{|
 
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:*'''Student 1''':    Enguerrand Habran 
 
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[[Image:enguerrandh.jpg|160px|caption|left|frameless]]
 
 +
The [[Team:SupBiotech-Paris/Concept#DVS|concept]] had already been defined when the iGEM adventure started out. We knew the characteristics of our vector and target cell, yet many questions remained unanswered. <br>
-
|}
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'''Damien PARELLO''', a 5th year student specialized in R&D in biotechnologies, was assigned the task of studying our target cell and its mutations. He studied its membrane proteins in order to determine THE protein that would be specific of our target cell. <br>
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{|
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Thus, he established that the protein c-kit is solely found on the membrane of our target cell. He then identified the target protein of this receptor and designed its [[Team:SupBiotech-Paris/Biobricks#drapeau|BioBrick]]. One of the proteins of our phage is now adorned with this BioBrick, enabling him to target our interest cells. <br>
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:*'''Student 2''':   Damien Parrello   
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He then determined the most common mutations in the cancerous cells so as to decide which genes to add to our [[Team:SupBiotech-Paris/Concept3#drapeau| therapeutic plasmid]]. <br>
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[[Image:damiend.jpg|160px|caption|right|frameless]]
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He thus studied then chose the genes containing the mutations before conducting thorough [[Team:SupBiotech-Paris/Antitumor_action#drapeau|studies]] on them in a laboratory. <br>
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|}
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Once the target molecule and its mutations were defined, we had to build our [[Team:SupBiotech-Paris/Concept2#drapeau|cell vector]]. <br>
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{|
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:*'''Student 3''':    David Charoy     
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[[Image:davidc.jpg|160px|caption|left|frameless]]
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[[image:Photo2.png|frameless|caption|left|100px]] To begin, '''David CHARROY''', a 5th year student specialized in R&D in biotechnologies, and '''Cyprien VERSEUX''', 1st year student in biotechnologies, prepared a résumé of the current situation of phages so as to understand its operating system.<br>
 +
They then decided to “BioBrick” it entirely so as to render it adjustable. <br>
 +
Knowing the phage thoroughly, they chose the optimal location for the target protein identified by Damien. Yet, a problem remained: can the naturally non-infectious [[Team:SupBiotech-Paris/Concept2#drapeau| cell vector]] for eukaryote cells manage to enter the target cell? <br>
 +
David then had the idea of adding a second target protein on our vector: a protein from an adenovirus to help escape the endosome. He then turned it into a [[Team:SupBiotech-Paris/Biobricks#drapeau|“BioBrick”]] and added it to our [[Team:SupBiotech-Paris/Concept2#drapeau|vector]]. <br>
 +
For our [[Team:SupBiotech-Paris/Antitumor_action#drapeau|studies in a laboratory]], the phage was studied by David, '''Nassrine LABLACK''' and '''Aurélie NEGREL''', both 5th year students specialized in R&D in biotechnologies. All three of them have hands on experience in various laboratories. David and Aurélie both followed a technical training before joining Sup’Biotech. Nassrine, in addition to her curriculum at Sup’Biotech, works in a biology laboratory. <br>
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|}
 
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{|
 
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:*'''Student 4''':    Thierry Leclerc   
 
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[[Image:thierryl.jpg|160px|caption|right|frameless]]
 
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A protein to be modified, a cellular vector; we just had to find our [[Team:SupBiotech-Paris/Concept1#drapeau|tissue vector]]. <br>
-
|}
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'''Thierry LECLERC''', a 4th year student specialized in R&D in biotechnologies, prepared a résumé on the current situation of Mycobacterium, our candidate for the [[Team:SupBiotech-Paris/Concept1#drapeau|tissue vector]]. He had two principle objectives: the capacity of resisting the immune system and the lung tropism. Once he had gathered sufficient information about the bacteria, he validated the theoretical concept, proving that Mycobacterium would perfectly fill in its role, by using scientific literature. <br>
-
{|
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In the aim of a technical validation, he elaborated a [[Team:SupBiotech-Paris/Tissue_targeting #drapeau|follow-up study]] of Mycobacterium in a murin organism. To do this, he created close ties with Mycobacterium specialists, and has made analogies with various ''in vivo'' studies that have been conducted. After that, he applied the previous study in a laboratory.<br>
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:*'''Student 5''':   Cyprien Verseux   
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[[Image:cyprienv.jpg|160px|caption|left|frameless]]
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|}
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Finally, for the [[Team:SupBiotech-Paris/Treatement_modeling#drapeau|modelisation part]], '''Timothée KIRKHUS''', a 4th year student specialised in Production in biotechnologies, modelised the effects of our treatment of a lung tumor, so as to determine the injection kinetics of different [[Team:SupBiotech-Paris/Concept#DVS|DVS]] system. <br>
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{|
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:*'''Student 6''':    Aurélie Négrel   
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[[Image:aureliene.jpg|160px|caption|right|frameless]]
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|}
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The complementarity of each student has enabled the team to fulfil all the obligations of the project. Thanks to research, analysis and interpretation, all have contributed their knowledge and understanding to solve as accurately as possible all underlying questions to attain our objective: fulfilling the [[Team:SupBiotech-Paris/Concept#DVS|DVS]] project. <br>
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{|
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:*'''Student 7''':    Nassrine Lablack 
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[[Image:nassrinel.jpg|160px|caption|left|frameless]]
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|}
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<span style="float: right">[[Team:SupBiotech-Paris/Team#drapeau|Back to top]]</span>
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{|
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:*'''Student 8''':    Timothée Kirkhus 
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[[Image:timotheek.jpg|160px|caption|right|frameless]]
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== Typical iGEMer Day ==
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<html>
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{|
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<right>
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: <big>'''Marketing & Communication Team''':</big>
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<p align="center">
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:*'''Student 9''':    Gaella Azzi       
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<object width="640" height="530">
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[[Image:gaellaa.jpg|160px|caption|left|frameless]]
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<param name="movie" value="http://www.youtube.com/v/8EfTj4hQlcg&hl=fr&fs=1&"></param>
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<param name="allowFullScreen" value="true"></param>
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<param name="allowscriptaccess" value="always"></param><embed src="http://www.youtube.com/v/8EfTj4hQlcg&hl=fr&fs=1&" type="application/x-shockwave-flash" allowscriptaccess="always" allowfullscreen="true" width="425" height="344"></embed></object>
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</p>
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</html>
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|}
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<span style="float: right">[[Team:SupBiotech-Paris/Team#drapeau|Back to top]]</span>
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{|
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:*'''Student 10''':    Yolène Monédéro   
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[[Image:yolenem.jpg|160px|caption|right|frameless]]
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<html>
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{|
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<div style="float: right; margin-right: -85px;">
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:*'''Student 11''':    Ranya Jamali     
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<a href="https://2009.igem.org/Team:SupBiotech-Paris/Project_Management#drapeau" target="_self">
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[[Image:ranyaj.jpg|160px|caption|left|frameless]]
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<img title="Let's go to the next page !" style="width: 100px;" src="https://static.igem.org/mediawiki/2009/e/e9/Suivant.png";>
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</a></div>
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</html>
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|}
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{|
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:*'''Student 12''':    Emma Valette     
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[[Image:emmav.jpg|160px|caption|right|frameless]]
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{|
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:*'''Student 13''':    Emmanuelle Chevrier
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[[Image:emmanuellec.jpg|caption|160px|left|frameless]]
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|}
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{|
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:*'''Student 14''':    Elie Jaskarzec   
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[[Image:eliej.jpg|160px|caption|right|frameless]]
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{|
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----
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'''Advisors:'''
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*''' Advisor 1''':
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*''' Advisor 2''':
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*''' Advisor 3''':
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*''' Advisor 4''':
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*''' Advisor 5''':
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|}
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<gallery {parameter}>
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Image:Team_member_2.png|
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Image:Team_member_2.png|
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Image:Team_member_2.png|
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</gallery>
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== '''Sup'Biotech Paris''' ==
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*Sup’Biotech is an engineering school located in Paris and specialized in Biotechnology. It is part of the technological cluster of IONIS Institute of Technology, the first French private higher education group.
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*Sup’Biotech’s education is a multidisciplinary balance between scientific and engineering qualifications (theoretical lessons, laboratory experiences and projects), management skills, industrial know-how as well as knowledge of the international biotechnology market. Professors come from universities, research centers and private companies.
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: During the Bachelor cycle, all projects require the realization of marketing and industry intelligence studies, including interviews well established professionals in the biotechnological companies.
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:*Technological projects: to find solutions for technological topics in different fields (molecular biology, microbiology, immunology).
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:*Innovative projects: to conceive and develop a novel service or product from the drawing board to commercialization.
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:*Communication projects: to develop communication tools and operations, and press releases.
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:*Company’s projects: to present a biotechnological company (history, activities, market, competitors and prospects).
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|}
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Latest revision as of 15:56, 1 March 2011

framless


A team is defined by two criteria: its members and the way it articulates itself. Come discover the characteristics of our team…

Team Strategy

Several elements are crucial for the development of an innovative project:

- the concept,
- the theoretical development that enables the building of a prototype,
- the experimental development that enables the validation of the prototype,
- the providing of technical and material needs,
- the foreseeing of ethical and social problems brought by the project,

In this aim, we have structured our team as follows:
A management team, with experience in the development of innovative projects and a full vision on how to deal with them.
A R&D team to validate the theoretical and experimental concept.
A communication team to meet the internal and external needs of the project.

Haut de page

Team

Here is the story of our team throughout iGEM 2009:

Équipe.png

Top row, from left to right : Nassrine Lablack, David Charoy, Aurélie Négrel, Thierry Leclerc and Timothée Kirkhus.
Bottom row, from left to right : Ranya Jamali, Enguerrand Habran, Damien Parrello, Gaella Azzi, Cyprien Verseux and Emma Valette.


Enguerrand HABRAN, specialized in R&D in biotechnologies, managed a team of 11 students during this adventure and brought the DVS project to a successful conclusion. Throughout his professional experience, he has acquired multiple competences in the realm of entrepreneurial and management skills, in particular by being project leader several times.
Passionate about science, he has conceived all through his curriculum an innovative concept based on a vectorization principle. Convinced of its feasibility, he has chosen to pursue his research in order to create a prototype. To reach his goal, he has studied feverishly publications and has turned towards the grand names of the field. Once he had the sufficient theoretical knowledge, he developed his experimental competences in the laboratory of Professor COUVREUR, working on an anti-cancer nano-particle.
Combining theory and experimentation, he brought to light the underlying problems of vectorisation and elaborated with the rest of the team a double vectorisation system (DVS) to provide an answer.


After that, he selected, for the iGEM adventure, the students of the team according to their competences related to the project.

Enguerrand decided to take the lead of the R&D team and entrusted the communication team to Gaëlla AZZI.
Due to their common and complementary experiences in the creation and development of projects, Enguerrand was convinced of the asset of having Gaëlla in the iGEM project. Being a 5th year student specialized in Commercial Marketing in biotechnologies, she has obtained her competences throughout various professional experiences.
All along the iGEM adventure, she has managed a team of 3 students with whom she prospected the market for sponsors. She has been brought to negotiate and oversee the orders of laboratory material suppliers so as to satisfy the internal needs of the R&D team.
She then turned her attention to the external problems of the project, particularly the ethics and social questions that were brought up by our concept. She thus supervised the creation of an ethics conference focused on synthetic biology.


Eve Ranya JAMALI and Emma VALETTE, 4th year students, as well as Yolène MONEDERO, a 5th year student specialised in Commercial Marketing in biotechnologies, have accomplished several different missions during the adventure. They prospected for sponsors and worked on the elaboration of different communication medias.

It is especially their double competence in the scientific and communication fields that have rendered them interesting for this adventure.
A good visualisation of the concept and understanding of the ethical and societal questions brought up by it, aided by the numerous experiences in this field, have enabled Ranya to organize, and lead as best as possible the ethical conference and Emma to answer questions based on Safety.


The concept had already been defined when the iGEM adventure started out. We knew the characteristics of our vector and target cell, yet many questions remained unanswered.

Damien PARELLO, a 5th year student specialized in R&D in biotechnologies, was assigned the task of studying our target cell and its mutations. He studied its membrane proteins in order to determine THE protein that would be specific of our target cell.
Thus, he established that the protein c-kit is solely found on the membrane of our target cell. He then identified the target protein of this receptor and designed its BioBrick. One of the proteins of our phage is now adorned with this BioBrick, enabling him to target our interest cells.
He then determined the most common mutations in the cancerous cells so as to decide which genes to add to our therapeutic plasmid.
He thus studied then chose the genes containing the mutations before conducting thorough studies on them in a laboratory.


Once the target molecule and its mutations were defined, we had to build our cell vector.

caption
To begin, David CHARROY, a 5th year student specialized in R&D in biotechnologies, and Cyprien VERSEUX, 1st year student in biotechnologies, prepared a résumé of the current situation of phages so as to understand its operating system.

They then decided to “BioBrick” it entirely so as to render it adjustable.
Knowing the phage thoroughly, they chose the optimal location for the target protein identified by Damien. Yet, a problem remained: can the naturally non-infectious cell vector for eukaryote cells manage to enter the target cell?
David then had the idea of adding a second target protein on our vector: a protein from an adenovirus to help escape the endosome. He then turned it into a “BioBrick” and added it to our vector.
For our studies in a laboratory, the phage was studied by David, Nassrine LABLACK and Aurélie NEGREL, both 5th year students specialized in R&D in biotechnologies. All three of them have hands on experience in various laboratories. David and Aurélie both followed a technical training before joining Sup’Biotech. Nassrine, in addition to her curriculum at Sup’Biotech, works in a biology laboratory.


A protein to be modified, a cellular vector; we just had to find our tissue vector.

Thierry LECLERC, a 4th year student specialized in R&D in biotechnologies, prepared a résumé on the current situation of Mycobacterium, our candidate for the tissue vector. He had two principle objectives: the capacity of resisting the immune system and the lung tropism. Once he had gathered sufficient information about the bacteria, he validated the theoretical concept, proving that Mycobacterium would perfectly fill in its role, by using scientific literature.
In the aim of a technical validation, he elaborated a follow-up study of Mycobacterium in a murin organism. To do this, he created close ties with Mycobacterium specialists, and has made analogies with various in vivo studies that have been conducted. After that, he applied the previous study in a laboratory.


Finally, for the modelisation part, Timothée KIRKHUS, a 4th year student specialised in Production in biotechnologies, modelised the effects of our treatment of a lung tumor, so as to determine the injection kinetics of different DVS system.


The complementarity of each student has enabled the team to fulfil all the obligations of the project. Thanks to research, analysis and interpretation, all have contributed their knowledge and understanding to solve as accurately as possible all underlying questions to attain our objective: fulfilling the DVS project.


Back to top

Typical iGEMer Day


Back to top