Team:Freiburg/Content/Team/Members

From 2014.igem.org

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<p>He is the most important member, because he does nothing. Also he is very poor looking and very not funny</p>
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<p>He is the most important member, because he does nothing. Also he is very poor looking and not funny</p>
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<p class="header">Chrys</p>
<p class="header">Chrys</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
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* Hobbies:
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* Why iGEM?:
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                        </p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
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* Why iGEM?:
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                        </p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:
 +
</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
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* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
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* Favorite color and/or number
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* Hobbies:
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* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
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* Hobbies:
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* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
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* Favorite color and/or number
 +
* Hobbies:
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* Why iGEM?:</p>
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<div class="col-sm-6">
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
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* Favorite color and/or number
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* Hobbies:
 +
* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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<div class="row category-row">
<div class="row category-row">
<div class="col-sm-6">
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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<img src="https://static.igem.org/mediawiki/2014/3/3a/Cowabunga.JPG">
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<p class="header">Chambre</p>
<p class="header">Chambre</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>Cowabanga. Peace & Pizza! </p>
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<div class="row category-row">
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<div class="col-sm-6">
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
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* Why iGEM?:</p>
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<div class="row category-row">
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<div class="col-sm-6">
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
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* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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<div class="row category-row">
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
+
<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
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* Hobbies:
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* Why iGEM?:</p>
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<p>We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection.</p>
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<p>     * Age:
 +
* Studies:
 +
* Favorite dish and/or drink:
 +
* Favorite color and/or number
 +
* Hobbies:
 +
* Why iGEM?:</p>
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Revision as of 20:40, 10 October 2014

The AcCELLerator

Team

We succeed to stably integrate our gene of interest into the genome of target cells by using a viral vector derived from the murine leukemia virus. The advantages of this vector are: its specificity for murine cells, making the viral work safe and easy; a very high efficiency for infection; and the ability of stable gene transfer into the genomes of target cells. Here we present results on these three qualities of our viral vector and how we optimized virus production and cell infection. We are iGEM Freiburg 2014. In the background you can see beautyful grey bricks. Throwing our hands up implies having fun together.

Team

Members

Jan Ole Ackermann

He is the most important member, because he does nothing. Also he is very poor looking and not funny

OH Le Ole

Christoph Bauer

Chrys

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Ileana Bender

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Illi-Vanilli

Valentina Diehl

Vali

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Mirja Harms

MirNEIN

Patrick Heisterkamp

Appologe

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Clarissa Hiltl

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

CEO von HZ Corp.

Jialiang Lu

LaLeLu

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Wignand Mühlhäuser

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Weegee

Marc Müller

Hexer

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Laura Ost

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Sonnenaufgang

Pascal Sartor

Dizzie Pascal

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Kristoffer Weißert

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Krissi

Dennis Zimmer

Chambre

Cowabanga. Peace & Pizza!

Advisors

Max Ulbrich

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Prof. Mäx

Nicole Gensch

Dr. Toolbox

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Patrick Gonschorek

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Pat

Anne Müller

Alles Müller, oder was?

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Natalie Louis

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?:

Rafael Natal

Lisa Schmunk

Schmuck

* Age: * Studies: * Favorite dish and/or drink: * Favorite color and/or number * Hobbies: * Why iGEM?: