Team:Potsdam Bioware

From 2012.igem.org

(Difference between revisions)
Line 11: Line 11:
Antibodies are of utmost importance for research and therapy but their generation is laborious and time consuming. We established a novel streamlined workflow for obtaining antibodies by incorporating all natural steps such as antibody maturation, selection and production in one genetic system implemented into a eukaryotic cell line. We stably transfect an antibody construct into CHO cells and mimic maturation by using the enzyme AID (activation-induced deaminase), which is known to induce somatic hypermutation. For selection, we are testing and deploying a versatile and continuous viral system as well as magnetic beads and cell sorting. Finally, a genetic switch enables the transition from surface expression to production of soluble antibodies. In addition, we pursue phage display with an antibody fragment to study mutation rate and evolution by AID in prokaryotes. Our system supersedes animal immunization, and the smooth process will increase the ready availability of antibodies in various formats. </div>
Antibodies are of utmost importance for research and therapy but their generation is laborious and time consuming. We established a novel streamlined workflow for obtaining antibodies by incorporating all natural steps such as antibody maturation, selection and production in one genetic system implemented into a eukaryotic cell line. We stably transfect an antibody construct into CHO cells and mimic maturation by using the enzyme AID (activation-induced deaminase), which is known to induce somatic hypermutation. For selection, we are testing and deploying a versatile and continuous viral system as well as magnetic beads and cell sorting. Finally, a genetic switch enables the transition from surface expression to production of soluble antibodies. In addition, we pursue phage display with an antibody fragment to study mutation rate and evolution by AID in prokaryotes. Our system supersedes animal immunization, and the smooth process will increase the ready availability of antibodies in various formats. </div>
-
<br>
 
-
<div class="box_round block gradient_grey">
 
-
 
-
<!---
 
-
  <div id="portfolio">
 
-
      <div class="team_box">Mario Köhler</div>
 
-
      <div class="team_box">Tom Scheidt</div>
 
-
      <div class="team_box">Christopher Kressler</div>
 
-
      <div class="team_box">Tobias Priemel</div>
 
-
      <div class="team_box">Maria Kunert</div>
 
-
      <div class="team_box">Sascha Lehnort</div>
 
-
      <div class="team_box">Norman Hein</div>
 
-
  </div>
 
-
--->
 
-
</div>
 
</html>
</html>

Revision as of 16:54, 15 September 2012

Antibody Generation System - Maturation, Selection and Production in CHO Cells


Project Description


Antibodies are of utmost importance for research and therapy but their generation is laborious and time consuming. We established a novel streamlined workflow for obtaining antibodies by incorporating all natural steps such as antibody maturation, selection and production in one genetic system implemented into a eukaryotic cell line. We stably transfect an antibody construct into CHO cells and mimic maturation by using the enzyme AID (activation-induced deaminase), which is known to induce somatic hypermutation. For selection, we are testing and deploying a versatile and continuous viral system as well as magnetic beads and cell sorting. Finally, a genetic switch enables the transition from surface expression to production of soluble antibodies. In addition, we pursue phage display with an antibody fragment to study mutation rate and evolution by AID in prokaryotes. Our system supersedes animal immunization, and the smooth process will increase the ready availability of antibodies in various formats.


2012.igem.org-Team-Potsdam_Bioware-thumb.jpg