Difference between revisions of "Team:EPF Lausanne/Test"

Line 91: Line 91:
 
                     <h1>Notebook</h1>
 
                     <h1>Notebook</h1>
 
                     <div class="col-md-4">
 
                     <div class="col-md-4">
                         <img aligh="center" width="30px" heigt="30px" src="https://static.igem.org/mediawiki/2015/7/74/EPF_Lausanne_ecoli_icon.png">
+
                         <img aligh="middle" width="30px" heigt="30px" src="https://static.igem.org/mediawiki/2015/7/74/EPF_Lausanne_ecoli_icon.png">
 
                         <h2>E. coli</h2>
 
                         <h2>E. coli</h2>
 
                         <p>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.</p>
 
                         <p>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.</p>

Revision as of 17:32, 12 August 2015

EPFL 2015 iGEM bioLogic Logic Orthogonal gRNA Implemented Circuits EPFL 2015 iGEM bioLogic Logic Orthogonal gRNA Implemented Circuits

Bio LOGIC

Logic Orthogonal gRNA Implemented Circuits

Engineering transcriptional logic gates to program cellular behavior remains an important challenge for synthetic biology. Currently, genetic circuits reproducing digital logic are limited in scalability and robustness by output discrepancies and crosstalk between transcriptional pathways. We propose to address these issues using RNA-guided dCas9 fused to a transcription activation domain as a programmable transcription factor.

Read More

Project

Background

Discover the ideas behind our project, from boolean logic to the the complete explanation of a biologic logic gate.

Description

Understand our project in the smallest details and explore the world of CRISPR-dCas9 with us.

Applications

Need a biosensor? Want a bacteria that could depollute a lake? Here are a few examples of how you could apply our technology for your own designs.

Modelling

Having a robust system is the key to devise a new concept and testing it in silico before ordering the expensive parts.

Achievements

In Vivo

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

In Silico

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Judging

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Parts

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Policy & Practices

Ethics

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Safety

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Human Practices

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Notebook

E. coli

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Yeast

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Protocols

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Team

Meet us

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Timeline

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

Aknowledgements

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Nunc vitae ultricies turpis, a sollicitudin lacus. Sed mattis tempus laoreet. Aliquam ullamcorper, ante malesuada luctus pretium, quam urna interdum justo, vel.

EPFL 2015 iGEM bioLogic Logic Orthogonal gRNA Implemented Circuits