Keithaiken (Talk | contribs) |
Keithaiken (Talk | contribs) |
||
Line 17: | Line 17: | ||
.textTitle {font-size: 200%; font-style: oblique; text-align: center;} | .textTitle {font-size: 200%; font-style: oblique; text-align: center;} | ||
p {text-align: center !important;} | p {text-align: center !important;} | ||
− | + | #slogan {text-align: center; font-size: calc(28px + 0.5vw) !important; line-height: calc(1.1em + 0.5vw) !important;} | |
Line 49: | Line 49: | ||
<img src="https://static.igem.org/mediawiki/2017/c/c9/Logo_banner.png" class="fitBanner"> | <img src="https://static.igem.org/mediawiki/2017/c/c9/Logo_banner.png" class="fitBanner"> | ||
− | <div><h1>Cell-free Synthetic Biology<br> for the Masses</h1></div><br> | + | <div><h1 id="slogan">Cell-free Synthetic Biology<br> for the Masses</h1></div><br> |
<h3 class="segmentHeader">Why Cell-free?</h3> | <h3 class="segmentHeader">Why Cell-free?</h3> |
Revision as of 06:35, 23 October 2017
Cell-free Synthetic Biology
for the Masses
Why Cell-free?
Cell-free systems include all the necessary biomachinery for producing proteins outside of a living cell
Due to their inherent safety and simplicity, cell-free systems provide a powerful tool to synthetic biologists for engineering novel systems without the constraints of cellular life
Motivation
A lack of standardization, simplification and flexibility has limited the application of cell-free systems, including its use within the education system and DIY community
Design
To lower the barrier of synthetic biology our project aims to create a STANDARD, SAFE, MODULAR and USER-FRIENDLY cell-free system
Our System
A collection of standard parts for essential TX-TL components
Streamline and novel purification techniques
A tool to create an orthogonal system
A tool to detect potentially harmful encrypted sequences
A safe synthetic biology teaching tool
Simplified protocols
Curriculum aligned lesson plans