Difference between revisions of "Team:UI-Indonesia"

Line 153: Line 153:
 
     .button-team-details:hover{
 
     .button-team-details:hover{
 
         box-shadow: 0 12px 16px 0 rgba(0,0,0,0.24),0 17px 50px 0 rgba(0,0,0,0.19);
 
         box-shadow: 0 12px 16px 0 rgba(0,0,0,0.24),0 17px 50px 0 rgba(0,0,0,0.19);
    }
 
    .references-section{
 
        background-color: #F8F8F8;
 
        bottom: 0px;
 
        margin-bottom: 0px;
 
        padding-bottom: 0px;
 
 
     }
 
     }
 
     </style><!-- header section -->
 
     </style><!-- header section -->
Line 330: Line 324:
 
         </div>
 
         </div>
 
     </section><!-- references section -->
 
     </section><!-- references section -->
     <section class="contents references-section text-center" id="references">
+
     <section class="contents text-center" id="references">
 
         <div class="container">
 
         <div class="container">
 
             <div class="row">
 
             <div class="row">

Revision as of 08:41, 17 October 2016

<!DOCTYPE html> Home - Hi,Vax! UI iGEM Team 2016

Our Project: Hi, Vax!

Hi, Vax! Logo

HIV is one of the biggest health issues the world has ever faced, and although antiretroviral therapy (ART) has made it possible to prevent mortality in HIV patients, it has several limitations, including the logistic and economic burden that arises from the need for lifelong treatment. To end HIV, we still need a cure. Today, the best hope for a cure is DNA vaccines, which are DNA molecules that harbour a gene encoding an antigen. When administered, cells will take up these molecules and produce the antigen. Dendritic cells will take this antigen to lymph nodes and present them to T cells, activating them and licensing them to hunt and kill infected cells. In theory, this would allow for the elimination of viral reservoir in the body. In reality, however, DNA vaccination for HIV hasn’t worked in humans.

Although the key component of a DNA vaccine is the antigen-encoding gene, the vaccine backbone, as the name implies, accounts for most of its mass and governs its activity. So, we wondered, can we design a better vaccine backbone? We have designed genetic elements that, when put together, will hopefully achieve improved transgene expression (promoter, intron, polyadenylation sequence and barrier element) and immune stimulation (immunostimulatory DNA motif and RNA gene as well as coding sequences for peptides that direct antigen processing) with respect to existing vaccine backbones. We’re having the parts synthesized and assembling them soon. We hope that this new vaccine backbone will give rise to new, safer and more potent DNA vaccines for HIV—maybe even a cure.

Modelling

Coming Soon.

Human Practice

Coming Soon

Medal Criteria

"Go get gold" was our jargon. We did our best to achive every particular things in medal criteria.

Team

A year strugling for this project wouldn't be this fun without these person.

Result

Ready to start your next project with us? That's great! Give us a call or send us an email and we will get back to you as soon as possible!

References

A year strugling for this project wouldn't be this fun without these person.