Difference between revisions of "Team:UiOslo Norway"

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  <h1> B I O L A S E R </h1>
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  <p>
                      <h1> B I O L A S E R </h1>
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    Lasers from yeasts!!!! yes, they can do more than make beer for us ;)
                      <p> Not many of us fancy Yeast shooting Lasers, but here it is!!!</p>
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    Our team from University of oslo have taken up this task to make the yeasts
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    shoot lasers.
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    Our team of Biologists and Physicists have made this possible where
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    we provide an initial light source to our GFP medium which activates
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    the sample enabling it to generate a faint source of monochromatic
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    light. This can be fairly considered as a biolaser.
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    A biolaser is a laser where the gain medium is of biological origin.
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    This could involve anything from a pure solution of protein, to single cells
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    or entire cell cultures.
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                                <h3>First slide label</h3>
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  <h3> Why is the biolaser useful?</h3>
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<p>
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  One of the properties of a biolaser compared to a non-biological one is that
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  the implementation could involve a living, changing gain medium. The amount of
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  fluorescent protein in the cell would change over time as protein is synthesized
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  or broken down, which is something that could be monitored over time.
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  Coupled with a proper setup, this could be a very useful tool for monitoring
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  gene expression in real time. Changes in membrane shape in a particular cell
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  would affect the optical properties of the cell, which further could affect
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  the laser output to a measurable degree. As such, a biolaser has potential as
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  a tool for basic research in cell biology and diagnostics.
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  Our project plan is set up with two main goals: making a functional
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  proof-of-concept by testing the lasing potential of a superfolder GFP
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  protein solution, and then taking it a step further by trying to use live
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  yeast cells as the gain medium.
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</p>
  
 
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Revision as of 08:04, 22 August 2017


Bootstrap Example

B I O L A S E R

Lasers from yeasts!!!! yes, they can do more than make beer for us ;) Our team from University of oslo have taken up this task to make the yeasts shoot lasers. Our team of Biologists and Physicists have made this possible where we provide an initial light source to our GFP medium which activates the sample enabling it to generate a faint source of monochromatic light. This can be fairly considered as a biolaser. A biolaser is a laser where the gain medium is of biological origin. This could involve anything from a pure solution of protein, to single cells or entire cell cultures.

Why is the biolaser useful?

One of the properties of a biolaser compared to a non-biological one is that the implementation could involve a living, changing gain medium. The amount of fluorescent protein in the cell would change over time as protein is synthesized or broken down, which is something that could be monitored over time. Coupled with a proper setup, this could be a very useful tool for monitoring gene expression in real time. Changes in membrane shape in a particular cell would affect the optical properties of the cell, which further could affect the laser output to a measurable degree. As such, a biolaser has potential as a tool for basic research in cell biology and diagnostics.

Our project plan is set up with two main goals: making a functional proof-of-concept by testing the lasing potential of a superfolder GFP protein solution, and then taking it a step further by trying to use live yeast cells as the gain medium.

Your team has been approved and you are ready to start the iGEM season!

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