Difference between revisions of "Team:NUDT CHINA/Model"

Line 388: Line 388:
 
model is created to evaluate the effectiveness of initial design, and offers  
 
model is created to evaluate the effectiveness of initial design, and offers  
  
guidelines about how the system can (or must) be improved. (You can go PROJECT
+
guidelines about how the system can (or must) be improved. (You can go<a
  
page to see more.) The core idea is to simulate the process of producing the  
+
href="/Team:NUDT_CHINA/Design">PROJECT. page</a><br/>  to see more.) The core  
 +
 
 +
idea is to simulate the process of producing the  
  
 
signal which can be detected, and draw a conclusion by obtaining the  
 
signal which can be detected, and draw a conclusion by obtaining the  
Line 1,036: Line 1,038:
 
<!--正文-->
 
<!--正文-->
 
<p style="text-indent:22pt;">
 
<p style="text-indent:22pt;">
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Firstly, we assume that there is a linear relationship between the  
+
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Firstly, we  
 +
 
 +
assume that there is a linear relationship between the  
  
 
concentration of the initiated probes and miRNA as the combination reaction  
 
concentration of the initiated probes and miRNA as the combination reaction  
Line 1,205: Line 1,209:
 
<!--正文-->
 
<!--正文-->
 
<p style="text-indent:22pt;">
 
<p style="text-indent:22pt;">
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Firstly, it is obvious that there is a linear relationship between  
+
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Firstly, it is  
 +
 
 +
obvious that there is a linear relationship between  
  
 
the molecule number of formed intact HRP proteins in the solution (consider as  
 
the molecule number of formed intact HRP proteins in the solution (consider as  
Line 1,349: Line 1,355:
 
<!--正文-->
 
<!--正文-->
 
<p style="text-indent:22pt;">
 
<p style="text-indent:22pt;">
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Notably, under the premise of excessive substrates,
+
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Notably, under  
 +
 
 +
the premise of excessive substrates,
 
it is a linear relationship between the reaction rate and the concentration of
 
it is a linear relationship between the reaction rate and the concentration of
 
enzymes when we assume that the enzymatic activity remain unchanged with time,
 
enzymes when we assume that the enzymatic activity remain unchanged with time,
Line 1,454: Line 1,462:
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">We use  
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">We use  
  
this equation to fit the data points obtained through experiments. (Figure …in
+
this equation to fit the data points obtained through experiments. (Figure 2.
  
the .page) The fitting curve is shown below.</span>  
+
(D)in the <a href="/Team:NUDT_CHINA/Results">RESULTS.page</a><br/>) The fitting  
 +
 
 +
curve is shown below.</span>  
 
</p>
 
</p>
 
</br>
 
</br>
Line 1,559: Line 1,569:
 
</br>
 
</br>
  
 
<!--正文-->
 
<p style="text-indent:22pt;">
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The
 
 
trend of the signal intensity with the change of the concentration of miRNA is
 
 
consistent with that we obtained in our wet-lab work.(…….. in the result
 
 
page)</span>
 
</p>
 
</br>
 
  
  
Line 1,601: Line 1,599:
 
</br>
 
</br>
  
 +
 +
<!--标题-->
 +
<h3>
 +
<span><span style="color:#7f1015">  Test of model   
 +
 +
</span></span><hr />
 +
</h3>
  
 
<!--正文-->
 
<!--正文-->
 
<p style="text-indent:22pt;">
 
<p style="text-indent:22pt;">
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Furthermore, we consider that it is conducive to signal detection
+
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Our
  
when the values of signal intensity and signal to noise ratio are both greater
+
model predicts the relationship between the signal intensity and the
  
than two. We obtain the ideal region through calculation, which is shown as
+
concentration of miRNA under the premise of adding a certain amount of the  
  
below.  </span>  
+
fusion proteins of dCas9 and split-HRP fragments. So we can test if our model is
 +
 
 +
reasonable by comparing the curves predicted by the model with those obtained
 +
 
 +
from the experiment. The results are shown below.
 +
</span>
 +
</p>
 +
</br>
 +
 
 +
 
 +
 
 +
<!--图和图注-->
 +
</br>
 +
</html>
 +
[[File:T--NUDT_CHINA--modelfig7-1.jpg|700px|center]]
 +
[[File:T--NUDT_CHINA--modelfig7-2.jpg|700px|center]]
 +
<html>
 +
</br>
 +
<p>
 +
<span style="line-height:2;font-family:Perpetua;font-
 +
 
 +
size:18px;"><b>Figure 7.  Test of model</b>  (A) Plot of the signal
 +
intensity (OD<sub>450</sub>) against miRNA concentration (pM) predicted by the
 +
model with the value of the molecule number of the fusion proteins set to be
 +
4.66e+13. (B)<span> Plot of the
 +
signal intensity (OD<sub>450</sub>) against miRNA concentration (pM) obtained
 +
from the experiment with the value of the molecule number of the fusion
 +
proteins set to be 4.66e+13. (C) Plot of the
 +
signal intensity (OD<sub>450</sub>) against miRNA concentration (pM) predicted
 +
by the model with the value of the molecule number of the fusion proteins set
 +
to be 4.66e+14. (D) Plot of the signal intensity (OD450) against miRNA
 +
concentration (pM) obtained from the experiment with the value of the molecule
 +
number of the fusion proteins set to be 4.66e+14.</span>
 +
</p>
 +
 
 +
</br>
 +
 
 +
 
 +
 
 +
<!--正文-->
 +
<p style="text-indent:22pt;">
 +
<span style="line-height:2;font-family:Perpetua;font-size:18px;">We can learn
 +
 
 +
from the figure above that the curves predicted by the model are in good
 +
 
 +
agreement with the experimental results. </span>
 +
</p>
 +
</br>
 +
 
 +
 
 +
 
 +
<!--标题-->
 +
<h3>
 +
<span><span style="color:#7f1015">  Model extension 
 +
 
 +
</span></span><hr />
 +
</h3>
 +
 
 +
<!--正文-->
 +
<p style="text-indent:22pt;">
 +
<span style="line-height:2;font-family:Perpetua;font-size:18px;">Furthermore, we
 +
 
 +
consider that it is conducive to signal detection when the value of signal
 +
 
 +
intensity and SNR are both greater than two. We obtain the ideal region through
 +
 
 +
calculation, which is shown as below.  </span>  
 
</p>
 
</p>
 
</br>
 
</br>
Line 1,625: Line 1,696:
 
<span style="line-height:2;font-family:Perpetua;font-
 
<span style="line-height:2;font-family:Perpetua;font-
  
size:18px;"><b>Figure 7. Ideal region</b>  Region of qualified logarithm of  
+
size:18px;"><b>Figure 8. Ideal region</b>  Region of qualified logarithm of  
  
 
concentrations of miRNA (pM) and logarithm of the additional amount of fusion  
 
concentrations of miRNA (pM) and logarithm of the additional amount of fusion  
Line 1,640: Line 1,711:
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">When  
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">When  
  
the value of N is
+
the value of N is set to e+13.3, the range of the value of x contained in the  
set to <a name="OLE_LINK18"></a><a name="OLE_LINK17"></a>10<sup>13.3</sup>, the  
+
  
range of the value of x contained
+
ideal region is maximum, which means when the value of the molecule number of  
in the ideal region is the largest, which means when the value of the molecule
+
 
number of the fusion proteins is 10<sup>13.3</sup>, the concentration range of
+
the fusion proteins is e+13.3, the concentration range of miRNA that can be
miRNA contained in the ideal region is the largest. </span>  
+
 
 +
detected is maximum. </span>  
 
</p>
 
</p>
 
</br>
 
</br>
Line 1,669: Line 1,740:
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The  
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The  
  
calculated trend of the signal intensity with the change of the concentration of
+
curves predicted by the model are in good agreement with the experimental
  
miRNA from our model is consistent with the trend we obtained in our laboratory
+
results, thus indicating that our model is reasonable.</span>  
 
+
work.</span>  
+
 
</p>
 
</p>
 
</br>
 
</br>
Line 1,681: Line 1,750:
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The  
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The  
  
value of the molecule number of fusion protein of dCas9 and split-HRP fragments
+
value of the molecule number of the fusion protein of dCas9 and split-HRP  
  
not only affects the signal-to-noise ratio, but also the signal intensity. So we
+
fragments not only affects the signal-to-noise ratio, but also the signal  
  
need to weigh its impact on both to select the optimal solution.</span>  
+
intensity. So we need to weigh its impact on both to select the optimal  
 +
 
 +
solution.</span>  
 
</p>
 
</p>
 
</br>
 
</br>
Line 1,694: Line 1,765:
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The  
 
<span style="line-height:2;font-family:Perpetua;font-size:18px;">The  
  
concentration range
+
concentration range of miRNA that can be detected is maximum when we set the  
of miRNA contained in the ideal region is the largest when we set the value of
+
 
the molecule number of the fusion proteins to be 10<sup>13.3</sup>, we optimize
+
value of the molecule number of the fusion proteins to be e+13.3, building on
the value of the addition amount of fusion proteins in our wet-lab work based
+
 
on it.</span>  
+
which, our wet-lab protocol could be optimized in our future work.</span>  
 
</p>
 
</p>
 
</br>
 
</br>
Line 1,710: Line 1,781:
 
<!--正文-->
 
<!--正文-->
 
<p >
 
<p >
<span style="line-height:2;font-family:Perpetua;font-size:18px;">1&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Deng, R. <i>et al</i>.  
+
<span style="line-height:2;font-family:Perpetua;font-
 +
 
 +
size:18px;">1&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Deng, R. <i>et al</i>.  
  
 
Toehold-initiated rolling circle
 
Toehold-initiated rolling circle
Line 1,719: Line 1,792:
 
</p>
 
</p>
 
</br>
 
</br>
 +
  
  

Revision as of 04:10, 19 October 2016

NUDT_CHINA 2016

TOP