Biomod/2012/Titech/Nano-Jugglers/Achievements: Difference between revisions

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=Achievements=
=Achievements=
:&nbsp;&nbsp;&nbsp;&nbsp;<html><body><font size="5">We created Biomolecular Rocket. We realized high-speed movement that exceed the speed of kinesin. In addition, Biomolecular Rocket moved freely without rails, and we developed directional control system. </font></body></html><br>
:&nbsp;&nbsp;&nbsp;&nbsp;<html><body><font size="5">We created the Biomolecular Rocket whose travelling speed exceeds that of kinesin. In addition, the Biomolecular Rocket moved freely without any rail, and we developed a photo-swichable system allowing the directional control.
:&nbsp;&nbsp;&nbsp;&nbsp;As for construction of Biomolecular Rocket, we achieved selective coating and selective conjugation.
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=Future Works=
=Future Perspective=
 
:&nbsp;&nbsp;&nbsp;&nbsp;Based on three useful functions described above, the Biomolecular Rocket could explore even in long and rugged fields such as the inside of living organisms. Therefore, the Biomolecular Rocket is expected to be applied for quick delivery of drugs to the aimed position within a human body. Besides, the sphere of the Biomolecular Rocket is not limited to the inside of living organisms. As an example, we imagine an intelligent photo-controllable material, in which a number of Biomolecular Rockets convey their molecular cargos and form a network exhibiting computational functions. We believe that our Biomolecular Rocket is a step toward advanced molecular robots that can implement the task currently far beyond our technology.
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&nbsp;&nbsp;&nbsp;&nbsp;The present study embodies the concept to utilize and to control non-biological reactions by designing biomolecules for achieving novel functions implemented by synthetic molecular systems. That means, in the near future we will be able to create new biological systems that incorporate powerful non-biological reaction, and/or non-biological objects that incorporate complex reaction of the organism.  
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&nbsp;&nbsp;&nbsp;&nbsp;For example, we also created the rocket using catalase catalyst. By combining another DNA to conjugate another object, our rocket will be able to perform more complex and powerful movement.
 
&nbsp;&nbsp;&nbsp;&nbsp;We believe that our biomolecular rocket is a step toward advanced molecular robots that can move on long and rugged fields such as the inside of human body.
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Latest revision as of 17:45, 27 October 2012


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} </style> </head> <BODY> <div id="biomodlink"> <<a href="http://openwetware.org/wiki/Biomod">BIOMOD</a>|<a href="http://openwetware.org/wiki/Biomod/2012">2012</a>|Titech Nano-Jugglers </div> <div id="header"> <div id="navigation"> <div id="menu"> <ul> <li><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers"><br>Home<br><br></a></li> <li><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers/Team/Students"><br>Team<br><br></a></li> <li><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers/Project"><br>Project<br><br></a></li> <li><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers/Results">Results<br>&<br>Methods</a></font></li> <li class="ach"><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers/Achievements"><br>Achievements<br><br></a> <li class="sup"><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers/Protocols"><br>Suppl. Info.<br><br></a></li> <li class="none"><a href="http://openwetware.org/wiki/Biomod/2012/Titech/Nano-Jugglers/Acknowledgement"><br>Acknowledgements<br><br></a></li> </ul> </div> </div> </div> </BODY> </html>

Achievements

    <html><body><font size="5">We created the Biomolecular Rocket whose travelling speed exceeds that of kinesin. In addition, the Biomolecular Rocket moved freely without any rail, and we developed a photo-swichable system allowing the directional control.

</font></body></html>

Future Perspective

    Based on three useful functions described above, the Biomolecular Rocket could explore even in long and rugged fields such as the inside of living organisms. Therefore, the Biomolecular Rocket is expected to be applied for quick delivery of drugs to the aimed position within a human body. Besides, the sphere of the Biomolecular Rocket is not limited to the inside of living organisms. As an example, we imagine an intelligent photo-controllable material, in which a number of Biomolecular Rockets convey their molecular cargos and form a network exhibiting computational functions. We believe that our Biomolecular Rocket is a step toward advanced molecular robots that can implement the task currently far beyond our technology.

<html><body><td align="center"><img src="http://openwetware.org/images/1/14/FW22.jpg" border=0 width=560 height=420></a></td></body></html>