Tianjin/DIODE

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< Tianjin
Revision as of 12:05, 25 October 2007 by Sunlovedie (Talk | contribs)

Design

1.Brief Introduction of Bio-diode

The diode, one of the most significant parts in the electric integrate circuit and electronic equipment, functions as allowing the current get through when the diode is positive-biased, and cut off while it is negative-biased. When the negative voltage increases to a threshold, the diode tends to be negatively broken down. In this project, the molecular signal AHL is considered as the current of electric circuit, the generator, amplifiers, blocks and detector cells are constructed with the parts provided by MIT and then are equipped in series in order to achieve the cellular and molecular biological diode.

Diodedh.gif OK! Happy.gif

Diodeblock.gif Blocked!Cry.gif




2.Composition and functional mechanism of bio-diode

Mechanism: The three types of cells, generator cell、amplifier cells and block cells are immobilized into small beads with a diameter of 0.5 millimeter, then different beads are settled into particular parts of our specially designed equipment sequentially and respectively. Firstly, the liquid culture flow through the generator cells and carry the AHL signal into the amplifier cells which are activated to make more AHL signals. Finally, the concentration of AHL accumulates to such a level that block cells could not eliminate them completely, and the rest could be detected by reporter cells, a condition called ‘posivive-biased pass’ On the contrary, if the positions of amplifier cells and block cells in the equipment are reversed, the AHL produced by generator cell would be degraded by block cells at the very beginning resulting in no amplification of the signal, thus, hardly AHL could be detected in the outflow culture, a condition called ‘negative-biased block’. By this way, we successfully simulate the two most important features of diode and our project could be connected with other devices to construct more complex circuit system in the future.

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TJU1DD001.jpg

Model

1. Model design and construction


2. Model result

2.1 Model of Generator Cells
TJU4L1.jpgTJU4L2.jpgTJU4L.jpgTJU8P1.jpgTJU8P2.jpg
2.2 Model of Block Cells
TJU4j.jpgTJU4j2.jpg
2.3 Model of Amplifier Cells
TJU8P1.jpgTJU8P2.jpg
2.4 Model of whole system
TJUI.jpgTJUI1.jpgTJUI2.jpgTJUIJ.jpgTJUIJP.jpgTJUzf.jpg

Experiment

1.Datas and Graphs of Detector cells

2.Function of immobilized cells

3.Assembly of equipment