Gene circuit structure for realizing glioma marker detection
A brain glioma and gene circuit technology, applied in the field of synthetic biology, can solve the problems of high cost and experimental requirements, and achieve the effect of simple structure, strong anti-interference ability, and overcoming interference.
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[0020] See figure 1 , figure 2 , image 3 As shown, a gene circuit structure for realizing the detection of glioma markers is implemented as follows: it consists of a single index detection module and a fusion circuit module, and the two modules are sequentially connected to each other. The single index detection module is composed of an inverter. The inverter is composed of an input terminal, an output terminal and an inverting module, and its main function is to invert the input signal and output the inverse signal. This module detects the three glioma markers GFAP, YKL-40 and CD133 respectively, the input terminals are In1, In2 and In3 respectively, and the corresponding output terminals are OUT1, OUT2 and OUT3 respectively. The fusion circuit module is composed of a three-port input NAND gate. The expression of GFP (green fluorescent protein) is regulated by the input of three proteins A, B, and C. When the concentrations of A, B, and C are high, the expression of GFP...
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