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Their proximity generates a concentration of target vulnerability.
The increasing electrochemical signal sensitively reflects the concentration of target DNA and shows a good linear relationship with the concentration of target DNA.
Therefore, low concentration of target molecules can be captured and detected by this microarray.
The principal component analysis score discriminated the influence of SPME variables on the equilibrium headspace concentration of target volatile compounds.
The sensor response (ΔRct) increased linearly with logarithm of concentration of target DNA in the range 2·10−13 2·10−6 M.
There is also an evident linear relationship between the signal intensity of microarray spots and the concentration of target DNA at the range of 10 100 pM.
The changes of the fluorescent signals of pyrene excimers are in response to the concentration of target protein, so that the detection of protein can be realized.
The current response of the sensor increases linearly with the concentration of target from 2.12 × 10−6 to 2.12 × 10−12 mol l−1 with a relative coefficient of 0.9938.
Based on the relationship between the electrochemical oxidation signal of p-nitrophenol and the concentration of target DNA, the 5hmC level can be detected with high sensitivity and selectivity.
Under the optimal conditions, the resulting currents was indirectly proportional to the concentration of target PSA in the dynamic range of 0.05 7 ng mL−1 with a detection limit (LOD) of 6 pg mL−1.
The optical response of the membrane sensor was characterized using a simple theoretical model that enables to quantify the concentration of target molecules from the amplitude and kinetics of the measured binding curves.
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