Intestine-kidney system for simulating drug absorption process in vivo based on microfluidic chip
A microfluidic chip and systemic absorption technology, applied in the field of intestinal-kidney system, can solve problems such as unconsidered drug process, and achieve the effect of reducing the failure rate
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Embodiment 1
[0040] Design and fabricate microfluidic chips, with structures such as figure 1 shown. The microfluidic chip is mainly composed of a top chip, a porous filter membrane, and a bottom chip. sealing;
[0041] The top chip is formed by connecting the U-shaped top chip main channel 1 and the top chip main channel entrance 11;
[0042] The bottom chip consists of left main channel 3, right main channel 6, collagen channel 7, collagen channel entrance 8, bottom chip left main channel entrance 9, and bottom chip right main channel entrance 10. Collagen channel 7 is connected to the left Main channel 3, right connected to right main channel 6;
[0043] The main channel 1 of the top chip is connected to the main channel 3 on the left side of the bottom chip through the porous filter membrane 5;
[0044] The main channel 3 on the left side of the bottom chip is I-shaped, the main channel 6 on the right side of the bottom chip is U-shaped, and the collagen channel 7 of the bottom chi...
Embodiment 2
[0050] Evaluation and application of drug nephrotoxicity
[0051] Digoxin has nephrotoxicity, cholestyramine can reduce the intestinal absorption of digoxin, and verapamil can increase the intestinal absorption of digoxin, and the nephrotoxicity changes accordingly.
[0052] Construction of the gut-kidney chip. The upper layer of the chip channel was added with digoxin (Dig) 80 μM, digoxin (Dig) 80 μM combined with cholestyramine (Col) 200 μg / mL, digoxin (Dig) 80 μM combined with verapamil (Ver) 20 μM The cells were cultured in culture medium, and after 48 hours of treatment, the culture medium in the main channel of the lower chip was collected for LDH leakage detection, and the results were as follows figure 2 as shown in c. It can be seen that the LDH leakage of digoxin combined with cholestyramine is lower than that of digoxin alone; the LDH leakage of digoxin combined with verapamil is higher than that of digoxin alone. Affected digoxin nephrotoxicity. Quantitative t...
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