Dialysis concentrate for supplementing nickel elements
A concentrate and nickel element technology, which is applied in the direction of drug combination, medical preparations containing active ingredients, active ingredients of alkali/alkaline earth metal chlorides, etc., can solve the problems of component concentration gradient difference and loss, and achieve the reduction of nickel element Loss, reduce the burden of metabolism, improve the effect of comfort
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experiment example 1
[0028] Blood side: 5L of 706 generation plasma, added NiCl 2 ·6H 2 O0.53mg (ie Ni 2+ The ion concentration is 0.44μmol / L);
[0029] Dialysate side: the formula of the dialysis concentrate is selected from the formula described in Example 1 in Table 3, and after dilution according to A:B:water=1:1.6:32.4, the ion concentration in the dialysate is as shown in Table 4:
[0030] Table 4: After the dialysis concentrate was diluted in Experimental Example 1, the ion concentration and pH value in the dialysate
[0031] ion
Na +
K +
Ca 2+
Mg 2+
Cl -
HCO 3 -
Ni 2+
pH
concentration
138mmol / L
2.0mmol / L
1.5mmol / L
0.5mmol / L
114mmol / L
27.36mmol / L
0.44μmol / L
7.0-8.0
[0032] After the simulated dialysis experiment example 1 was completed, the content of nickel element in the 706 generation plasma and dialysate was detected by atomic absorption method, as shown in Table 5.
[0033] Table 5: ...
experiment example 2
[0036] Blood side: 5L of 706 generation plasma, added NiCl 2 ·6H 2 O0.53mg (ie Ni 2+ The ion concentration is 0.44μmol / L);
[0037] Dialysate side: the formula of the dialysis concentrate is selected from the formula described in Example 2 in Table 3, and after dilution according to A:B:water=1:1.6:32.4, the ion concentration of the dialysate is as shown in Table 6:
[0038] Table 6: After the dialysis concentrate was diluted in Experimental Example 2, the ion concentration and pH value in the dialysate
[0039] ion
Na +
K +
Ca 2+
Mg 2+
Cl -
HCO 3 -
Ni 2+
pH
concentration
138mmol / L
2.0mmol / L
1.5mmol / L
0.5mmol / L
114mmol / L
27.36mmol / L
0.22μmol / l
7.0-8.0
[0040] After the simulated dialysis experiment example 2 was completed, the content of nickel element in the 706 generation plasma and dialysate was detected by atomic absorption method, as shown in Table 7.
[0041] Table 7: ...
experiment example 3
[0044] Blood side: 5L of 706 generation plasma, added NiCl 2 ·6H 2 O0.53mg (ie Ni 2+ The ion concentration is 0.44μmol / L);
[0045] Dialysate side: the formula of the dialysis concentrate is selected from the formula described in Example 3 in Table 3, and after dilution according to A:B:water=1:1.6:32.4, the ion concentration of the dialysate is as shown in Table 8:
[0046] Table 8: After the dialysis concentrate was diluted in Experimental Example 3, the ion concentration and pH value in the dialysate
[0047] ion
Na +
K +
Ca 2+
Mg 2+
Cl -
HCO 3 -
Ni 2+
pH
concentration
138mmol / L
2.0mmol / L
1.5mmol / L
0.5mmol / L
114mmol / L
27.36mmol / L
0.11μmol / l
7.0-8.0
[0048] After the simulated dialysis experiment example 3 was completed, the content of nickel element in the 706 generation plasma and dialysate was detected by atomic absorption method, as shown in Table 9.
[0049] Table 9: ...
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