|
PART
|
96T
|
48T
|
STORAGE
|
|
Pre-Coated Plate
|
8×12
|
8×6
|
4 ℃ / -20 ℃
|
|
Pre-Mixed Standards
|
2 vials
|
1 vial
|
4 ℃ / -20 ℃
|
|
Pre-Mixed Biotinylated Antibody (1:100)
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Enzyme Conjugate(1:100)
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Enzyme Diluent
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Antibody Diluent
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Standard Diluent
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Sample Diluent
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Washing Buffer (1:25)
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Color Reagent A
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Color Reagent B
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Color Reagent C
|
1 vial
|
1 vial
|
4 ℃ / -20 ℃
|
|
Manual
|
1 set
|
1 set
|
RT
|
Place collected whole blood in refrigerator at 4 ℃ overnight. Then centrifuge for 10mins at 1000-3000 rpm. Take supernatant and either test immediately or place samples at -20 ℃/-80 ℃(1-3 months) for storage.
Take plasma where EDTA, sodium citrate, or heparin has been added as anticoagulant. Mix well. Centrifuge mixture for 10mins at 1000-3000 rpm. Take supernatant and test immediately or place samples at -20 ℃ /-80 ℃ (1-3 months) for storage.
Take tissue slices which have been washed in 0.01 M PBS and then a tissue protein extraction reagent has been added according to proportion of 1 g to 5-10 mL and then mixed on ice bath. After sufficient homogenization, please then centrifuge for 10mins at 5000-10000 rpm. Take supernatant for immediate testing, or place samples at -20 ℃/-80 ℃ (1-3 months) for storage.
Centrifuge for 10 mins at 1000-3000 rpm. Take supernatant for immediate testing, or place samples at -20 ℃/-80 ℃ (1-3 months) for storage.
Centrifuge for 10mins at 1000-3000 rpm. Take supernatant for immediate testing, or place samples at -20 ℃/-80 ℃ (1-3 months) for storage.
|
TYPICAL DATA
|
Reference STD1
|
Reference STD2
|
Reference STD3
|
Reference STD4
|
Reference STD5
|
Reference STD6
|
Reference STD7
|
Reference STD8
|
|
14-3-3 Pro, ng/mL
|
400
|
200
|
100
|
50
|
25
|
12.5
|
6.25
|
0
|
|
14-3-3 Pro, OD.
|
2.338
|
1.299
|
0.722
|
0.401
|
0.223
|
0.124
|
0.069
|
0.046
|
|
AGPs, ng/mL
|
10
|
5
|
2.5
|
1.25
|
0.625
|
0.313
|
0.156
|
0
|
|
AGPs, OD.
|
2.531
|
1.406
|
0.781
|
0.434
|
0.241
|
0.134
|
0.074
|
0.05
|
|
AA, pg/mL
|
500
|
250
|
125
|
62.5
|
31.25
|
15.625
|
7.813
|
0
|
|
AA, OD.
|
3.565
|
1.981
|
1.1
|
0.611
|
0.34
|
0.189
|
0.105
|
0.07
|
|
BANK1, ng/mL
|
10
|
5
|
2.5
|
1.25
|
0.625
|
0.313
|
0.156
|
0
|
|
BANK1, OD.
|
2.533
|
1.407
|
0.782
|
0.434
|
0.241
|
0.134
|
0.074
|
0.05
|
STANDARD CURVE
To assess linearity of the assay, samples were spiked with high concentrations of Human 14-3-3 Pro, AGPs, AA, BANK1 and diluted with the appropriate calibrator diluent to produce samples with values within the dynamic range of the assay.
|
Matrix
|
Scope %
|
Average % Recovery Rate
|
|
serum(n=5)
|
81-92
|
86.5
|
|
EDTA plasma(n=5)
|
89-103
|
96
|
|
Cell Culture Media(n=5)
|
93-107
|
100
|
|
Within-Run Precision
|
Inter-Batch Precision
|
|||||
|
Sample
|
1
|
2
|
3
|
1
|
2
|
3
|
|
n
|
20
|
20
|
20
|
20
|
20
|
20
|
|
CV%
|
6.6
|
6.4
|
6
|
8.2
|
8.3
|
8.2
|
1.The OD values of each sample and standard should be corrected by subtracting the OD value of the blank well. 2.Draw the standard curve manually: Plot the standard curve using the standard concentrations as the X-axis and the corresponding OD values as the Y-axis. Connect the plotted points with a smooth curve. The concentration of samples can be calculated by substituting the sample OD values into the standard curve equation. It is recommended to use professional curve-fitting software (e.g., Curve Expert 1.3) for result analysis and calculation. 3.If the sample OD value is higher than that of the highest-concentration standard in the standard curve, the sample should be diluted (or further diluted) and reassayed. Multiply the measured concentration by the dilution factor when calculating the final concentration.