A kit for detecting fibrinogen content
A fibrinogen and kit technology, applied in the biological field, can solve problems such as unmentioned significance, and achieve the effects of high accuracy, good stability and wide detection range
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Embodiment 1
[0046] Embodiment 1 Preparation and use method of kit of the present invention
[0047] 1. Kit preparation
[0048] (1) Thrombin reagent (pH 7.4):
[0049]
[0050] (2) Imidazole buffer solution (pH value is 7.4):
[0051]
[0052] (3) Fixed value plasma: 3g / L.
[0053] 2. How to use the kit
[0054] The test kit of the present invention is carried out on the coagulation method full-automatic blood coagulation tester for routine inspection in hospital clinical laboratories, and its specific use method is:
[0055] 1. Preparation of samples and reagents:
[0056] (1) Prepare the plasma sample to be tested: blood is collected from a vein, and 109mmol / L sodium citrate is mixed with whole blood at a ratio of 1:9. Centrifuge at 2500g for 15 minutes and remove the plasma with a plastic pipette. Plasma samples must be tested within 4 hours.
[0057] (2) FIB thrombin reagent: each bottle of thrombin is accurately weighed according to the label on the bottle and added to dist...
Embodiment 2
[0069] Embodiment 2 The verification experiment of the stability of the optimal buffer system of the invention kit:
[0070] In order to find the optimal ratio of the main components in the reagent system, this experiment compared and analyzed the concentrations of the thrombin reagent and imidazole buffer components in the kit, and tested the preparations of the three buffer systems A, B, and C respectively. The FIB content changes of the reagents at 37°C were used to evaluate the stability of the corresponding reagent system.
[0071] Wherein, A, B, C reagent formula are as shown in Table 2:
[0072] Table 2 Reagent system composition with different concentrations:
[0073]
[0074] The specific experimental data are shown in Table 3 below:
[0075] Table 3 Stability of reagent systems with different concentrations
[0076]
[0077]
[0078] The above experimental data shows that the reagent kit adopts the B reagent system, which has better stability, and the dev...
Embodiment 3
[0079] Ca in embodiment 3 invention kit 2+ Verification experiments on the quantitative accuracy of FIB:
[0080] This experiment grouped as adding Ca to the thrombin reagent 2+ Ca-free in groups and thrombin reagents 2+ group, add Ca 2+ Group adopts the B reagent system of embodiment 2 to detect, without Ca 2+ Group adopts the reagent that lacks calcium chloride on the basis of the B reagent system of embodiment 2.
[0081] Each group randomly selects 10 reagents for quantitative detection of FIB. The reference value of control plasma FIB is 2.8g / L. 2+ The impact on FIB quantification, the relevant experimental data are shown in Table 4 below:
[0082] Table 4 Ca in thrombin reagent 2+ Effect on FIB Quantitative Accuracy
[0083]
[0084]
[0085] The above data show that the addition of Ca to the thrombin reagent 2+ The FIB detection value of the group is more consistent with the reference value, and the deviation is smaller, that is, adding Ca to the thrombin ...
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