Method for diagnosing allergic airway inflammation
A technology for airway inflammation and allergic rhinitis, applied in the field of biomedicine
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Embodiment 1
[0048] Example 1 Real Time PCR Detection of Changes in the Expression of Target Genes in Blood Samples of Patients with Allergic Rhinitis-Asthma Syndrome
[0049] 1. Purpose of the experiment
[0050] The SYBR GreenⅠReal Time PCR method was used to detect the changes of lncRNA transcription level of the target gene in the blood samples of patients with allergic rhinitis-asthma syndrome.
[0051] 2. Experimental materials
[0052] 1. Sample Checklist
[0053] In this study, 20 patients with allergic rhinitis-asthma syndrome and 20 normal subjects were recruited. The clinical information is shown in Table 1. Blood samples were collected for analysis and research.
[0054] Table 1 Basic clinical information of the people involved in this study
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[0057] 2. Experimental main reagents
[0058] Table 2 List of Reagents Used
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[0060] 3. The main instruments of the experiment
[0061] Table 3 List of instruments used
[0062] equipme...
Embodiment 2
[0119] Example 2 Verification of diagnostic efficacy of OVCH1-AS1
[0120] Receiver operating curve (ROC) was drawn by SPSS software, AUC value, sensitivity and specificity were analyzed, and the diagnostic efficacy of the indicators alone was judged.
[0121] As shown in Table 9, Figure 5 As shown, OVCH1-AS1 has a high diagnostic efficiency (AUC value 0.705, sensitivity value 1.000, specificity value 0.500), suggesting that OVCH1-AS1 can be used to diagnose allergic rhinitis-asthma syndrome.
[0122] Table 9 The area under the ROC curve
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