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1.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 670-674, 2022.
Artigo em Chinês | WPRIM | ID: wpr-929521

RESUMO

@#Early childhood caries (ECC) is not only harmful to children's oral cavity and even the whole body, the government and relevant health departments pay more and more attention to the prevention and treatment of early childhood caries. However, at present, the primary treatment for ECC is the traditional filling therapy. The chronic disease management model can conduct regular testing of chronic non-communicable diseases and their risk factors, and provide long-term and effective professional management to patients by supervision and advice by doctors, nurses and pharmacists. This model has a good effect on slowing down the development of the disease, improving the quality of life of patients and saving public health resources. As a common chronic non-communicable disease, ECC is very suitable for prevention and treatment through chronic disease management. In recent years, chronic disease management models have also been increasingly used in the management of caries. The current common chronic disease management models include the chronic care model, innovative care for chronic condition, and British chronic disease management system models. And above models have certain applications in the management of ECC. How to establish the caries risk assessment system suitable for the diagnosis and treatment model of our country, and how to screen the children with high risk of caries by step-by-step prevention and control network for personalized prevention needed to be further studied in the future.

2.
Chinese Journal of School Health ; (12): 1816-1819, 2021.
Artigo em Chinês | WPRIM | ID: wpr-906812

RESUMO

Objective@#To investigate and explore the changes of the diagnosis of Chinese children with autism spectrum disorder (ASD).@*Methods@#The families of two groups of children aged 1-6 and 6-16 years who were diagnosed with ASD were selected from ALSOLIFE platform, and the online questionnaire was used to investigate the symptoms and its diagnosis related information. ANOVA was applied to compare the mean values, and χ 2 analysis was taken to compare the differences of two groups in the time of finding symptoms, the time of the first diagnosis, the time of treatment, and the diagnosis delayment.@*Results@#The initial recognition age of symptoms was 26.05 months age (2.17 years) in the young group (1-6 years), and 30.76 months age (2.56 years) in the old group (6-16 years). The age of first visit doctor was 28.21 months age (2.35 years) in the young group and 34.29 months (2.86 years) in the old group, while the average delay was only 3.43 months, of which the average delay was 4.52 months in the old group and 2.78 months in the young group. The age of diagnosed as ASD was 38.01 months age (3.17 years) in the young group and 31.07 months age (2.59 years) in the old group, while the average delay from first diagnosis to last diagnosis was 3.16 months. The delay from first diagnosis to last one was 3.71 months age in old age group, and 2.83 for the younger age group, The above differences were statistically significant ( F =328.30, 535.64, 507.71, 103.03, 17.79, P <0.01). Most of the children were still in the top hospitals to get diagnosed, but the role of child care was becoming more and more important.@*Conclusion@#The diagnosis efficiency of ASD children has been greatly improved, the time of symptom identification and diagnosis is advanced, and the delay of seeing a doctor and diagnosis is shortened.

3.
Artigo | IMSEAR | ID: sea-188638

RESUMO

Background: Cucumber target leaf spot (TLS), caused by Corynespora cassiicola (C. Cassiicola), is a serious disease in cucumber (Cucumis sativus) production worldwide. Therefore, cultivating new varieties of TLS resistance of C. sativus is an important goal of cucumber breeding. Previous studies have shown that subtilisin-like protease (SUBP) plays an important role in response to C. Cassiicola infection in resistant plants. Objective: In this study, the full-length cDNA of the CsSUBP gene was cloned, and the prokaryotic expression vector was successfully constructed in order to study the effects of subtilisin. Futhermore, vital clues regarding CsSUBP gene involved in TLS resistance of C. sativus are gained from the bioinformatics assay. Method: The CsSUBP gene was identified by sequencing with the intermediate vector pMD18 by designing specific primers and PCR amplification techniques. The prokaryotic expression vector pET30a-CsSUBP was further constructed and identified by colony PCR and EcoR V and SalⅠ double digestion. Result: The primary structure of CsSUBP was predicted and analyzed by bioinformatics analysis. The results showed that CsSUBP was weakly acidic protein, N-terminal signal peptide region, including a Inhibitor_I9 domain domain. Conclusion: The pET30a-CsSUBP prokaryotic expression vector was constructed successfully. This study is convenient for the study of prokaryotic expression and its kinase activity.

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