Objectives: To investigate and summarize the clinical and genetic characteristics of Chinese cystic fibrosis (CF) patients to improve clinicians' understanding and decrease the rates of misdiagnosis and missed diagnoses in China. Methods: The EMBASE, Cochrane Library, PubMed and SinoMed databases were searched for studies involving Chinese CF patients from January 1975 to August 2019. Results: In total, 113 Chinese patients, including 53 males and 60 females, were reported. Nineteen patients had a family history of CF. The median age at diagnosis was 8.7 years. Among Chinese CF patients, 70.8% had bronchiectasis, 9.7% had a hemoptysis history, 33.6% had clubbed fingers, 17.7% had allergic bronchopulmonary aspergillosis, and 29.2% had chronic diarrhea; the incidence of malnutrition was 52.2%. Five patients had jaundice, 26 patients had hepatomegaly, and 9 patients had meconium ileus in the neonatal period, and the incidence of liver cirrhosis was 5.3%. The predominant organism in airways was Pseudomonas aeruginosa, followed by Staphylococcus aureus. Seventy-nine patients underwent the sweat test, and all of them were positive, with an average chloride ion level of 122.2 mmol/L. Eighty-eight Chinese CF patients underwent genetic testing, and 74 CF transmembrane conductance regulator (CFTR) gene mutations were reported. The most common gene mutation was c.2909G→A. One Phe508del gene mutation was observed. Conclusion: The common clinical manifestations and CFTR gene mutations in Chinese CF patients are different from those in Caucasian patients. The age at CF diagnosis in China is relatively old, suggesting that the CF incidence in China may be seriously underestimated.
Objective
Exosomes, membranous nanovesicles, naturally bringing proteins, mRNAs, and microRNAs (miRNAs), play crucial roles in tumor pathogenesis. This study was to investigate the role of miR-155-3p from M2 macrophages-derived exosomes (M2-Exo) in promoting medulloblastoma (MB) progression by mediating WD repeat domain 82 (WDR82).
Methods
miR-155-3p expression was detected by RT-qPCR. The relationship of miR-155-3p with clinicopathological features of MB patients was analyzed. M2-Exo were isolated and identified by TEM, NTA and Western blot. CCK-8 assay, colony formation assay, flow cytometry, wound healing assay, and Transwell assay were performed to explore the role of miR-155-3p-enriched M2-Exo on the progression of MB cells. Luciferase assay were used to identify the relationship between miR-155-3p and WDR82. The effect of miR-155-3p-enriched M2-Exo on tumorigenesis of MB was confirmed by the xenograft nude mice model.
Results
miR-155-3p was up-regulated in MB tissues of patients and MB cell lines. High miR-155-3p expression was correlated with the pathological type and molecular subtype classification of MB patients. WDR82 was a direct target of miR-155-3p. miR-155-3p was packaged into M2-Exo. miR-155-3p-enriched M2-Exo promoted the progression of Daoy cells. miR-155-3p-enriched M2-Exo promoted in vivo tumorigenesis.
Conclusion
The study highlights that miR-155-3p-loaded M2-Exo enhances the growth of MB cells via down-regulating WDR82, which might provide a deep insight into MB mechanism.
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