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China Tropical Medicine ; (12): 136-2023.
Artigo em Chinês | WPRIM | ID: wpr-979605

RESUMO

@#Abstract: Objective To investigate the prevalence and pathogenic characteristics of Yersinia enterocolitica infection in children with diarrhea under 5 years of age in western Yunnan, and to provide a basis for the prevention and treatment of infectious diarrhea in children. Methods Feces were collected from under five-year-old children with diarrhea in the First Affiliated Hospital of Dali University from 2020 to 2021. Clinical information of the cases was also collected. Yersinia enterocolitica was isolated from the samples after cold enrichment on selective culture plates, and the pathogenic characteristics of Yersinia enterocolitica were analyzed by biological type and serotype and virulence gene detection. Results A total of 397 feces were collected. Seven strains of Yersinia enterocolitica were isolated in three samples, and the prevalence of Yersinia enterocolitica infection was 0.76% (3/397). Among the three positive samples, two Yersinia frederiksenii or Yersinia intermedia were isolated in specimen No. 212 , and five Yersinia enterocolitica were detected in specimens No. 24 and 226. Two Yersinia enterocolitica isolated from one sample were biological type 1A, and the virulence gene test results were ail-/ystA-/ ystB+ /yadA-/virF-, which were non-pathogenic Yersinia enterocolitica. Three Yersinia enterocolitica isolated from the other sample were biological type 3, serotype O∶3 (rfbc+), and virulence gene detection results were ail+/ystA+/ystB-/yadA+ /virF+, which were pathogenic Yersinia enterocolitica. While pathogenic Yersinia enterocolitica was detected from feces of children with diarrhea at 11 months of age with a infection rate of 0.50%(2/397). Conclusion Sporadic infection of pathogenic Yersinia enterocolitica was found in under five-year-old children in western Yunnan Province. It is necessary to strengthen the monitoring and research of Yersinia enterocolitica.

2.
Chinese Journal of Cancer Biotherapy ; (6): 328-332, 2019.
Artigo em Chinês | WPRIM | ID: wpr-793122

RESUMO

@# Objective: To explore the mechanism of long non-coding RNA POU3F3 (lncRNAPOU3F3) affecting temozolomide (TMZ)-resistance in high-grade glioma cells via regulating MGMT expression. Methods: Sixty cases of tissues from patients treated at the Department of Neurosurgery, Peking University International Hospital during January 2016 and January 2018 were collected for this study, including 12 cases from brain trauma patients (normal group), 30 cases from primary high-grade glioma patients (primary onset group) and 18 cases from recurrent high-grade glioma patients (recurrence group, accepted surgery+TMZ already). U251 cells were induced with TMZ at the concentration of 1, 2, 4 and 8 μg/ml and maintained normal growth for a week to construct TMZ-resistant U251cell line (U251 TMZ-resistance, U251-TR); and the normal control group was treated with equal volume of physiological saline. Reverse transcription polymerase chain reaction (qPCR) and Wb were used to detect the mRNA and protein expressions of POU3F3 and MGMT (methylguanine DNA methyltransferase) in normal brain tissues and glioma cells. Lentivirus transfection was used to construct U251 cell line with stable POU3F3 interference (U251-TR siPOU3F3); CCK-8 was used to detect TMZ IC50 value (the half maximal inhibitory concentration) in each group of U251 cells, and Wb was used to detect the expression of MGMT protein in each group of cells. Results: Compared with the normal group and primaryonset group, the expression of POU3F3 in recurrence group was significantly increased (P<0.01). The TMZ IC50 of U251-TR cells was significantly higher than that of U251 cells (P<0.01), and The TMZ IC50 of U251-TR siPOU3F3 cells was significantly lower than that of U251-TR cellsbut higher than that of U251 cells (all P<0.01). The protein and mRNA expressions of POU3F3 and MGMT in U251-TR cells were significantly higher than that in U251 cells (P<0.01), while those expressions in U251-TR siPOU3F3 cells were significantly lower than those in U251-TR cells (P<0.01).Conclusion: lncRNAPOU3F3 is the key factor to promote TMZ resistance in human high-grade gliomas cells, which may exert certain guiding significance in the clinical treatment for TMZ resistance.

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