|
|
Predictive value of serum miR-126 and miR-138 levels in children with Mycoplasma pneumoniae pneumonia |
GE Wenwen XU Ting SONG Lei▲ |
Department of Pediatrics, Nantong First People’s Hospital, Jiangsu Province, Nantong 226014, China
|
|
|
Abstract Objective To study the predictive value of serum microRNA(miR)-126 and miR-138 levels in children with Mycoplasma pneumoniae pneumonia (MPP). Methods A total of 114 children with MPP from July 2020 to October 2022 in Department of Pediatrics, Nantong First People’s Hospital, Jiangsu Province were selected, and they were divided into good prognosis and poor prognosis according to the prognosis condition. The general data and clinical data including gender, age, fever time, severity of illness, blood routine indicators (white blood cell count [WBC], platelet count [PLT], erythrocyte sedimentation rate [ESR]), inflammatory factor indicators (interleukin-6 [IL-6], tumor necrosis factor-α [TNF-α], C-reactive protein [CRP]), and miR-126 and miR-138 were compared between two groups; the prognostic influencing factors of MPP children and the predictive value of miR-126 and miR-138 levels were analyzed. Results Among 114 children with MPP, 19 had poor prognosis after one course of treatment. The proportion of severe disease and the levels of WBC, PLT, IL-6, TNF-α, CRP, miR-126, and miR-138 in poor prognosis group were higher than those in good prognosis group (P<0.05); there were no significant differences in gender, age, fever time, and ESR between two groups (P>0.05). Severity of disease and the levels of WBC, TNF-α, CRP, miR-126, and miR-138 were the influencing factors for poor prognosis of MPP children (OR>1, P<0.05). The area under the curve of miR-126 and miR-138 levels predicted the prognosis of MPP children was higher than that detected by each indicator alone. Conclusion Serum miR-126 combined with miR-138 levels have a high prognostic value in MPP children.
|
|
|
|
|
[1] Tsai TA,Tsai CK,Kuo KC,et al. Rational stepwise approach for Mycoplasma pneumoniae pneumonia in children [J]. J Microbiol Immunol Infect,2021,54(4):557-565.
[2] Kutty PK,Jain S,Taylor TH,et al. Mycoplasma pneumoniae Among Children Hospitalized With Community-acquired Pneumonia [J]. Clin Infect Dis,2019,68(1):5-12.
[3] Lee YC,Chang CH,Lee WJ,et al. Altered chemokine profile in Refractory Mycoplasma pneumoniae pneumonia infected children [J]. J Microbiol Immunol Infect,2021,54(4):673- 679.
[4] Dai FF,Liu FQ,Chen X,et al. The treatment of macrolide-resistant Mycoplasma pneumoniae pneumonia in children [J]. J Clin Pharm Ther,2021,46(3):705-710.
[5] 刘虹,吴剑,李宏江,等.微小RNA在乳腺癌检测、治疗、耐药及预后中的研究进展[J].国际肿瘤学杂志,2020,47(12):756-760.
[6] 聂明月,叶红.宫颈病变中人乳头瘤病毒相关微小RNA的研究进展[J].中国计划生育和妇产科,2020,12(6):12-15.
[7] 许长娣,周瑶,赵德育,等.肺炎支原体肺炎患儿外周血及小鼠模型miRNAs差异表达[J].安徽医科大学学报,2018,53(4):567-570.
[8] 唐露,崔栋.急性期肺炎支原体肺炎患儿血清miR-138表达水平及其意义[J].医学临床研究,2022,39(5):747- 749.
[9] 中华医学会儿科学分会呼吸学组,《中华实用儿科临床杂志》编辑委员会.儿童肺炎支原体肺炎诊治专家共识(2015年版)[J].中华实用儿科临床杂志,2015,30(17):1304-1308.
[10] 国家卫生计生委合理用药专家委员会儿童用药专业组.中国儿童肺炎支原体感染实验室诊断规范和临床实践专家共识(2019年)[J].中华儿科杂志,2020,58(5):366- 373.
[11] Krafft C,Christy C. Mycoplasma Pneumonia in Children and Adolescents [J]. Pediatr Rev,2020,41(1):12-19.
[12] Chen J,Yin Y,Zhao L,et al. Mycoplasma pneumoniae infection prediction model for hospitalized community-acquired pneumonia children [J]. Pediatr Pulmonol,2021,56(12):4020-4028.
[13] 胡新.肺炎支原体肺炎患儿血浆D-二聚体表达与病情严重程度的相关性[J].中国当代医药,2021,28(30):113-115.
[14] 付玉林,董艳,李静.2018—2019年北京市儿童社区获得性肺炎的病原学分析及临床特点[J].中国医药科学,2022,12(8):126-129.
[15] 王雪琪,贺宝平,多红英,等.儿童难治性肺炎支原体肺炎合并心脏血栓2例并文献复习[J].中国临床研究,2021, 34(6):824-828.
[16] 董静,贾红彦,孙琦,等.结核性与恶性胸腔积液中微小核糖核酸内参基因筛选的初步研究[J].中国防痨杂志,2021,43(3):261-267.
[17] 夏凡,解梅,彭小东,等.基因间长链非编码RNA152靶向微小RNA-103a-3p对非小细胞肺癌细胞增殖和侵袭迁移的影响[J].临床肿瘤学杂志,2020,25(2):97-102.
[18] 张帆,李思洋,丁军颖,等.MicroRNA在呼吸系统炎性疾病中的研究进展[J].中国比较医学杂志,2021,31(8):108-114.
[19] 林润,李乐辉,吴国平,等.循环miR-126表达水平与脓毒症患者发生ARDS的风险及脓毒症严重程度和预后的关联[J].重庆医科大学学报,2020,45(11):1583-1588.
[20] 林波,陈鑫宇,金秋,等.脂肪间充质干细胞来源外泌体miR-126-3p对人脐静脉内皮细胞糖脂毒性的作用[J].中国组织工程研究,2022,26(30):4773-4779.
[21] 胡燕,王小妹.MicroRNA-126通过IRS-1/AKT/ERK调控CD4+T细胞功能的分子机制研究[J].重庆医学,2020,49(2):178-182.
[22] 李敏,王红艳,邵明阳.miR-138调控Akt/PI3K信号通路对缺氧缺糖诱导大鼠皮层神经细胞损伤的影响[J].中西医结合心脑血管病杂志,2021,19(21):3685-3690.
[23] 魏丽,连红梅,刘鹏,等.miR-138-5p靶向TCF4调节眼葡萄膜黑色素瘤细胞的恶性生物学行为[J].安徽医科大学学报,2021,56(6):887-893.
[24] 赵晓伟,王勇强,吴林波,等.微小核糖核酸-138和LIN52在结直肠癌中表达及其意义[J].中国临床药理学杂志,2020,36(3):289-292.
[25] 刘猛,张贵贤,赵朝,等.基于miR-138-5p/E2F3信号通路探讨柠檬苦素对人非小细胞肺癌H1299细胞生物学行为的影响[J].中国药师,2021,24(5):818-823.
[26] 郭涛,纪冬梅,李艳平,等.miR-138-5p靶向HIF-1α影响人白血病K562细胞增殖和侵袭转移[J].局解手术学杂志,2020,29(4):272-277.
[27] 王巧鸽,田露.宫颈癌组织微小RNA联合检测对宫颈癌1年生存率的预测价值[J].医学临床研究,2022,39(1):91-94.
[28] 杨季,彭波,李军,等.联合检测血清长链非编码RNA小核仁RNA宿主基因16和微小RNA-16-5p对胃癌的诊断价值[J].中国医药,2021,16(10):1475-1479. |
|
|
|