切换至 "中华医学电子期刊资源库"

中华肺部疾病杂志(电子版) ›› 2019, Vol. 12 ›› Issue (02) : 215 -217. doi: 10.3877/cma.j.issn.1674-6902.2019.02.020

所属专题: 文献

短篇论著

脂多糖和维甲酸相关孤儿受体α在胸腔积液中的含量及临床意义
杨帆1, 沈甜2, 龚凌雁1, 邱青3, 王琳3, 施军卫3   
  1. 1. 226001 江苏,南通市第六人民医院 ICU
    2. 226001 江苏,南通市第六人民医院检验科
    3. 226001 江苏,南通市第六人民医院结核科
  • 收稿日期:2018-09-25 出版日期:2019-04-20
  • 基金资助:
    南通市市级科技计划(YYZ16008); 南通市卫计委青年医学人才科研基金(WQ2016005)

Effect of lipopolysaccharide and retinoic acid-associated orphan receptor alpha on pleural effusion

Fan Yang1, Tian Shen2, Lingyan Gong1   

  • Received:2018-09-25 Published:2019-04-20
引用本文:

杨帆, 沈甜, 龚凌雁, 邱青, 王琳, 施军卫. 脂多糖和维甲酸相关孤儿受体α在胸腔积液中的含量及临床意义[J]. 中华肺部疾病杂志(电子版), 2019, 12(02): 215-217.

Fan Yang, Tian Shen, Lingyan Gong. Effect of lipopolysaccharide and retinoic acid-associated orphan receptor alpha on pleural effusion[J]. Chinese Journal of Lung Diseases(Electronic Edition), 2019, 12(02): 215-217.

图1 两组患者胸腔积液中LPS的含量比较
图2 两组患者胸腔积液中RORA的含量比较
图3 两组患者胸腔积液中LPS和RORα的含量相关性比较
1
Porcel JM, Light RW. Pleural effusions[J]. Dis Mon, 2013, 59(2):29-57.
2
Ebata T, Okuma Y, Nakahara Y, et al. Retrospective analysis of unknown primary cancers with malignant pleural effusion at initial diagnosis[J]. Thorac Cancer, 2016, 7(1):39-43.
3
Clive AO, Kahan BC, Hooper CE, et al. Predicting survival in malignant pleural effusion: development and validation of the LENT prognostic score[J]. Thorax, 2014, 69(12):1098-1104.
4
中华医学会结核病学分会. 肺结核诊断与治疗指南[D]. 中国实用乡村医生杂志,2013, 20(2): 7-11.
5
Porcel JM. Tuberculous pleural effusion[J]. Lung, 2009, 187(5):263-270.
6
Light RW. Pleural effusions[J]. Med Clin North Am, 2011, 95(6):1055-1070.
7
Light RW. Update on tuberculous pleural effusion[J]. Respirology, 2010, 15(3):451-458.
8
Marchi E, Vargas FS, Acencio MM, et al. Proinflammatory and antiinflammatory cytokine levels in complicated and noncomplicated parapneumonic pleural effusions[J]. Chest, 2012, 141(1):183-189.
9
Akarsu S, Kurt AN, Dogan Y, et al. The differential diagnostic values of cytokine levels in pleural effusions[J]. Mediators Inflamm, 2005, 2005(1):2-8.
10
Caramori G, Lasagna L, Casalini AG, et al. Immune response to Mycobacterium tuberculosis infection in the parietal pleura of patients with tuberculous pleurisy[J]. PLoS One, 2011, 6(7):e22637.
11
Naumnik W, Naumnik B, Niewiarowska K, et al. Novel cytokines: IL-27, IL-29, IL-31 and IL-33. Can they be useful in clinical practice at the time diagnosis of lung cancer?[J]. Exp Oncol, 2012, 34(4):348-353.
12
Nepal AK, Gyawali N, Poudel B, et al. Adenosine deaminase in CSF and pleural fluid for diagnosis of tubercular meningitis and pulmonary tuberculosis[J]. Nepal Med Coll J, 2012, 14(4):275-277.
13
da Silva CT Jr, Behrsin RF, Cardoso GP, et al. Evaluation of adenosine deaminase activity for the diagnosis of pleural TB in lymphocytic pleural effusions[J]. Biomark Med, 2013, 7(1):113-118.
14
Keng LT, Shu CC, Chen JY, et al. Evaluating pleural ADA, ADA2,IFN-gamma and IGRA for diagnosing tuberculous pleurisy[J]. J Infect, 2013, 67(4):294-302.
15
Porcel JM, Light RW. Pleural effusions[J]. Dis Mon, 2013, 59(2):29-57.
16
Islam A, Hossain MA, Paul SK, et al. Role of adenosine deaminase in diagnosis of tubercular pleural effusion[J]. Mymensingh Med J, 2014, 23(1):24-27.
17
Shu CC, Wang JY, Hsu CL, et al. Diagnostic role of inflammatory and anti-inflammatory cytokines and effector molecules of cytotoxic T lymphocytes in tuberculous pleural effusion[J]. Respirology, 2015, 20(1):147-154.
18
Porcel JM, Vives M, Cao G, et al. Biomarkers of infection for the differential diagnosis of pleural effusions[J]. Eur Respir J, 2009, 34(6):1383-1389.
19
Porcel JM, Esquerda A, Bielsa S. Diagnostic performance of adenosine deaminase activity in pleural fluid: a single-center experience with over 2100 consecutive patients[J]. EUR J INTERN MED, 2010, 21(5):419-423.
20
Jiang J, Shi H Z, Liang Q L, et al. Diagnostic value of interferon-gamma in tuberculous pleurisy: a metaanalysis[J]. Chest, 2007, 131(4):1133-1141.
21
Jaradat M, Stapleton C, Tilley S L, et al. Modulatory role for retinoid-related orphan receptor alpha in allergen-induced lung inflammation[J]. Am J Respir Crit Care Med, 2006, 174(12):1299-1309.
22
Esposito DL, Bollela VR, Feitosa AL, et al. Expression Profiles of Cytokine mRNAs in the Pleural Fluid Reveal Differences Among Tuberculosis, Malignancies, and Pneumonia-Exudative Pleural Effusions[J]. Lung, 2015, 193(6):1001-1007.
23
Jeon D. Tuberculous pleurisy: an update[J]. Tuberc Respir Dis (Seoul), 2014, 76(4):153-159.
24
Caramori G, Lasagna L, Casalini AG, et al. Immune response to Mycobacterium tuberculosis infection in the parietal pleura of patients with tuberculous pleurisy[J]. PLoS One, 2011, 6(7):e22637.
25
Shu CC, Wang JY, Hsu CL, et al. Diagnostic role of inflammatory and anti-inflammatory cytokines and effector molecules of cytotoxic T lymphocytes in tuberculous pleural effusion[J]. Respirology, 2015, 20(1):147-154.
26
Ye ZJ, Zhou Q, Yuan ML, et al. Differentiation and recruitment of IL-22-producing helper T cells stimulated by pleural mesothelial cells in tuberculous pleurisy[J]. Am J Respir Crit Care Med, 2012, 185(6):660-669.
27
Yang WB, Liang QL, Ye ZJ, et al. Cell origins and diagnostic accuracy of interleukin 27 in pleural effusions[J]. PLoS One, 2012, 7(7):e40450.
[1] 乔莉, 赵超, 孙昊, 陈洁, 王军, 张劲松. 参附注射液对脂多糖所致肺泡细胞损伤的保护作用[J]. 中华危重症医学杂志(电子版), 2021, 14(05): 362-367.
[2] 邓健, 王少华, 陈尊, 邹振庄. Keap1/Nrf2信号通路在脂多糖诱导宫内感染致新生鼠支气管肺发育不良的作用机制[J]. 中华妇幼临床医学杂志(电子版), 2023, 19(06): 665-674.
[3] 王国新, 罗宝宁, 马友才, 陈俊岭. α-防御素和脂多糖对老年髋关节置换术后假体周围感染和无菌性松动的预测价值[J]. 中华实验和临床感染病杂志(电子版), 2020, 14(02): 144-149.
[4] 徐燕群, 李平, 杨兴, 薛慧. 脂多糖通过促进透明质酸受体CD44向核转移介导牙周膜细胞白细胞介素6释放[J]. 中华口腔医学研究杂志(电子版), 2023, 17(05): 335-344.
[5] 李玉娟, 艾芳, 熊欢庆, 陈键, 刘刚, 李志超, 金发光. "丹蛇"组方对小鼠急性肺损伤的治疗作用[J]. 中华肺部疾病杂志(电子版), 2024, 17(02): 171-177.
[6] 席素雅, 商焕霞, 贺向红, 张玲, 郑立恒, 乔庆哲, 刘薇. IL-27、IFN-γ、IGRA、ADA在结核性胸腔积液中的表达[J]. 中华肺部疾病杂志(电子版), 2023, 16(05): 664-666.
[7] 李埝, 赵建军, 张建勇, 赵睿桢. hAMSCs调控MAPK信号通路对急性肺损伤AQP1的影响[J]. 中华肺部疾病杂志(电子版), 2023, 16(02): 156-163.
[8] 周红梅, 马想明, 史亚鹏, 金发光. 中西医结合辩证论治恶性胸腔积液再认识[J]. 中华肺部疾病杂志(电子版), 2020, 13(02): 271-277.
[9] 岳影星, 杨舟鑫, 卢艳, 严静. 脂多糖调控对大鼠心脏微血管内皮细胞的转录组分析[J]. 中华细胞与干细胞杂志(电子版), 2020, 10(06): 328-335.
[10] 梅亚波, 张万巧, 陈冲, 韩涛, 封志纯. 人脐带间充质干细胞对脂多糖活化的小胶质细胞BV-2表型的影响[J]. 中华细胞与干细胞杂志(电子版), 2020, 10(04): 213-218.
[11] 郑啟发, 李华, 袁泽南, 叶林森, 朱曙光, 夏龙. 脂多糖诱导小鼠肝癌YAP表达及其调控巨噬细胞极化的研究[J]. 中华肝脏外科手术学电子杂志, 2020, 09(03): 283-288.
[12] 张紫薇, 卢弘. 脂多糖受体复合体在急性前葡萄膜炎虹膜色素上皮细胞中作用的研究进展[J]. 中华眼科医学杂志(电子版), 2023, 13(03): 167-171.
[13] 张大涯, 陈世锔, 陈润祥, 张晓冬, 李达, 白飞虎. 肠道微生物群对代谢相关脂肪性肝病发展的影响[J]. 中华临床医师杂志(电子版), 2023, 17(07): 828-833.
[14] 苏程程, 马永强, 郎胜坤, 刘斌, 魏路清, 姬文婕. 盐皮质受体对脂多糖诱导的巨噬细胞NOD样受体热蛋白结构域相关蛋白3炎症复合体激活的作用及其机制[J]. 中华临床医师杂志(电子版), 2022, 16(05): 447-451.
[15] 李正达, 张艳兵, 刘茂霞, 李玉芳, 杨新静. 艾司洛尔对脓毒症肠损伤的保护作用及对自噬蛋白AMPK表达水平的影响[J]. 中华卫生应急电子杂志, 2023, 09(02): 90-95.
阅读次数
全文


摘要