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) ›› 2022, Vol. 15 ›› Issue (01) : 112 -115. doi: 10.3877/cma.j.issn.1674-6902.2022.01.034

综述

阻塞性睡眠呼吸暂停低通气综合征相关血清学的研究进展
王耕桐1, 冯喜英2, 刘洪千2, 赵玲莉3,()   
  1. 1. 810000 西宁,青海大学
    2. 810000 西宁,青海大学附属医院呼吸与危重症学科
    3. 810000 西宁,青海大学附属医院检验科
  • 收稿日期:2021-10-23 出版日期:2022-02-25
  • 通信作者: 赵玲莉
  • 基金资助:
    青海大学附属医院中青年科研基金一般项目(ASRF-2017-YB-12)

Research progress in serology related to obstructive sleep apnea hypopnea syndrome

Gengtong Wang1, Xiying Feng2, Hongqian Liu2   

  • Received:2021-10-23 Published:2022-02-25
引用本文:

王耕桐, 冯喜英, 刘洪千, 赵玲莉. 阻塞性睡眠呼吸暂停低通气综合征相关血清学的研究进展[J]. 中华肺部疾病杂志(电子版), 2022, 15(01): 112-115.

Gengtong Wang, Xiying Feng, Hongqian Liu. Research progress in serology related to obstructive sleep apnea hypopnea syndrome[J]. Chinese Journal of Lung Diseases(Electronic Edition), 2022, 15(01): 112-115.

1
王 玮. 无创通气是睡眠呼吸暂停低通气的首选和主要治疗手段[J/CD]. 中华肺部疾病杂志(电子版), 2014, 7(6): 614-616.
2
朱 悦,董佳慧,孙耕耘. 阻塞性睡眠呼吸暂停低通气综合征患者无创呼吸机治疗进展[J/CD]. 中华肺部疾病杂志(电子版), 2019, 12(2): 233-236.
3
Gautier-veyret E, Van Noolen L, Levy P, et al. Could the thromboxane A2 pathway be a therapeutic target for the treatment of obstructive sleep apnea-induced atherosclerosis? [J]. Prostaglandins Other Lipid Mediat, 2015, 121(Pt A): 97-104.
4
Rahangdale S, Yeh SY, Novack V, et al. The influence of intermittent hypoxemia on platelet activation in obese patients with obstructive asleep apnea[J]. J Clin Sleep Med, 2011, 7(2): 172-178.
5
Chu SG, Becker RC, Berger PB, et al. Mean platelet volume as a predictor of cardiovascular risk: a systematic review and meta-analysis [J]. J Thromb Haemost, 2010, 8(1): 148-156.
6
Sokucu SN, Ozdemir C, Dalar L, et al. Is mean platelet volume really a severity marker for obstructive sleep apnea syndrome without comorbidities? [J]. Pulm Med, 2014, 2014: 754839.
7
Pan QX, Su ZJ, Zhang JH, et al. A comparison of the prognostic value of preoperative inflammation-based scores and TNM stage in patients with gastric cancer.[J]. Onco Targets Ther, 2015, 8: 1375-1385.
8
Al-halawani M, Naik S, Chan M, et al. Neutrophil-to-lymphocyte ratio decreases in obstructive sleep apnea treated with mandibular advancement devices [J]. Sleep Breath, 2018, 22(4): 989-995.
9
Oyama JI, Nagatomo D, Yoshioka G, et al. The relationship between neutrophil to lymphocyte ratio, endothelial function, and severity in patients with obstructive sleep apnea[J]. J Cardiol, 2016, 67(3): 295-302.
10
Sunbul M, Sunbul EA, Kanar B, et al. The association of neutrophil to lymphocyte ratio with presence and severity of obstructive sleep apnea[J]. Bratislavske Lekarske Listy, 2015, 116(11): 659-661.
11
Kassi E, Adamopoulos C, Basdra EK, et al. Role of vitamin D in atherosclerosis[J]. Circulat, 2013, 128(23): 2517-2531.
12
Mete T, Yalcin Y, Berker D, et al. Obstructive sleep apnea syndrome and its association with vitamin D deficiency [J]. J Endocrinol Invest, 2013, 36(9): 681-685.
13
Kerley CP, Hutchinson K, Bolger K, et al. Serum vitamin D is significantly inversely associated with disease severity in caucasian adults with obstructive sleep apnea syndrome [J]. Sleep, 2016, 39(2): 293-300.
14
Mete T, Yalcin Y, Berker D, et al. Obstructive sleep apnea syndrome and its association with vitamin D deficiency [J]. J Endocrinol Invest, 2013, 36(9): 681-685.
15
Kerley CP, Hutchinson K, Bramham J, et al. Vitamin D improves selected metabolic parameters but not neuropsychological or quality of life indices in OSA: A pilot study [J]. J Clin Sleep Med, 2017, 13(1): 19-26.
16
Mazur A, Maier JAM, Rock E, et al. Magnesium and the inflammatory response: potential physiopathological implications.[J]. Arch Biochem Biophys, 2007, 458(1): 48-56.
17
Karamanli H, Kizilirmak D, Akgedik R, et al. Serum levels of magnesium and their relationship with CRP in patients with OSA [J]. Sleep Breath, 2017, 21(2): 549-556.
18
de Baaij Jeroen HF, Hoenderop Joost GJ, Bindels René JM. Magnesium in man: implications for health and disease[J]. Physiol Rev, 2015, 95(1): 1-46.
19
Sunnetcioglu A, Alp HH, Sertogillarindan B, et al. Evaluation of oxidative damage and antioxidant mechanisms in COPD, lung cancer, and obstructive sleep apnea syndrome [J]. Respir Care, 2016, 61(2): 205-211.
20
Ye L, Qian Y, Li Q, et al. Serum romo1 is significantly associated with disease severity in patients with obstructive sleep apnea syndrome [J]. Sleep Breath, 2018, 22(3): 743-748.
21
陈长强,顾志冬,樊绮诗. 血清淀粉样蛋白A在疾病应用中的研究进展[J]. 检验医学2012, 27(9): 82-85.
22
Svatikova A, Wolk R, Shamsuzzaman AS, et al. Serum amyloid a in obstructive asleep apnea [J]. Circulation, 2003, 108(12): 1451-1454.
23
刘仲仲,段康丽,吴松笛. 血清S100B蛋白的检测方法综述[J]. 实验与检验医学2016, 34(4): 461-465.
24
Vince Rebecca V, Chrismas Bryna, Midgley Adrian W, et al. Hypoxia mediated release of endothelial microparticles and increased association of S100A12 with circulating neutrophils[J]. Oxid Med Cell Longev, 2009, 2(1): 2-6.
25
Donato R. Intracellular and extracellular roles of S100 proteins [J]. Microsc Res Tech, 2003, 60(6): 540-551.
26
Demirci Saglam G, Zamani A, Yosunkaya S, et al. Serum S100A12 and S100B proteins are independent predictors of the presence and severity of obstructive sleep apnea [J]. Turk J Med Sci, 2019, 49(3): 746-754.
27
Oh-I Shinsuke, Shimizu Hiroyuki, Satoh Tetsurou, et al. Identification of nesfatin-1 as a satiety molecule in the hypothalamus[J]. Nature, 2006, 443(7112): 709-712.
28
Leivo-Korpela Sirpa, Lehtimäki Lauri, Hämälainen Mari, et al. Adipokines NUCB2/nesfatin-1 and visfatin as novel inflammatory factors in chronic obstructive pulmonary disease [J]. Mediators Inflamm, 2014, 2014, 232167.
29
Araz Omer, Ucar Elif Yilmazel, Dorman Emrullah, et al. Is There a relationship between obstructive sleep apnea syndrome severity and nesfatin-1? [J]. Respirat, 2015, 90(2): 105-110.
30
Tomas G. Hepcidin and iron regulation, 10 years later [J]. Blood, 2011, 117(17): 4425-4433.
31
Alberto P, Stefania G, Raffaella M, et al. Modulation of hepcidin production during hypoxia-induced erythropoiesis in humans in vivo: data from the HIGHCARE project[J]. Blood, 2011, 117(10): 2953-2959.
32
Leida T, Ilza S. Iron metabolism: current facts and future directions[J]. Biochemia Medica, 2012, 22(3): 311-328.
33
Le Tallec-Estève Noémie, R Chloé, D Benoit, et al. Transferrin saturation is independently associated with the severity of obstructive sleep apnea syndrome and hypoxia among obese subjects [J]. Clin Nutr, 2021, 40(2): 608-614.
34
Berryman DE, Glad CAM, List EO, et al. The GH/IGF-1 axis in obesity: pathophysiology and therapeutic considerations.[J]. Nat Rev Endocrinol, 2013, 9(6): 346.
35
Wang X, Wang YF, Cai ZC, et al. Alterations of IGF-1, complement C3 and superoxide dismutase in patients with moderate-to-severe obstructive sleep apnea hypopnea syndrome[J]. Biomark Med, 2018, 12(3): 217-228.
36
David G, Leila KG, Alba C, et al. Obstructive sleep apnea and obesity are associated with reduced GPR 120 plasma levels in children[J]. Sleep, 2014, 37(5): 935-941.
37
Giorgio Z, Federica C, Fleur B, et al. Osteoprotegerin increases leukocyte adhesion to endothelial cells both in vitro and in vivo[J]. Blood, 2007, 110(2): 536-543.
38
Marshall NS, Wong KK, Liu PY, et al. Sleep apnea as an independent risk factor for all-cause mortality: the Busselton Health Study [J]. Sleep, 2008, 31(8): 1079-1085.
39
Wen WW, Ning Y, Zhang Q, et al. TNFRSF11B: A potential plasma biomarker for diagnosis of obstructive sleep apnea [J]. Clin Chim Acta, 2019, 490: 39-45.
40
Suleyman A, Tuncay K, Suna A, et al. Expression of adropin in rat brain, cerebellum, kidneys, heart, liver, and pancreas in streptozotocin-induced diabetes [J]. Mol Cell Biochem, 2013, 380(1-2): 73-81.
41
Xavier C, Vera B. Chronic inflammatory diseases and endothelial dysfunction [J]. Aging Dis, 2016, 7(1): 81-89.
42
Fan ZW, Zhang Y, Zou FF, et al. Serum adropin level is associated with endothelial dysfunction in patients with obstructive sleep apnea and hypopnea syndrome [J]. Sleep Breath, 2021, 25(1): 117-123.
43
Nitish RM. Catestatin is a novel endogenous peptide that regulates cardiac function and blood pressure [J]. Cardiovasc Res, 2008, 80(3): 330-338.
44
Josip AB, Zoran D, Daniela SD, et al. Catestatin serum levels are increased in male patients with obstructive sleep apnea[J]. Sleep Breath, 2019, 23(2): 473-481.
[1] 高建松, 陈晓晓, 冯婷, 包剑锋, 魏淑芳, 潘林. 基于超声瞬时弹性成像的多参数决策树模型评估慢性乙型肝炎患者肝纤维化等级[J]. 中华医学超声杂志(电子版), 2023, 20(09): 923-929.
[2] 刘轩瑶, 赵晓曦. 孕妇常见产前筛查指标单独及联合检测对胎儿染色体异常的预测价值[J]. 中华妇幼临床医学杂志(电子版), 2023, 19(06): 657-664.
[3] 张禾璇, 宋咏刚, 杨雪. 孕妇无创产前检测结果的大样本分析[J]. 中华妇幼临床医学杂志(电子版), 2022, 18(06): 685-691.
[4] 魏瑗, 罗红. 子宫动脉血流参数及血清学指标分别对早期先兆流产孕妇的预测价值[J]. 中华妇幼临床医学杂志(电子版), 2022, 18(01): 111-119.
[5] 谢良玉, 王和, 赵小文, 张迅, 张雪梅, 刘洪倩, 祝茜, 王婧, 胡婷, 张竹, 赖怡, 秦利, 刘珊玲. 中孕期胎儿染色体异常高危孕妇羊水细胞胎儿染色体核型及介入性产前诊断指征的大样本分析[J]. 中华妇幼临床医学杂志(电子版), 2022, 18(01): 73-79.
[6] 平彤彤, 张艳平, 高敏, 杨丽. OSAHS患者NGB、AOPP及多导睡眠监测指标与认知损伤关系[J]. 中华肺部疾病杂志(电子版), 2023, 16(03): 409-411.
[7] 王晶, 陈曦, 孙宁, 宋羽. COPD合并阻塞性睡眠呼吸暂停低通气综合征的临床分析[J]. 中华肺部疾病杂志(电子版), 2022, 15(06): 819-821.
[8] 张童, 魏丽娟, 严梅. 乙酰半胱氨酸联合Auto-CPAP治疗OSAHS的临床分析[J]. 中华肺部疾病杂志(电子版), 2022, 15(05): 703-705.
[9] 史方海, 陈忠仁. CPAP对阻塞性睡眠呼吸暂停低通气综合征患者认知功能及AHI、LSaO2的影响[J]. 中华肺部疾病杂志(电子版), 2022, 15(04): 539-541.
[10] 要丹丹, 陈会娟, 南雨杰. 2D-STE评价OSAS患者心功能指标与疾病严重程度的分析[J]. 中华肺部疾病杂志(电子版), 2022, 15(03): 358-360.
[11] 葛俊苗, 孙季冬, 高翔宇, 廖丹, 张昊阜子, 杨二万, 田志成, 蒋晓帆, 罗鹏. 血清S-100B对轻型颅脑损伤诊断价值的系统评价和Meta分析[J]. 中华神经创伤外科电子杂志, 2022, 08(04): 209-217.
[12] 辛彩焕, 熊辉. 非疫区36例布鲁菌病患者的临床特征及诊疗分析[J]. 中华临床医师杂志(电子版), 2023, 17(09): 927-931.
[13] 陶莹, 李晓光, 朱桃红, 杨彦, 陈琦. Westgard西格玛规则在中孕期母血清学产前筛查质量管理中的应用[J]. 中华临床实验室管理电子杂志, 2024, 12(02): 65-69.
[14] 韦婕, 何灿萍. 十项血清标志物在胃癌诊疗中的应用价值[J]. 中华临床实验室管理电子杂志, 2022, 10(04): 233-237.
[15] 郭彬焰, 褚衍六. 胃癌分期评估模型的研究现状与展望[J]. 中华胃肠内镜电子杂志, 2024, 11(02): 120-122.
阅读次数
全文


摘要