|本期目录/Table of Contents|

[1]张诗田,张 达,牛文彦.肥胖患者炎性单核细胞Caspase活性的研究[J].天津医科大学学报,2017,23(02):138-141.
 ZHANG Shi-tian,ZHANG Da,NIU Wen-yan.Caspase activity of pro-inflammatory monocytes in obese patients[J].Journal of Tianjin Medical University,2017,23(02):138-141.
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肥胖患者炎性单核细胞Caspase活性的研究(PDF)
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《天津医科大学学报》[ISSN:1006-8147/CN:12-1259/R]

卷:
23卷
期数:
2017年02期
页码:
138-141
栏目:
临床医学
出版日期:
2017-03-20

文章信息/Info

Title:
Caspase activity of pro-inflammatory monocytes in obese patients
文章编号:
1006-8147(2017)02-0138-04
作者:
张诗田1张 达2牛文彦1
(1.天津医科大学免疫系,天津300070;2.天津医院超声科,天津300211)
Author(s):
ZHANG Shi-tian1 ZHANG Da2 NIU Wen-yan1
(1.Department of Immunology, Tianjin Medical University, Tianjin 300070, China; 2.Department of Ultrasound, Tianjin Hospital, Tianjin 300211, China)
关键词:
肥胖空腹血糖单核细胞Caspase
Keywords:
obese fast blood glucose monocyte Caspase
分类号:
R392.1
DOI:
-
文献标志码:
A
摘要:
目的:探讨外周血炎性单核细胞(CD14+CD16+)的Caspase活性与肥胖相关指标、空腹血糖(FBG)之间的相关性。方法:招募志愿者,测量身高、体质量、腰围,计算体质指数(BMI),血糖仪测定FBG。根据BMI分为3组:正常组、超重组、肥胖组。密度梯度离心提取外周血单个核细胞,流式细胞术检测CD14+CD16+单核细胞的数量以及细胞内Caspase活性。结果:肥胖组炎性单核细胞Caspase活性显著高于正常组和超重组,炎性单核细胞Caspase活性与BMI、腰围以及空腹血糖正相关。结论:肥胖和高空腹血糖可能在炎性单核细胞Caspase活性升高中发挥作用。
Abstract:
Objective: To explore the correlation between caspase activity of pro-inflammatory monocytes (CD14+CD16+) and obese parameters, fast blood glucose (FBG). Methods: Volunteers were recruited. Height, weight and waistline were measured and BMI was calculated. FBG was analyzed by glucometer. Volunteers were grouped based on BMI into normal group, overweight group, and obese group. Peripheral blood mononuclear cells were isolated by density gradient centrifugation. The number of CD14+CD16+ monocytes and the caspase activity in these cells were measured by flow cytometry. Results: Compared with normal and overweight groups, caspase activity of pro-inflammatory monocytes in obese group was significantly higher. Caspase activity of pro-inflammatory monocytes was positively correlated with BMI, waistline and FBG. Conclusion: Obesity and high fast blood glucose may play a role in the increase of caspase activity of pro-inflammatory monocytes.

参考文献/References:

[1] Kopelman PG. Obesity as a medical problem[J]. Nature, 2000, 404(6778):635.

[2] Stienstra R, van Diepen JA, Tack CJ, et al. Inflammasome is a central player in the induction of obesity and insulin resistance[J]. Proc Natl Acad Sci U S A, 2011, 108(37):15324.

[3] Ziegler-Heitbrock L. The CD14+ CD16+ blood monocytes: their role in infection and inflammation[J]. J Leukoc Biol, 2007, 81(3):584.

[4] Belge KU, Dayyani F, Horelt A, et al. The proinflammatory CD14+CD16+DR++ monocytes are a major source of TNF[J]. J Immunol, 2002, 168(7):3536.

[5] Passlick B, Flieger D, Ziegler-Heitbrock HW. Identification and characterization of a novel monocyte subpopulation in human peripheral blood[J]. Blood, 1989, 74(7):2527.

[6] Man SM, Kanneganti TD. Converging roles of caspases in inflammasome activation, cell death and innate immunity[J]. Nat Rev Immunol, 2016, 16(1):7.

[7] Finucane MM, Stevens GA, Cowan MJ, et al. National, regional, and global trends in body-mass index since 1980: systematic analysis of health examination surveys and epidemiological studies with 960 country-years and 9.1 million participants[J]. Lancet, 2011, 377(9765):557.

[8] Emerging Risk Factors C, Wormser D, Kaptoge S, et al. Separate and combined associations of body-mass index and abdominal adiposity with cardiovascular disease: collaborative analysis of 58 prospective studies[J]. Lancet, 2011, 377(9771):1085.

[9] Prospective Studies C, Whitlock G, Lewington S, et al. Body-mass index and cause-specific mortality in 900 000 adults: collaborative analyses of 57 prospective studies[J]. Lancet, 2009, 373(9669):1083.

[10] Donath MY, Shoelson SE. Type 2 diabetes as an inflammatory disease[J]. Nat Rev Immunol, 2011, 11(2):98.

[11] Weisberg SP, McCann D, Desai M, et al. Obesity is associated with macrophage accumulation in adipose tissue[J]. J Clin Invest, 2003, 112(12):1796.

[12] Winer DA, Winer S, Shen L, et al. B cells promote insulin resistance through modulation of T cells and production of pathogenic IgG antibodies[J]. Nat Med, 2011, 17(5):610.

[13] Talukdar S, Oh da Y, Bandyopadhyay G, et al. Neutrophils mediate insulin resistance in mice fed a high-fat diet through secreted elastase[J]. Nat Med, 2012, 18(9):1407.

[14] Nishimura S, Manabe I, Nagasaki M, et al. CD8+ effector T cells contribute to macrophage recruitment and adipose tissue inflammation in obesity[J]. Nat Med, 2009, 15(8):914.

[15] Rossol M, Kraus S, Pierer M, et al. The CD14(bright) CD16+ monocyte subset is expanded in rheumatoid arthritis and promotes expansion of the Th17 cell population[J]. Arthritis Rheum, 2012, 64(3):671.

[16] Wong KL, Tai JJ, Wong WC, et al. Gene expression profiling reveals the defining features of the classical, intermediate, and nonclassical human monocyte subsets[J]. Blood, 2011, 118(5):e16.

[17] Cros J, Cagnard N, Woollard K, et al. Human CD14dim monocytes patrol and sense nucleic acids and viruses via TLR7 and TLR8 receptors[J]. Immunity, 2010, 33(3):375.

[18] Skrzeczynska-Moncznik J, Bzowska M, Loseke S, et al. Peripheral blood CD14high CD16+ monocytes are main producers of IL-10[J]. Scand J Immunol, 2008, 67(2):152.

[19] Aachoui Y, Sagulenko V, Miao EA, et al. Inflammasome-mediated pyroptotic and apoptotic cell death, and defense against infection[J]. Curr Opin Microbiol, 2013, 16(3):319.

[20] Latz E, Xiao TS, Stutz A. Activation and regulation of the inflammasomes[J]. Nat Rev Immunol, 2013, 13(6):397.

[21] Kahn SE, Hull RL, Utzschneider KM. Mechanisms linking obesity to insulin resistance and type 2 diabetes[J]. Nature, 2006, 444(7121):840.

[22] Qin WD, Liu GL, Wang J, et al. Poly(ADP-ribose) polymerase 1 inhibition protects cardiomyocytes from inflammation and apoptosis in diabetic cardiomyopathy[J]. Oncotarget, 2016.

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备注/Memo

备注/Memo:
基金项目 ?国家自然科学基金资助 (81170740,81161120545);高等学校博士学科点专项基金资助 (20121202110014);天津市科委应用基础研究重点项目基金资助(15JCZDJC35500); 天津市卫计委重点攻关项目基金资助(15KG102

作者简介 ?张诗田(1990-),女,硕士在读,研究方向:免疫学;通信作者:牛文彦,E-mail:wniu@tmu.edu.cn。.



更新日期/Last Update: 2017-03-28