Clinical Focus ›› 2024, Vol. 39 ›› Issue (2): 115-120.doi: 10.3969/j.issn.1004-583X.2024.02.003
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Huang Yuling1(), Zhang Xinyue1, Rong Pingping2, Yang Wenqi1, Cao Xinying1, Xing Cainai1, Wang Zhijun1, Liu Ning1
Received:
2023-12-07
Online:
2024-02-20
Published:
2024-04-18
Contact:
Huang Yuling
E-mail:huangyulingts@126.com
CLC Number:
Huang Yuling, Zhang Xinyue, Rong Pingping, Yang Wenqi, Cao Xinying, Xing Cainai, Wang Zhijun, Liu Ning. Correlation analysis of Non-HDL-C/HDL-C and NHR with the severity of coronary artery disease[J]. Clinical Focus, 2024, 39(2): 115-120.
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组别 | 例数 | 年龄 (岁) | 男性 [例(%)] | BMI (kg/m2) | 吸烟史 [例(%)] | 饮酒史 [例(%)] | 高血压 [例(%)] | 糖尿病 [例(%)] | 收缩压 (mmHg) | 舒张压 (mmHg) | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
对照组 | 61 | 56.18±10.45 | 31(50.8) | 25.45±2.52 | 15(24.6) | 12(19.7) | 29(47.5) | 5(8.2) | 133.82±15.45 | 80.33±10.04 | |||||||||
冠状动脉病变组 | 223 | 61.91±9.08 | 111(49.8) | 25.68±3.52 | 62(27.8) | 46(20.6) | 125(56.1) | 52(23.3) | 137.92±18.35 | 82.49±12.10 | |||||||||
统计值 | t=-3.293 | χ2=0.021 | χ2=-0.588 | χ2=0.250 | χ2=0.027 | χ2=1.398 | χ2=6.827 | t=-1.760 | t=-1.279 | ||||||||||
P值 | 0.001 | 0.885 | 0.557 | 0.617 | 0.870 | 0.237 | 0.009 | 0.081 | 0.202 | ||||||||||
组别 | 肌酐 (μmol/L) | 血糖 (mmol/L) | NEU计数 (×109/L) | TG (mmol/L) | TC (mmol/L) | LDL-C (mmol/L) | HDL-C (mmol/L) | non-HDL-C (mmol/L) | non-HDL-C/ HDL-C | NHR | |||||||||
对照组 | 71.15±15.38 | 5.45(4.69, 5.73) | 3.22(2.83, 4.02) | 1.81(0.97, 2.34) | 4.60±0.89 | 2.82±0.88 | 1.42±0.33 | 3.18±0.86 | 2.38±0.89 | 2.37(1.85, 3.20) | |||||||||
冠状动脉病变组 | 67.77±13.79 | 5.86(5.15, 6.99) | 3.55(2.77, 4.39) | 1.33(1.04, 1.79) | 4.82±1.10 | 2.98±0.86 | 1.31±0.31 | 3.52±0.98 | 2.80±0.88 | 2.70(2.05, 3.82) | |||||||||
统计值 | t=1.655 | Z=-6.453 | Z=-3.255 | Z=-0.099 | t=-1.47 | t=-1.361 | t=2.501 | t=-2.437 | t=-3.293 | Z=-6.328 | |||||||||
P值 | 0.099 | <0.01 | 0.001 | 0.921 | 0.143 | 0.175 | 0.013 | 0.015 | 0.001 | <0.01 |
Tab.1 Comparison of clinical data between the two groups
组别 | 例数 | 年龄 (岁) | 男性 [例(%)] | BMI (kg/m2) | 吸烟史 [例(%)] | 饮酒史 [例(%)] | 高血压 [例(%)] | 糖尿病 [例(%)] | 收缩压 (mmHg) | 舒张压 (mmHg) | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
对照组 | 61 | 56.18±10.45 | 31(50.8) | 25.45±2.52 | 15(24.6) | 12(19.7) | 29(47.5) | 5(8.2) | 133.82±15.45 | 80.33±10.04 | |||||||||
冠状动脉病变组 | 223 | 61.91±9.08 | 111(49.8) | 25.68±3.52 | 62(27.8) | 46(20.6) | 125(56.1) | 52(23.3) | 137.92±18.35 | 82.49±12.10 | |||||||||
统计值 | t=-3.293 | χ2=0.021 | χ2=-0.588 | χ2=0.250 | χ2=0.027 | χ2=1.398 | χ2=6.827 | t=-1.760 | t=-1.279 | ||||||||||
P值 | 0.001 | 0.885 | 0.557 | 0.617 | 0.870 | 0.237 | 0.009 | 0.081 | 0.202 | ||||||||||
组别 | 肌酐 (μmol/L) | 血糖 (mmol/L) | NEU计数 (×109/L) | TG (mmol/L) | TC (mmol/L) | LDL-C (mmol/L) | HDL-C (mmol/L) | non-HDL-C (mmol/L) | non-HDL-C/ HDL-C | NHR | |||||||||
对照组 | 71.15±15.38 | 5.45(4.69, 5.73) | 3.22(2.83, 4.02) | 1.81(0.97, 2.34) | 4.60±0.89 | 2.82±0.88 | 1.42±0.33 | 3.18±0.86 | 2.38±0.89 | 2.37(1.85, 3.20) | |||||||||
冠状动脉病变组 | 67.77±13.79 | 5.86(5.15, 6.99) | 3.55(2.77, 4.39) | 1.33(1.04, 1.79) | 4.82±1.10 | 2.98±0.86 | 1.31±0.31 | 3.52±0.98 | 2.80±0.88 | 2.70(2.05, 3.82) | |||||||||
统计值 | t=1.655 | Z=-6.453 | Z=-3.255 | Z=-0.099 | t=-1.47 | t=-1.361 | t=2.501 | t=-2.437 | t=-3.293 | Z=-6.328 | |||||||||
P值 | 0.099 | <0.01 | 0.001 | 0.921 | 0.143 | 0.175 | 0.013 | 0.015 | 0.001 | <0.01 |
组别 | 例数 | NEU计数 (×109/L) | 血糖 (mmol/L) | 肌酐 (μmol/L) | LDL-C (mmol/L) | HDL-C (mmol/L) | non-HDL-C (mmol/L) | non-HDL-C/ HDL-C | NHR |
---|---|---|---|---|---|---|---|---|---|
低分值亚组 | 159 | 3.19(2.65, 4.15) | 5.67(5.10, 6.66) | 66.26±13.77 | 2.96±0.81 | 1.36±0.31 | 3.48±0.94 | 2.67±0.88 | 2.39(1.91, 3.35) |
高分值亚组 | 64 | 4.01(3.40, 5.13) | 6.62(5.59, 8.69) | 71.50±13.19 | 3.05±0.96 | 1.17±0.26 | 3.59±1.10 | 3.12±0.81 | 3.45(2.80, 5.35) |
统计值 | Z=-4.454 | Z=-4.035 | t=-2.598 | t=-0.681 | t=4.33 | t=-0.749 | t=-3.517 | Z=-5.514 | |
P值 | <0.01 | <0.01 | 0.010 | 0.496 | <0.01 | 0.454 | 0.001 | <0.01 |
Tab.2 Comparison of laboratory data between the subgroups
组别 | 例数 | NEU计数 (×109/L) | 血糖 (mmol/L) | 肌酐 (μmol/L) | LDL-C (mmol/L) | HDL-C (mmol/L) | non-HDL-C (mmol/L) | non-HDL-C/ HDL-C | NHR |
---|---|---|---|---|---|---|---|---|---|
低分值亚组 | 159 | 3.19(2.65, 4.15) | 5.67(5.10, 6.66) | 66.26±13.77 | 2.96±0.81 | 1.36±0.31 | 3.48±0.94 | 2.67±0.88 | 2.39(1.91, 3.35) |
高分值亚组 | 64 | 4.01(3.40, 5.13) | 6.62(5.59, 8.69) | 71.50±13.19 | 3.05±0.96 | 1.17±0.26 | 3.59±1.10 | 3.12±0.81 | 3.45(2.80, 5.35) |
统计值 | Z=-4.454 | Z=-4.035 | t=-2.598 | t=-0.681 | t=4.33 | t=-0.749 | t=-3.517 | Z=-5.514 | |
P值 | <0.01 | <0.01 | 0.010 | 0.496 | <0.01 | 0.454 | 0.001 | <0.01 |
自变量 | rs值 | P值 |
---|---|---|
NHR | 0.404 | <0.01 |
non-HDL-C/HDL-C | 0.334 | <0.01 |
Tab.3 Spearman correlation analysis
自变量 | rs值 | P值 |
---|---|---|
NHR | 0.404 | <0.01 |
non-HDL-C/HDL-C | 0.334 | <0.01 |
因素 | 回归系数 | 标准误 | Waldχ2值 | P值 | OR值 | 95%CI | |
---|---|---|---|---|---|---|---|
下限 | 上限 | ||||||
non-HDL-C/HDL-C | 0.258 | 0.211 | 1.492 | 0.222 | 1.295 | 0.855 | 1.960 |
NHR | 0.501 | 0.137 | 13.416 | <0.01 | 1.650 | 1.262 | 2.158 |
Tab.4 Multivariate Logistic regression analysis of the high Gensini score in patients with coronary artery disease
因素 | 回归系数 | 标准误 | Waldχ2值 | P值 | OR值 | 95%CI | |
---|---|---|---|---|---|---|---|
下限 | 上限 | ||||||
non-HDL-C/HDL-C | 0.258 | 0.211 | 1.492 | 0.222 | 1.295 | 0.855 | 1.960 |
NHR | 0.501 | 0.137 | 13.416 | <0.01 | 1.650 | 1.262 | 2.158 |
[1] | 中国心血管健康与疾病报告编写组. 中国心血管健康与疾病报告2022概要[J]. 中国循环杂志, 2023, 38(6): 583-612. |
[2] |
Libby P. The changing landscape of atherosclerosis[J]. Nature, 2021, 592(7855): 524-533.
doi: 10.1038/s41586-021-03392-8 |
[3] | Kosmas CE, Martinez I, Sourlas A, et al. High-density lipoprotein (HDL) functionality and its relevance to atherosclerotic cardiovascular disease[J]. Drugs Context, 2018, 7: 212525. |
[4] |
Luo Y, Peng D. Residual atherosclerotic cardiovascular disease risk: Focus on non-high-density lipoprotein cholesterol[J]. J Cardiovasc Pharmacol Ther, 2023, 28: 10742484231189597.
doi: 10.1177/10742484231189597 URL |
[5] |
Iannuzzi A, Giallauria F, Gentile M, et al. Association between non-HDL-C/HDL-C ratio and carotid intima-media thickness in post-menopausal women[J]. J Clin Med, 2021, 11(1):78.
doi: 10.3390/jcm11010078 URL |
[6] | You J, Wang Z, Lu G, et al. Association between the non-high-density lipoprotein cholesterol to high-density lipoprotein cholesterol ratio and the risk of coronary artery disease[J]. Biomed Res Int, 2020, 2020: 7146028. |
[7] |
Li T, Yuan D, Wang P, et al. Associations of lipid measures with total occlusion in patients with established coronary artery disease: A cross-sectional study[J]. Lipids Health Dis, 2022, 21(1): 118.
doi: 10.1186/s12944-022-01733-8 pmid: 36369093 |
[8] | Lamichhane P, Agrawal A, Abouainain Y, et al. Utility of neutrophil-to-high-density lipoprotein-cholesterol ratio in patients with coronary artery disease: A narrative review[J]. J Int Med Res, 2023, 51(4): 3000605231166518. |
[9] |
Ren H, Zhu B, Zhao Z, et al. Neutrophil to high-density lipoprotein cholesterol ratio as the risk mark in patients with type 2 diabetes combined with acute coronary syndrome: A cross-sectional study[J]. Sci Rep, 2023, 13(1): 7836.
doi: 10.1038/s41598-023-35050-6 pmid: 37188740 |
[10] |
Guo J, Chen M, Hong Y, et al. Comparison of the predicting value of neutrophil to high-density lipoprotein cholesterol ratio and monocyte to high-density lipoprotein cholesterol ratio for in-hospital prognosis and severe coronary artery stenosis in patients with ST-segment elevation acute myocardial infarction following percutaneous coronary intervention: A retrospective study[J]. J Inflamm Res, 2023, 16: 4541-4557.
doi: 10.2147/JIR.S425663 URL |
[11] |
Gensini GG. A more meaningful scoring system for determining the severity of coronary heart disease[J]. Am J Cardiol, 1983, 51(3): 606.
doi: 10.1016/s0002-9149(83)80105-2 pmid: 6823874 |
[12] |
Raja V, Aguiar C, Alsayed N, et al. Non-HDL-cholesterol in dyslipidemia: Review of the state-of-the-art literature and outlook[J]. Atherosclerosis, 2023, 383: 117312.
doi: 10.1016/j.atherosclerosis.2023.117312 URL |
[13] |
Pencina KM, Thanassoulis G, Wilkins JT, et al. Trajectories of non-HDL cholesterol across midlife: Implications for cardiovascular prevention[J]. J Am Coll Cardiol, 2019, 74(1): 70-79.
doi: S0735-1097(19)35146-0 pmid: 31272554 |
[14] |
Abdullah SM, Defina LF, Leonard D, et al. Long-term association of low-density lipoprotein cholesterol with cardiovascular mortality in individuals at low 10-year risk of atherosclerotic cardiovascular disease[J]. Circulation, 2018, 138(21): 2315-2325.
doi: 10.1161/CIRCULATIONAHA.118.034273 pmid: 30571575 |
[15] |
Brunner FJ, Waldeyer C, Ojeda F, et al. Application of non-HDL cholesterol for population-based cardiovascular risk stratification: Results from the Multinational Cardiovascular Risk Consortium[J]. Lancet, 2019, 394(10215): 2173-2183.
doi: S0140-6736(19)32519-X pmid: 31810609 |
[16] |
Abedi F, Sadeghi M, Omidkhoda N, et al. HDL-cholesterol concentration and its association with coronary artery calcification: A systematic review and meta-analysis[J]. Lipids Health Dis, 2023, 22(1): 60.
doi: 10.1186/s12944-023-01827-x pmid: 37158895 |
[17] | Shi J, Zhang HY, Wang DY, et al. Associations between various lipid components and premature myocardial infarction: A cross-sectional study[J]. Zhonghua Xin Xue Guan Bing Za Zhi, 2023, 51(3): 278-287. |
[18] | Mao Q, Zhao J, Zhao X. Association of non-HDL-C-to-HDL-C ratio with coronary lesions and its prognostic performance in first-onset NSTEMI[J]. Biomark Med, 2023, 17(1): 29-39. |
[19] |
Liu J, Zhao L, Zhang Y, et al. A higher non-HDL-C/HDL-C ratio was associated with an increased risk of progression of nonculprit coronary lesion in patients with acute coronary syndrome undergoing percutaneous coronary intervention[J]. Clin Cardiol, 2024, 47(2): e24243.
doi: 10.1002/clc.v47.2 URL |
[20] |
Wang Y, Yang M, Xu Y, et al. Neutrophil extracellular trap burden correlates with the stenosis of coronary atherosclerosis[J]. Peer J, 2023, 11: e15471.
doi: 10.7717/peerj.15471 URL |
[21] |
Langseth MS, Opstad TB, Bratseth V, et al. Markers of neutrophil extracellular traps are associated with adverse clinical outcome in stable coronary artery disease[J]. Eur J Prev Cardiol, 2018, 25(7): 762-769.
doi: 10.1177/2047487318760618 pmid: 29473463 |
[22] |
Jia C, Anderson JLC, Gruppen EG, et al. High-density lipoprotein anti-inflammatory capacity and incident cardiovascular events[J]. Circulation, 2021, 143(20): 1935-1945.
doi: 10.1161/CIRCULATIONAHA.120.050808 pmid: 33840204 |
[23] |
Gao J, Lu J, Sha W, et al. Relationship between the neutrophil to high-density lipoprotein cholesterol ratio and severity of coronary artery disease in patients with stable coronary artery disease[J]. Front Cardiovasc Med, 2022, 9: 1015398.
doi: 10.3389/fcvm.2022.1015398 URL |
[24] |
Huang JB, Chen YS, Ji HY, et al. Neutrophil to high-density lipoprotein ratio has a superior prognostic value in elderly patients with acute myocardial infarction: A comparison study[J]. Lipids Health Dis, 2020, 19(1): 59.
doi: 10.1186/s12944-020-01238-2 |
[25] |
Chen Y, Jiang D, Tao H, et al. Neutrophils to high-density lipoprotein cholesterol ratio as a new prognostic marker in patients with ST-segment elevation myocardial infarction undergoing primary percutaneous coronary intervention: A retrospective study[J]. BMC Cardiovasc Disord, 2022, 22(1): 434.
doi: 10.1186/s12872-022-02870-9 |
[26] |
Kou T, Luo H, Yin L. Relationship between neutrophils to HDL-C ratio and severity of coronary stenosis[J]. BMC Cardiovasc Disord, 2021, 21(1): 127.
doi: 10.1186/s12872-020-01771-z |
[27] |
Feng Y, Zhang Z, Zhao X, et al. Neutrophil to high-density lipoprotein cholesterol ratio as the risk mark in patients with type 2 diabetes combined with acute coronary syndrome: A cross-sectional study[J]. Sci Rep, 2023, 13(1): 7836.
doi: 10.1038/s41598-023-35050-6 pmid: 37188740 |
[28] | 沐露霞, 汪斌, 孙震. 中性粒细胞/高密度脂蛋白比值与老年高血压患者合并冠心病的相关性[J]. 中国老年学杂志, 2023, 43(16): 3852-3854. |
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