Chinese Journal of Clinical Pharmacology and Therapeutics ›› 2026, Vol. 31 ›› Issue (5): 623-630.doi: 10.12092/j.issn.1009-2501.2026.05.006
Previous Articles Next Articles
Mei CHENG1(
), Zhaohui FANG1,2,3,*(
), Jindong ZHAO1, Fengxia SHENG1, Mengnan MA1
Received:2025-09-13
Revised:2026-02-11
Online:2026-05-26
Published:2026-06-02
Contact:
Zhaohui FANG
E-mail:1213597466@qq.com;fangzhaohui9097@163.com
CLC Number:
Mei CHENG, Zhaohui FANG, Jindong ZHAO, Fengxia SHENG, Mengnan MA. Liraglutide combined with metformin on glycolipid metabolism level and intima-media thickness in overweight/obese patients with type 2 diabetes mellitus[J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2026, 31(5): 623-630.
| Item | Control (n=70) | Treatment (n=70) |
| Gender (male/female) | 47/23 | 44/26 |
| Age/year | 50.48±14.08 | 51.34±12.52 |
| BMI (kg/m2) | 30.92±1.76 | 30.86±1.68 |
| HR (time/min) | 84.23±6.28 | 85.28±6.26 |
| SBP (mmHg) | 138.56±7.28 | 137.68±7.28 |
| DBP (mmHg) | 78.68±6.84 | 77.82±8.46 |
Table 1 Comparison of baseline characteristics between the groups ($ \overline{x} $±s)
| Item | Control (n=70) | Treatment (n=70) |
| Gender (male/female) | 47/23 | 44/26 |
| Age/year | 50.48±14.08 | 51.34±12.52 |
| BMI (kg/m2) | 30.92±1.76 | 30.86±1.68 |
| HR (time/min) | 84.23±6.28 | 85.28±6.26 |
| SBP (mmHg) | 138.56±7.28 | 137.68±7.28 |
| DBP (mmHg) | 78.68±6.84 | 77.82±8.46 |
| Item | FPG (mmol/L) | 2hPG (mmol/L) | HbA1c (%) | |||||
| Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | |||
| Control | 9.32±1.85 | 8.75±1.24 | 12.48±3.26 | 10.75±1.86 | 10.36±1.18 | 8.64±1.36 | ||
| Treatment | 9.30±1.76 | 6.72±1.36 | 12.30±2.36 | 6.58±1.58 | 10.24±1.25 | 6.50±1.52 | ||
| t | 0.049 | 6.976 | 0.283 | 3.216 | 0.182 | 12.02 | ||
| P | 0.960 | 0.000 | 0.000 | 0.857 | 0.000 | |||
Table 2 Comparison of blood glucose indicators before and after intervention in the two groups of patients ($ \overline{x} $±s, n=70)
| Item | FPG (mmol/L) | 2hPG (mmol/L) | HbA1c (%) | |||||
| Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | |||
| Control | 9.32±1.85 | 8.75±1.24 | 12.48±3.26 | 10.75±1.86 | 10.36±1.18 | 8.64±1.36 | ||
| Treatment | 9.30±1.76 | 6.72±1.36 | 12.30±2.36 | 6.58±1.58 | 10.24±1.25 | 6.50±1.52 | ||
| t | 0.049 | 6.976 | 0.283 | 3.216 | 0.182 | 12.02 | ||
| P | 0.960 | 0.000 | 0.000 | 0.857 | 0.000 | |||
| Item | TC (mmol/L) | TG (mmol/L) | LDL-C (mmol/L) | HDL-C (mmol/L) | IMT (cm) | |||||||||
| Before Treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | |||||
| Control | 2.85±0.82 | 2.59±0.55b | 2.92±0.82 | 2.58±0.53b | 4.26±0.85 | 3.61±0.58b | 1.24±0.64 | 1.32±0.21b | 1.32±0.21 | 1.18±0.27b | ||||
| Treatment | 2.82±0.51 | 2.02±0.36b | 2.89±0.45 | 2.04±0.16b | 4.28±0.76 | 2.32±0.42b | 1.23±0.54 | 1.86±0.52b | 1.30±0.28 | 0.86±0.24b | ||||
| t | 0.196 | 5.486 | 0.203 | 6.400 | 0.111 | 11.395 | 0.076 | 5.217 | 0.361 | 5.604 | ||||
| P | 0.844 | 0.000 | 0.840 | 0.000 | 0.912 | 0.000 | 0.940 | 0.000 | 0.720 | 0.000 | ||||
Table 3 Comparison of the level of blood lipid indicators and IMT between control group and treatment group of patients ($ \overline{x} $±s, n=70)
| Item | TC (mmol/L) | TG (mmol/L) | LDL-C (mmol/L) | HDL-C (mmol/L) | IMT (cm) | |||||||||
| Before Treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | |||||
| Control | 2.85±0.82 | 2.59±0.55b | 2.92±0.82 | 2.58±0.53b | 4.26±0.85 | 3.61±0.58b | 1.24±0.64 | 1.32±0.21b | 1.32±0.21 | 1.18±0.27b | ||||
| Treatment | 2.82±0.51 | 2.02±0.36b | 2.89±0.45 | 2.04±0.16b | 4.28±0.76 | 2.32±0.42b | 1.23±0.54 | 1.86±0.52b | 1.30±0.28 | 0.86±0.24b | ||||
| t | 0.196 | 5.486 | 0.203 | 6.400 | 0.111 | 11.395 | 0.076 | 5.217 | 0.361 | 5.604 | ||||
| P | 0.844 | 0.000 | 0.840 | 0.000 | 0.912 | 0.000 | 0.940 | 0.000 | 0.720 | 0.000 | ||||
| Item | BMI (kg/m2) | Waist (cm) | Hipline (cm) | |||||
| Before Treatment | After treatment | Before Treatment | After treatment | Before Treatment | After treatment | |||
| Control | 28.35±2.32 | 26.58±1.62b | 95.38±7.28 | 90.62±8.62b | 101.38±6.28 | 99.85±8.36b | ||
| Treatment | 28.02±3.24 | 24.14±1.52b | 95.26±6.32 | 86.72±6.72b | 102.04±4.26 | 96.36±5.36b | ||
| t | 0.524 | 6.947 | 0.079 | 2.257 | 0.551 | 2.223 | ||
| P | 0.500 | 0.000 | 0.900 | 0.025 | 0.500 | 0.003 | ||
Table 4 Comparison of physiological parameters levels between control group and treatment group of patients ($ \overline{x} $±s, n=70)
| Item | BMI (kg/m2) | Waist (cm) | Hipline (cm) | |||||
| Before Treatment | After treatment | Before Treatment | After treatment | Before Treatment | After treatment | |||
| Control | 28.35±2.32 | 26.58±1.62b | 95.38±7.28 | 90.62±8.62b | 101.38±6.28 | 99.85±8.36b | ||
| Treatment | 28.02±3.24 | 24.14±1.52b | 95.26±6.32 | 86.72±6.72b | 102.04±4.26 | 96.36±5.36b | ||
| t | 0.524 | 6.947 | 0.079 | 2.257 | 0.551 | 2.223 | ||
| P | 0.500 | 0.000 | 0.900 | 0.025 | 0.500 | 0.003 | ||
| Item | Treatment impact score | Physiological function score | Social relations scoring | Psychological scoring | |||||||
| Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | ||||
| Control | 9.60±1.63 | 6.16±0.14b | 26.70±4.10 | 22.12±7.37b | 14.20±3.03 | 7.64±1.60b | 21.60±4.01 | 15.48±3.20b | |||
| Treatment | 10.04±1.59 | 4.68±0.95b | 26.48±4.50 | 15.30±4.90b | 14.60±3.97 | 6.24±1.48b | 21.96±4.95 | 13.00±3.12b | |||
| t | 1.222 | 7.551 | 0.229 | 4.871 | 0.468 | 4.057 | 0.357 | 3.508 | |||
| P | 0.226 | 0.000 | 0.82 | 0.000 | 0.677 | 0.000 | 0.722 | 0.000 | |||
Table 5 Comparison of DSQL scores before and after treatment in the two groups of patients ($ \overline{x} $±s, n=70)
| Item | Treatment impact score | Physiological function score | Social relations scoring | Psychological scoring | |||||||
| Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | Before treatment | After treatment | ||||
| Control | 9.60±1.63 | 6.16±0.14b | 26.70±4.10 | 22.12±7.37b | 14.20±3.03 | 7.64±1.60b | 21.60±4.01 | 15.48±3.20b | |||
| Treatment | 10.04±1.59 | 4.68±0.95b | 26.48±4.50 | 15.30±4.90b | 14.60±3.97 | 6.24±1.48b | 21.96±4.95 | 13.00±3.12b | |||
| t | 1.222 | 7.551 | 0.229 | 4.871 | 0.468 | 4.057 | 0.357 | 3.508 | |||
| P | 0.226 | 0.000 | 0.82 | 0.000 | 0.677 | 0.000 | 0.722 | 0.000 | |||
| Item | Nausea | Dizzy | Vomit | Diarrhea | Total |
| Control | 2(2.86%) | 2(2.86%) | 1(1.43%) | 1(1.43%) | 6(8.58%) |
| Treatment | 2(2.86%) | 1(1.43%) | 1(1.43%) | 0(0) | 4(5.72%) |
Table 6 Comparison of adverse reactions between the two groups during the treatment process (n=70)
| Item | Nausea | Dizzy | Vomit | Diarrhea | Total |
| Control | 2(2.86%) | 2(2.86%) | 1(1.43%) | 1(1.43%) | 6(8.58%) |
| Treatment | 2(2.86%) | 1(1.43%) | 1(1.43%) | 0(0) | 4(5.72%) |
| 1 | 李焱. 关注糖尿病管理过程中的体重控制[J]. 中国糖尿病杂志, 2023, 31 (5): 398- 400. |
| 2 | 杨雁, 陈颖, 张惠杰, 等. 糖尿病患者体重管理专家共识(2024版)[J]. 中华糖尿病杂志, 2024, 16 (9): 959- 971. |
| 3 | Michaelidou M, Pappachan JM, Jeeyavudeen MS. Management of diabesity: current concepts[J]. 世界糖尿病杂志: 英文版(电子版), 2023, 14 (4): 396- 411. |
| 4 |
Arsenault BJ, Carpentier AC, Poirier P, et al. Adiposity, type 2 diabetes and atherosclerotic cardiovascular disease risk: use and abuse of the body mass index[J]. Atherosclerosis, 2024, 394, 117546.
doi: 10.1016/j.atherosclerosis.2024.117546 |
| 5 | 中国2型糖尿病防治指南(2020年版)(上) [J]. 中国实用内科杂志, 2021, 41(8): 668-695. |
| 6 | 刘莉娟, 曾红丽, 陈宇, 等. 达格列净联合二甲双胍治疗糖尿病肾病患者的临床研究[J]. 中国临床药理学杂志, 2025, 41 (9): 1207- 1212. |
| 7 | 周英旎, 石敏, 赖敬波, 等. 聚乙二醇洛塞那肽联合二甲双胍治疗新诊断肥胖2型糖尿病[J]. 实用医学杂志, 2023, 39 (2): 170- 174. |
| 8 |
宋白利, 付留俊, 常毅娜, 等. 利拉鲁肽对NAFLD合并T2DM患者心血管代谢和左心室结构及功能的影响[J]. 中国药房, 2024, 35 (14): 1737- 1742.
doi: 10.6039/j.issn.1001-0408.2024.14.11 |
| 9 |
杨梅, 王慧, 张圣武, 等. 利拉鲁肽联合二甲双胍治疗2型糖尿病临床疗效分析[J]. 中华全科医师杂志, 2021, 20 (4): 482- 484.
doi: 10.3760/cma.j.cn114798-20200806-00884 |
| 10 | 林丹红, 全会标, 欧倩滢, 等. 利拉鲁肽对超重或肥胖男性2型糖尿病患者睾酮及性功能的影响[J]. 实用医学杂志, 2023, 39 (7): 894- 898. |
| 11 |
Sadeghi A, Niknam M, Momeni-Moghaddam MA, et al. Crosstalk between autophagy and insulin resistance: evidence from different tissues[J]. Eur J Med Res, 2023, 28 (1): 456.
doi: 10.1186/s40001-023-01424-9 |
| 12 | Kurniawan LB, Apriani LP, Kadir NA, et al. Visceral fat as the main obesity index that determines the occurrence of adipose tissue insulin resistance[J]. EJIFCC, 2025, 36 (3): 321- 327. |
| 13 |
Ortega MA, Fraile-Martínez O, Naya I, et al. Type 2 diabetes mellitus associated with obesity (diabesity). The central role of gut microbiota and its translational applications[J]. Nutrients, 2020, 12 (9): 2749.
doi: 10.3390/nu12092749 |
| 14 |
Camacho-Padilla LG, Zepeda-Morales ASM, Arrizon J, et al. Preclinical evaluation of puerarin as a modulator of metabolic and inflammatory parameters in a high-fat-diet-fed mice model[J]. Molecules, 2025, 30 (19): 3895.
doi: 10.3390/molecules30193895 |
| 15 |
Dutta S, Shah RB, Singhal S, et al. Metformin: a review of potential mechanism and therapeutic utility beyond diabetes[J]. Drug Des Devel Ther, 2023, 17, 1907- 1932.
doi: 10.2147/DDDT.S409373 |
| 16 | 刘建城, 吴淼, 余乐天, 等. 基于太赫兹波检测技术研究二甲双胍对生命状态的影响[J]. 中华中医药杂志, 2024, 39 (7): 3788- 3791. |
| 17 |
Yerevanian A, Soukas AA. Metformin: mechanisms in human obesity and weight loss[J]. Curr Obes Rep, 2019, 8 (2): 156- 164.
doi: 10.1007/s13679-019-00335-3 |
| 18 |
Love KM, Barrett EJ, Horton WB. Metformin's impact on the microvascular response to insulin[J]. Endocrinology, 2022, 163 (11): bqac162.
doi: 10.1210/endocr/bqac162 |
| 19 | 周蓓, 李静, 方晨圆, 等. 二甲双胍/维格列汀和利拉鲁肽对肥胖合并2型糖尿病患者的临床疗效比较[J]. 南方医科大学学报, 2023, 43 (3): 436- 442. |
| 20 |
Sandsdal RM, Juhl CR, Jensen SBK, et al. Combination of exercise and GLP-1 receptor agonist treatment reduces severity of metabolic syndrome, abdominal obesity, and inflammation: a randomized controlled trial[J]. Cardiovasc Diabetol, 2023, 22 (1): 41.
doi: 10.1186/s12933-023-01765-z |
| 21 |
邢英, 郑嵘炅, 姜春晖, 等. 利拉鲁肽治疗后2型糖尿病合并冠心病患者肠道菌群变化及其与糖、脂代谢指标相关性[J]. 中国临床药理学与治疗学, 2025, 30 (8): 1084- 1091.
doi: 10.12092/j.issn.1009-2501.2025.08.009 |
| 22 | 杨林泉, 乔莉, 朱慧明, 等. 利拉鲁肽调控Cideb通路改善肝脏脂质沉积的作用研究[J]. 中国药学杂志, 2025, 60 (15): 1577- 1586. |
| 23 |
Ahmad E, Lim S, Lamptey R, et al. Type 2 diabetes[J]. Lancet, 2022, 400 (10365): 1803- 1820.
doi: 10.1016/S0140-6736(22)01655-5 |
| 24 | 刘云涛, 水芳芳, 张萌, 等. 利拉鲁肽对2型糖尿病合并颈动脉粥样硬化患者颈动脉内膜中层厚度及血清沉默信息调节因子6影响的研究[J]. 中国糖尿病杂志, 2025, 33 (2): 98- 103. |
| 25 | 刘佐相, 陈晓薇, 赵厚宇, 等. 真实世界中2型糖尿病患者二甲双胍联用西格列汀的心血管安全性[J]. 北京大学学报(医学版), 2024, 56 (3): 424- 430. |
| 26 |
Zhao Y, Jia X, Yang XY, et al. Deacetylation of caveolin-1 by Sirt6 induces autophagy and retards high glucose-stimulated LDL transcytosis and atherosclerosis formation[J]. Metabolism, 2022, 131, 155162.
doi: 10.1016/j.metabol.2022.155162 |
| 27 |
Nuamnaichati N, Mangmool S, Chattipakorn N, et al. Stimulation of GLP-1 receptor inhibits methylglyoxal-induced mitochondrial dysfunctions in H9c2 cardiomyoblasts: potential role of Epac/PI3K/Akt pathway[J]. Front Pharmacol, 2020, 11, 805.
doi: 10.3389/fphar.2020.00805 |
| 28 |
Chen SY, Wu JY, Liao KM, et al. Prognostic benefit of glucagon-like peptide-1 receptor agonists addition to sodium-glucose cotransporter 2 inhibitors in patients with atherosclerotic cardiovascular disease and heart failure: a cohort study[J]. Eur Heart J Cardiovasc Pharmacother, 2025, 11 (4): 324- 333.
doi: 10.1093/ehjcvp/pvaf014 |
| 29 |
Deerochanawong C, Krittayaphong R, Romano JGU, et al. Cost-utility of liraglutide plus standard of care versus standard of care in people with type 2 diabetes and cardiovascular risk in Thailand[J]. Diabetes Ther, 2023, 14 (3): 531- 552.
doi: 10.1007/s13300-023-01371-y |
| 30 | 吴立华, 黄达, 冯青春. 利拉鲁肽联合达格列净治疗血糖控制不佳的老年2型糖尿病的疗效[J]. 中国老年学杂志, 2023, 43 (11): 2588- 2592. |
| [1] | Ziyu WU, Ting YU, Mouwei ZHENG, Tailin GUO. Metformin inhibits diabetes induced ferroptosis in renal proximal tubular epithelial cells by up-regulating Nrf2 expression [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2026, 31(1): 40-47. |
| [2] | XING Ying, ZHENG Rongjiong, JIANG Chunhui, Mayila·kahaer, Muhuyati·wulasihan. Changes of intestinal flora in patients with type 2 diabetes mellitus complicated with coronary heart disease after liraglutide treatment and its correlation with glucose and lipid metabolism indexes [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2025, 30(8): 1084-1091. |
| [3] | SUN Hong, HAN Chao, LEI Daoyun, LIU Jinming. Lraglutide improves postoperative cognitive function of aged mice via inhibiting the β-arrestin2/STING/TBK1 pathway [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2024, 29(12): 1419-1426. |
| [4] | WANG Jie, LI Long, CHEN Feng, LIU Shengfei. Research progress of metformin in the pathogenesis of pulmonary fibrosis [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(2): 235-240. |
| [5] | WANG Xin, LIU Weiying, WU Chen, KAI Jinjun, LIANG Xuejie, CHANG Yingxuan. Metformin regulates AMPK/SREBP-1 pathway and its clinical application [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(9): 1049-1054. |
| [6] | WANG Zhen, QUAN Haiyan, HONG Chenliang, YUAN Lijialong, QIN Xuping. Swimming improves renal function of diabetic mice by promoting autophagy [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(6): 632-638. |
| [7] | HAO Wei, ZUO Dongze, ZHANG Junxiu, JIANG Lili, XIONG Ying, YANG Jieren. Effects of metformin on epithelial-mesenchymal transition of rat alveolar epithelial type II cells induced by TGF-β1 [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2021, 26(7): 744-752. |
| [8] | LI Xiaomin, JIN Hao, ZHOU Wenzhi, YANG Hanyue, ZOU Ting, GUO Jie, XU Pingsheng. Bioequivalence of metformin hydrochloride sustained-release tablets in healthy subjects [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2021, 26(4): 408-413. |
| [9] | WANG Chunling, ZHOU Renjing, FENG Rui, WU Yanneng. Effect of adiponectin 45 T/G gene polymorphism on type 2 diabetes treated with liraglutide [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2021, 26(3): 312-317. |
| [10] | LI Guinv, REN Shaolin, SHEN Ruiming, JI Yongneng, CAI Cairong, SU Ruo. Metformin combined with glucocorticoid in the treatment of SLE patients with IGT [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2020, 25(6): 670-676. |
| [11] | ZHAO Qian, YANG Guang, CAO Lihua, YU Chenbao. CNR1 genetic variation influences the clinical outcomes of early stage type 2 diabetes mellitus treated with liraglutide [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2020, 25(2): 182-188. |
| [12] | HU Defeng, WANG Yihu, LONG Xiaoyu, WANG Guangshui. Intervention effect of modified Ganmaidazao Tang combined with cognitive behavioral intervention on ultra-high risk for developing psychosis and the effects on cognitive function, quality of life and serum levels of 5-HT, MT and TSH [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2019, 24(5): 546-553. |
| [13] | GUO Liangtang, LIN Chao, SUN Yun, DAI Shengfeng, ZHANG Bingcai, CHEN Shu. Effects of metformin on patients with polycystic ovary syndrome and its effect on adipose tissue miR-25 level [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2019, 24(5): 554-560. |
| [14] | DING Qiuhua, SHI Daohua. Advances on the molecular mechanism of metformin's antitumor effect [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2019, 24(3): 350-354. |
| [15] | YAO Xinming, KONG Xiang, ZHAO Yongli, HUA Qiang, HE Chunling, YU Dan, LI Yeqiong, DAI Xiaokang, YE Shandong. Metformin inhibits p38MAPK signaling pathway and oxidativestress in rat glomerular mesangial cells cultured with high glucose [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2018, 23(6): 614-620. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||