临床荟萃 ›› 2023, Vol. 38 ›› Issue (1): 79-83.doi: 10.3969/j.issn.1004-583X.2023.01.013
收稿日期:
2022-07-31
出版日期:
2023-01-20
发布日期:
2023-03-03
通讯作者:
张琦
E-mail:271286726@qq.com
基金资助:
Received:
2022-07-31
Online:
2023-01-20
Published:
2023-03-03
摘要:
氧化型低密度脂蛋白(oxidized low density lipoprotein,ox-LDL)是低密度脂蛋白胆固醇(low density lipoprotein cholesterol, LDL-C)的氧化修饰产物,具有很强的细胞毒性,是诱发脂毒性的主要异常脂类。植物血凝素样氧化型低密度脂蛋白受体1(lectin-like oxidized low-density lipoprotein receptor-1,LOX-1)是一种分子量为50 kDa跨膜糖蛋白。研究表明,ox-LDL/LOX-1信号通路在糖尿病并发症、主动脉粥样硬化、类风湿性关节炎及肿瘤等疾病中具有重要的病理生理作用,特别是糖尿病相关疾病的进展与ox-LDL/LOX-1信号通路的激活或表达上调密切相关。本文通过对ox-LDL/LOX-1信号通路在糖尿病相关疾病中的研究进展进行综述,旨在为糖尿病相关疾病的诊治提供理论依据。
中图分类号:
仇菊梅, 张琦, 刘静, 余静, 张雅娟. ox-LDL/LOX-1信号通路在糖尿病相关疾病中的研究进展[J]. 临床荟萃, 2023, 38(1): 79-83.
[1] |
Sun H, Saeedi P, Karuranga S, et al. IDF Diabetes Atlas: Global, regional and country-level diabetes prevalence estimates for 2021 and projections for 2045[J]. Diabetes Res Clin Pract, 2022, 183:109119.
doi: 10.1016/j.diabres.2021.109119 URL |
[2] |
White NH, Pan Q, Knowler WC, et al. Risk factors for the development of retinopathy in prediabetes and type 2 diabetes: The diabetes prevention program experience[J]. Diabetes Care, 2022, 45(11):2653-2661.
doi: 10.2337/dc22-0860 pmid: 36098658 |
[3] |
Sharma G, Ashhar MU, Aeri V, et al. Development and characterization of late-stage diabetes mellitus and -associated vascular complications[J]. Life Sci, 2019, 216: 295-304.
doi: S0024-3205(18)30710-0 pmid: 30408473 |
[4] |
Aoyama T, Sawamura T, Furutani Y, et al. Structure and chromosomal assignment of the human lectin-like oxidized low-density-lipoprotein receptor-1 (LOX-1) gene[J]. Biochem J, 1999, 339(Pt 1):177-184.
doi: 10.1042/bj3390177 URL |
[5] |
Jin P, Cong S. LOX-1 and atherosclerotic-related diseases[J]. Clin Chim Acta, 2019, 491:24-29.
doi: S0009-8981(19)30019-1 pmid: 30639239 |
[6] |
de Alwis N, Beard S, Binder NK, et al. LOX-1 expression is reduced in placenta from pregnancies complicated by preeclampsia and in hypoxic cytotrophoblast[J]. Pregnancy Hypertens, 2021, 25:255-261.
doi: 10.1016/j.preghy.2021.07.243 pmid: 34325289 |
[7] |
Stankova TR, Delcheva GT, Maneva AI, et al. Serum levels of carbamylated LDL, nitrotyrosine and soluble lectin-like oxidized low-density lipoprotein receptor-1 in poorly controlled type 2 diabetes mellitus[J]. Folia Med (Plovdiv), 2019, 61(3): 419-425.
doi: 10.3897/folmed.61.e39343 pmid: 32337929 |
[8] |
Ackermann K, Bonaterra GA, Kinscherf R, et al. Growth differentiation factor-15 regulates oxLDL-induced lipid homeostasis and autophagy in human macropha ges[J]. Atherosclerosis, 2019, 281:128-136.
doi: S0021-9150(18)31540-5 pmid: 30658188 |
[9] |
Díaz-Ruiz M, Martínez-Triguero ML, López-Ruiz A, et al. Metabolic disorders and inflammation are associated with familial combined hyperlipemia[J]. Clin Chim Acta, 2019, 490:194-199.
doi: S0009-8981(18)30486-8 pmid: 30201373 |
[10] |
Rawshani A, Rawshani A, Franzén S, et al. Risk factors, mortality, and cardiovascular outcomes in patients with type 2 diabetes[J]. N Engl J Med, 2018, 379 (7):633-644.
doi: 10.1056/NEJMoa1800256 URL |
[11] |
GRADE Study Research Group, Nathan DM, Lachin JM, et al. Glycemia reduction in type 2 diabetes-microvascular and cardiovascular outcomes[J]. N Engl J Med, 2022, 387(12):1075-1088.
doi: 10.1056/NEJMoa2200436 URL |
[12] | Fazlali M, Kharazmi F, Kamran M, et al. Effect of oral magnesium sulfate administration on lectin-like oxidized low-density lipoprotein receptor-1 gene expression to prevent atherosclerosis in diabetic rat vessels[J]. J Diabetes Inve stig, 2019, 10(3):650-658. |
[13] |
Qian W, Cai X, Qian Q, et al. Astragaloside IV protects endothelial proge nitor cells from the damage of ox-LDL via the LOX-1/NLRP3 inflammasome pathway[J]. Drug Des Devel Ther, 2019, 13: 2579-2589.
doi: 10.2147/DDDT.S207774 URL |
[14] | Tiong YL, Ng KY, Koh RY, et al. Melatonin inhibits high glucose-induced ox-LDL/LDL expression and apoptosis in human umbilical endothelial cells[J]. Horm Mol Biol Clin Investig, 2020, 41(4). |
[15] | Mortazavi-Jahromi SS, Alizadeh S, Javanbakht MH, et al. Cardioprotective ef fect of β-d-mannuronic acid (M2000) as a novel NSAID on gene expression of oxLDL scavenger receptors in the experimental diabetic model[J]. Immunopharmacol Imm unotoxicol, 2018, 40(4):284-289. |
[16] |
Abbasnezhad A, Niazmand S, Mahmoudabady M, et al. Nigella sativa L. seed regulated eNOS, VCAM-1 and LOX-1 genes expression and improved vasoreactivity in aorta of diabetic rat[J]. J Ethnopharmacol, 2019, 228:142-147.
doi: S0378-8741(18)30582-8 pmid: 30223051 |
[17] |
Marshall SM. The pancreas in health and in diabetes[J]. Diabetologia, 2020, 63(10):1962-1965.
doi: 10.1007/s00125-020-05235-z pmid: 32894305 |
[18] |
Volpe CMO, Villar-Delfino PH, Dos Anjos PMF, et al. Cellular death, reactive oxygen species (ROS) and diabetic complications[J]. Cell Death Dis, 2018, 9(2): 119.
doi: 10.1038/s41419-017-0135-z pmid: 29371661 |
[19] |
Szkudelski T. The mechanism of alloxan and streptozotocin action in B cells of the rat pancreas[J]. Physiol Res, 2001, 50(6):537-546.
pmid: 11829314 |
[20] | Xu K, Liu X, Yin D, et al. PP2A alleviates oxidized LDL-induced endothelial dysfunction by regulating LOX-1/ROS/MAPK axis[J]. Life Sci, 2020, 243:11 7270. |
[21] | Bayatpoor ME, Mirzaee S, Karami Abd M, et al. Crocin treatment decreased pancreatic atrophy, LOX-1 and RAGE mRNA expression of pancreas tissue in chol esterol-fed and streptozotocin-induced diabetic rats[J]. J Complement Integr Med, 2019, 17(2): /j/jcim. 2020.17. issue-2/jcim-2019-0117/jcim-2019-0117. xml. |
[22] |
Islam J, Lee HJ, Yang SH, et al. Expansion of myeloid-derived suppressor cells correlates with renal progression in type 2 diabetic nephropathy[J]. Immune Netw, 2020, 20(2): e18.
doi: 10.4110/in.2020.20.e18 URL |
[23] | Roumeliotis S, Roumeliotis A, Georgianos PI, et al. Oxidized LDL is associated with eGFR decline in proteinuric diabetic kidney disease: A cohort study[J]. Oxid Med Cell Longev, 2021, 2021:2968869. |
[24] |
Zhou X, Liu R, Duan S, et al. High glucose enhances oxLDL-induced apoptosis in human renal proximal tubular epithelial cells largely via inducing lectin-like ox-LDL receptor-1[J]. Pharmacology, 2016, 98(1-2):20-28.
doi: 10.1159/000444934 pmid: 27003929 |
[25] | 郭亚玲, 陈卫东, 杨萍, 等. LOX-1、VCAM-1在糖尿病肾病动脉粥样硬化大鼠中的表达及普罗布考的影响[J]. 国际泌尿系统杂志, 2014, 34(2):177-183. |
[26] | 宋光明, 柴可夫, 杜月光. LOX-1和炎症因子在糖尿病肾病中的作用及糖肾颗粒早期干预研究[J]. 内蒙古中医药, 2016, 35(1):137-139. |
[27] | 杜月光, 钱俊文, 宋光明, 等. LOX-1在2型糖尿病大鼠肾小管间质中的表达及其意义[J]. 中国病理生理杂志, 2013, 29(1):50-55. |
[28] | Tanase DM, Gosav EM, Costea CF, et al. The intricate relationship between type 2 diabetes mellitus (T2DM), insulin resistance (IR), and nonalcoholic fatty liver disease (NAFLD)[J]. J Diabetes Res, 2020, 2020:3920196. |
[29] |
Heidari F, Rabizadeh S, Mansournia MA, et al. Inflammatory, oxidative stress and anti-oxidative markers in patients with endometrial carcinoma and diabetes[J]. Cytokine, 2019, 120:186-190.
doi: S1043-4666(19)30122-X pmid: 31100682 |
[30] |
Ma S, Bai Z, Wu H, et al. The DPP-4 inhibitor saxagliptin ameliorates ox-LDL-induced endothelial dysfunction by regulating AP-1 and NF-κB[J]. Eur J Pharmacol, 2019, 851:186-193.
doi: S0014-2999(19)30016-0 pmid: 30639312 |
[31] | 胡丽叶, 宋光耀, 朱旅云, 等. 2型糖尿病大鼠肝脏LOX-1、eNOS、PPARγ蛋白表达及罗格列酮的干预作用[J]. 临床误诊误治, 2015, 28(6):109-113. |
[32] |
Chen CM, Juan SH, Pai MH, et al. Hyperglycemia induces epithelial-mesenchymal transition in the lungs of experimental diabetes mellitus[J]. Acta Histochem, 2018, 120(6):525-533.
doi: 10.1016/j.acthis.2018.06.004 URL |
[33] |
Korkmaz FT, Shenoy AT, Symer EM, et al. Lectin-like oxidized low-density lipoprotein receptor 1 attenuates pneumonia-induced lung injury[J]. JCI Insight, 2022, 7(23): e149955.
doi: 10.1172/jci.insight.149955 URL |
[34] |
Hu C, Dandapat A, Sun L, et al. Regulation of TGFbeta1-mediated collagen formation by LOX-1: Studies based on forced overexpression of TGFbeta1 in wild-type and lox-1 knock-out mouse cardiac fibroblasts[J]. J Biol Chem, 2008, 283(16):10226-10231.
doi: 10.1074/jbc.M708820200 pmid: 18182394 |
[35] |
Zou XZ, Gong ZC, Liu T, et al. Involvement of epithelial-mesenchymal transition afforded by activation of LOX-1/ TGF-β1/KLF6 signaling pathway in diabetic pulmonary fibrosis[J]. Pulm Pharmacol Ther, 2017, 44:70-77.
doi: 10.1016/j.pupt.2017.03.012 URL |
[36] |
El-Wakeel LM, Fouad FA, Saleem MD, et al. Efficacy and tolerability of sildenafil/l-arginine combination relative to sildenafil alone in patients with organic erectile dysfunction[J]. Andrology, 2020, 8(1):143-147.
doi: 10.1111/andr.12671 pmid: 31267684 |
[37] |
Bajaj HS, Gerstein HC, Rao-Melacini P, et al. Erectile function in men with type 2 diabetes treated with dulaglutide: An exploratory analysis of the REWIND placebo-controlled randomised trial[J]. Lancet Diabetes Endocrinol, 2021, 9 (8):484-490.
doi: 10.1016/S2213-8587(21)00115-7 URL |
[38] | 杨志刚, 程宛钧, 谢瑜, 等. 丹瓜方联合枸橼酸西地那非片治疗痰瘀型2型糖尿病勃起功能障碍的临床观察[J]. 中西医结合研究, 2019, 11(2):93-95. |
[39] |
Wang JS, Li X, Chen ZL, et al. Effect of leech-centipede medicine on improving erectile function in DIED rats via PKC signalling pathway-related molecules[J]. J Ethnopharmacol, 2021, 267:113463.
doi: 10.1016/j.jep.2020.113463 URL |
[40] |
Li X, Feng JL, Chen ZL, et al. Mechanism by which Huoxue Tongluo Qiwei Decoction improves the erectile function of rats with diabetic erectile dysfunction[J]. J Ethnopharmacol, 2022, 283:114674.
doi: 10.1016/j.jep.2021.114674 URL |
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