山东大学学报 (医学版) ›› 2021, Vol. 59 ›› Issue (11): 61-66.doi: 10.6040/j.issn.1671-7554.0.2021.0222
顼小凤,王健祯,杨泽华
XU Xiaofeng, WANG Jianzhen, YANG Zehua
摘要: 目的 探讨不同程度烧伤患者血浆游离线粒体DNA(mtDNA)拷贝数变化及在烧伤病情中的作用。 方法 根据患者烧伤程度、面积(TBSA)选取重度烧伤患者30例(重度烧伤组)及中度烧伤患者30例(中度烧伤组),纳入同期30名健康体检者(正常对照组)。采集所有参试者入院第1、8~11、18~21天的血浆标本。所有血浆标本经试剂盒提取DNA,通过实时荧光定量PCR法检测血浆游离mtDNA拷贝数。分析mtDNA拷贝数与急性生理学和慢性健康状况Ⅱ(APACHEⅡ)、多器官功能障碍综合征评分(MODS)、TBSA、Ⅲ°烧伤面积、烧伤指数及生化指标间相关性,并将上述指标进行Logistic回归分析。 结果 重度烧伤组入院第1天血浆游离mtDNA拷贝数高于中度烧伤组和正常对照组,重度烧伤组血浆游离mtDNA拷贝数在第8~11天到达峰值之后降低; mtDNA拷贝数与烧伤总面积、Ⅲ°烧伤面积、烧伤指数、APACHE Ⅱ评分、MODS呈正相关(P<0.05),与生化指标天冬氨酸氨基转移酶、谷丙氨酸氨基转移酶、总胆红素、降钙素原、白细胞呈正相关(P<0.01),与总蛋白、白蛋白及前白蛋白呈负相关(P<0.01);经Logistic回归分析显示,患者APACHEⅡ评分和住院当天mtDNA拷贝数为烧伤严重程度的独立危险因素(P<0.05);mtDNA拷贝数在诊断烧伤程度的ROC曲线下面积为0.904,敏感度为0.833,特异性为0.867。 结论 烧伤患者血浆游离mtDNA拷贝数与烧伤程度和多项生化指标具有相关性,为临床判断烧伤程度提供依据。
中图分类号:
[1] Alinejad F, Momeni M, Keyvani H, et al. Introduction to a case of orf disease in a burn wound at Motahari Hospital[J]. Ann Burns Fire Disasters, 2018, 31(3): 243-245. [2] McKeever L, Bonini M, Braunschweig C. Feeding during phases of altered mitochondrial activity: a theory[J]. JPEN J Parenter Enteral Nutr, 2018, 42(5): 855-863. [3] Hirata Y. Reactive oxygen species(ROS)signaling: regulatory mechanisms and pathophysiological roles[J]. Yakugaku Zasshi, 2019, 139(10): 1235-1241. [4] Johansson PI, Nakahira K, Rogers AJ, et al. Plasma mitochondrial DNA and metabolomic alterations in severe critical illness[J]. Crit Care, 2018, 22(1): 360. [5] 中国医师协会烧伤医师分会《烧伤感染诊治指南》编辑委. 烧伤感染的诊断标准与治疗指南(2012版)[J]. 中华烧伤杂志, 2012, 28(6): 401-403. [6] Zheng J, Cui NH, Zhang S, et al. Leukocyte mitochondrial DNA copy number and risk of thyroid cancer: a two-stage case-control study[J]. Front Endocrinol, 2019, 10: 421. doi:10.3389/fendo.2019.00421. [7] Qin C, Gu J, Liu R, et al. Release of mitochondrial DNA correlates with peak inflammatory cytokines in patients with acute myocardial infarction[J]. Anatol J Cardiol, 2017, 17(3): 224-228. [8] Fujimoto C, Yamasoba T. Mitochondria-targeted antioxidants for treatment of hearing loss: a systematic review[J]. Antioxidants(Basel), 2019, 8(4): 109. [9] Annesley SJ, Fisher PR. Mitochondria in health and disease[J]. Cells, 2019, 8(7): 680. [10] Yang Y, Karakhanova S, Hartwig W, et al.Mitochondria and mitochondrial ROS in cancer: novel targets for anticancer therapy[J]. J Cell Physiol, 2016, 231(12): 2570-2581. [11] Pohjoismäki JL, Goffart S. The role of mitochondria in cardiac development and protection[J]. Free Radic Biol Med, 2017, 106: 345-354. doi:10.1016/j.freeradbiomed.2017.02.032. [12] Akbari M, Kirkwood TBL, Bohr VA. Mitochondria in the signaling pathways that control longevity and health span[J]. Ageing Res Rev, 2019, 54: 100940. doi:10.1016/j.arr.2019.100940. [13] 李凤娇, 顾雯, 俞捷, 等. 线粒体自噬机制、相关疾病及中药对其调节作用的研究进展[J]. 中国药房, 2018, 29(20): 2865-2871. [14] Gao L, Liu X, Zhang D, et al. Early diagnosis of bacterial infection in patients with septicopyemia by laboratory analysis of PCT, CRP and IL-6[J]. Exp Ther Med, 2017, 13(6): 3479-3483. [15] Zuo KJ, Medina A, Tredget EE. Important developments in burn care[J]. Plast Reconstr Surg, 2017, 139(1): 120-138. [16] Yuan Y, Chen Y, Peng T, et al. Mitochondrial ROS-induced lysosomal dysfunction impairs autophagic flux and contributes to M1 macrophage polarization in a diabetic condition[J]. Clin Sci(Lond), 2019, 133(15): 1759-1777. [17] Pandi P, Jain A, Raju S, et al. Therapeutic approaches for the delivery of TNF-α siRNA[J]. Ther Deliv, 2017, 8(5): 343-355. [18] 王鹿, 李丽萍, 邢欣, 等. 肝脏巨噬细胞及其在肝损伤和修复中的作用[J]. 中国临床药理学与治疗学, 2018, 23(10): 114-121. [19] 雷玮, 王丹丹. 肝损伤血清标志物研究进展[J]. 实用肝脏病杂志, 2017, 20(2): 252-256. [20] Reznichenko A, Korstanje R. The role of platelet-activating factor in mesangial pathophysiology[J]. Am J Pathol, 2015, 185(4): 888-896. [21] Dan Dunn J, Alvarez LA, Zhang X, et al. Reactive oxygen species and mitochondria: a Nexus of cellular homeostasis[J]. Redox Biol, 2015, 6: 472-485. doi:10.1016/j.redox.2015.09.005. [22] Kan C, Ungelenk L, Lupp A, et al. Ischemia-reperfusion injury in aged livers-the energy metabolism, inflammatory response, and autophagy[J]. Transplantation, 2018, 102(3): 368-377. [23] 任华建, 胡琼源, 任建安. 线粒体DNA损伤在缺血再灌注中的研究进展[J]. 中华实验外科杂志, 2019, 36(4): 786-789. [24] Chen YH, Wang ZG, Yu MM, et al. The predictive ability of liver function indexes on 18F-FDG uptake in the liver[J]. Nuklearmedizin Nucl Med, 2017, 56(6): 239-242. [25] Liang FF, Wang J, Li L, et al. Chronic liver disease increases with damage to intestinal barrier function[J]. Zhonghua Gan Zang Bing Za Zhi, 2018, 26(8): 612-617. [26] 赖晓敏, 熊爱兵. 严重烧伤后中性粒细胞、巨噬细胞功能的变化及其影响[J]. 中外医疗, 2014, 33(11): 195. |
[1] | 罗潇,戴翔,贾存显,宋华翠,高莉洁. 基于面板数据模型研究某企业员工血压水平的变化趋势及影响因素[J]. 山东大学学报 (医学版), 2022, 60(2): 109-114. |
[2] | 张琨,张孝国,崔杏杏,陈士俊. 慢性HBV感染者外周血单个核细胞凋亡相关因子的表达及其与乙肝慢性化的关系[J]. 山东大学学报(医学版), 2016, 54(7): 38-42. |
[3] | 关恒云, 王春荣, 吕燕,张雯,杨国樑,刘岚铮. 2012年济南市手足口病病原学及流行特征[J]. 山东大学学报(医学版), 2013, 51(10): 101-104. |
|