中华神经医学杂志
中華神經醫學雜誌
중화신경의학잡지
CHINESE JOURNAL OF NEUROMEDICINE
2014年
2期
151-155
,共5页
刘恒方%高灵利%王建平%肖波%刘田田%吴世陶%赵源征%郭亚培%王兵
劉恆方%高靈利%王建平%肖波%劉田田%吳世陶%趙源徵%郭亞培%王兵
류항방%고령리%왕건평%초파%류전전%오세도%조원정%곽아배%왕병
粥样硬化斑块%颈动脉%脂联素%肿瘤坏死因子-α%白介素-6
粥樣硬化斑塊%頸動脈%脂聯素%腫瘤壞死因子-α%白介素-6
죽양경화반괴%경동맥%지련소%종류배사인자-α%백개소-6
Atherosclerotic plaque%Carotid%Adiponectin%Tumor necrosis factor-α%Interleukin-6
目的 探讨脂联素(APN)、肿瘤坏死因子-α(TNF-α)、白介素-6(IL-6)与人颈动脉粥样硬化斑块形成及稳定性的关系. 方法 选取郑州大学第五附属医院血管外科自2011年4月至2012年7月行颈动脉内膜剥脱术患者48例作为颈动脉粥样硬化斑块组,并依据术前颈动脉CTA检查结果分为软斑组(n=16)、混合斑组(n=16)和硬斑组(n=16);选取普通外科因外伤手术切除的25例肠系膜上动脉标本作为标本对照组;选取同期体检健康者25例作为健康对照组.采用酶联免疫吸附法(ELISA法)测定颈动脉粥样硬化斑块组和健康对照组血清TNF-α 、IL-6含量,应用反转录-聚合酶链反应(RT-PCR)和Western blotting方法分别检测颈动脉粥样硬化斑块组和标本对照组APNmRNA和蛋白表达水平. 结果 与健康对照组相比,软斑组、混合斑组、硬斑组血清TNF-α、IL-6含量均明显增高,差异有统计学意义(P<0.05);且软斑组TNF-α、IL-6含量明显高于硬斑组,差异有统计学意义(P<0.05).与标本对照组相比,软斑组、混合斑组、硬斑组APN mRNA及蛋白表达均明显下调,差异有统计学意义(P<0.05);且软斑组APN mRNA及蛋白表达水平明显低于硬斑组,差异有统计学意义(P<0.05).颈动脉粥样硬化斑块组血清TNF-α与IL-6含量呈正相关关系(r=0.810,P=0.000),血清TNF-α、IL-6含量分别与APN蛋白表达水平呈负相关关系(r=-0.760,P=0.000;r=-0.519,P=0.007). 结论 APN、TNF-α、IL-6可能参与了人颈动脉粥样硬化斑块的形成及稳定.
目的 探討脂聯素(APN)、腫瘤壞死因子-α(TNF-α)、白介素-6(IL-6)與人頸動脈粥樣硬化斑塊形成及穩定性的關繫. 方法 選取鄭州大學第五附屬醫院血管外科自2011年4月至2012年7月行頸動脈內膜剝脫術患者48例作為頸動脈粥樣硬化斑塊組,併依據術前頸動脈CTA檢查結果分為軟斑組(n=16)、混閤斑組(n=16)和硬斑組(n=16);選取普通外科因外傷手術切除的25例腸繫膜上動脈標本作為標本對照組;選取同期體檢健康者25例作為健康對照組.採用酶聯免疫吸附法(ELISA法)測定頸動脈粥樣硬化斑塊組和健康對照組血清TNF-α 、IL-6含量,應用反轉錄-聚閤酶鏈反應(RT-PCR)和Western blotting方法分彆檢測頸動脈粥樣硬化斑塊組和標本對照組APNmRNA和蛋白錶達水平. 結果 與健康對照組相比,軟斑組、混閤斑組、硬斑組血清TNF-α、IL-6含量均明顯增高,差異有統計學意義(P<0.05);且軟斑組TNF-α、IL-6含量明顯高于硬斑組,差異有統計學意義(P<0.05).與標本對照組相比,軟斑組、混閤斑組、硬斑組APN mRNA及蛋白錶達均明顯下調,差異有統計學意義(P<0.05);且軟斑組APN mRNA及蛋白錶達水平明顯低于硬斑組,差異有統計學意義(P<0.05).頸動脈粥樣硬化斑塊組血清TNF-α與IL-6含量呈正相關關繫(r=0.810,P=0.000),血清TNF-α、IL-6含量分彆與APN蛋白錶達水平呈負相關關繫(r=-0.760,P=0.000;r=-0.519,P=0.007). 結論 APN、TNF-α、IL-6可能參與瞭人頸動脈粥樣硬化斑塊的形成及穩定.
목적 탐토지련소(APN)、종류배사인자-α(TNF-α)、백개소-6(IL-6)여인경동맥죽양경화반괴형성급은정성적관계. 방법 선취정주대학제오부속의원혈관외과자2011년4월지2012년7월행경동맥내막박탈술환자48례작위경동맥죽양경화반괴조,병의거술전경동맥CTA검사결과분위연반조(n=16)、혼합반조(n=16)화경반조(n=16);선취보통외과인외상수술절제적25례장계막상동맥표본작위표본대조조;선취동기체검건강자25례작위건강대조조.채용매련면역흡부법(ELISA법)측정경동맥죽양경화반괴조화건강대조조혈청TNF-α 、IL-6함량,응용반전록-취합매련반응(RT-PCR)화Western blotting방법분별검측경동맥죽양경화반괴조화표본대조조APNmRNA화단백표체수평. 결과 여건강대조조상비,연반조、혼합반조、경반조혈청TNF-α、IL-6함량균명현증고,차이유통계학의의(P<0.05);차연반조TNF-α、IL-6함량명현고우경반조,차이유통계학의의(P<0.05).여표본대조조상비,연반조、혼합반조、경반조APN mRNA급단백표체균명현하조,차이유통계학의의(P<0.05);차연반조APN mRNA급단백표체수평명현저우경반조,차이유통계학의의(P<0.05).경동맥죽양경화반괴조혈청TNF-α여IL-6함량정정상관관계(r=0.810,P=0.000),혈청TNF-α、IL-6함량분별여APN단백표체수평정부상관관계(r=-0.760,P=0.000;r=-0.519,P=0.007). 결론 APN、TNF-α、IL-6가능삼여료인경동맥죽양경화반괴적형성급은정.
Objective To investigate the correlation between levels of adiponectin (APN) and tumor necrosis factor-α (TNF-α) and interleukin-6 (IL-6) and both formation and stability of human carotid atherosclerotic plaques.Methods Forty-eight specimens from patients with carotid atherosclerotic plaques (carotid plaque group),admitted to our hospital from April 2011 to July 2012 and performed carotid endarterectomy,and 25 specimens from patients with superior mesenteric artery and 25 healthy subjects (specimen control group and healthy control group,respectively) were collected in our study.The carotid atherosclerotic plaque specimens were sub-divided into soft plaque group (n=16),mixed plaque group (n=16) and hard plaque group (n=16) according to the results ofCT angiography (CTA).The serum TNF-α and IL-6 levels in the carotid plaque group and the healthy control group were measured by enzyme linked immunosorbent assay (ELISA),and the mRNA and protein expressions of APN in the carotid plaque group and the specimen control group were determined by reverse transcription-polymerase chain reaction(RT-PCR) and Western blotting.Results The levels of serum TNF-α and IL-6 in all patients with carotid atherosclerotic plaques were significantly increased as compared with those in the healthy control group (P<0.05); those in soft plaque group was significantly higher than those in the hard plaque group (P<0.05).The mRNA and protein expressions of APN in all patients with carotid atherosclerotic plaque were significantly decreased as compared with those in specimen control group (P<0.05); soft plaque group exhibited lower mRNA and protein expressions of APN than hard plaque group (P<0.05); there was a positive correlation between the serum TNF-α and IL-6 levels in the carotid plaque group (r=0.810,P=0.000); there was negative correlation between the levels of serum TNF-α and IL-6 and the protein expression of APN in the carotid plaque group (r=-0.760,P=0.000; r=-0.519,P=0.007,respectively).Conclusion APN,TNF-α and IL-6 are likely to participate in the formation and stability of human carotid atherosclerotic plaques.