Lipocalin-2 Promotes M1 Macrophages Polarization in a Mouse Cardiac Ischaemia-Reperfusion Injury Model

被引:48
|
作者
Cheng, L. [1 ]
Xing, H. [1 ]
Mao, X. [1 ]
Li, L. [1 ]
Li, X. [1 ]
Li, Q. [2 ]
机构
[1] Hubei Univ Arts & Sci, Dept Obstet & Gynaecol, Xiangyan Cent Hosp, Xiangyang, Peoples R China
[2] Hubei Univ Arts & Sci, Dept Ophtalmol, Xiangyan Cent Hosp, Xiangyang, Peoples R China
关键词
ALTERNATIVE ACTIVATION; EXPRESSION; INFECTION;
D O I
10.1111/sji.12245
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Ischaemia-reperfusion (IR) injury is a major issue in cardiac transplantation. Inflammatory processes play a major role in myocardial IR injury. Lipocalin-2 (Lcn2), which is also known as neutrophil gelatinase-associated lipocalin, has multiple functions that include the regulation of cell death/survival, cell migration/invasion, cell differentiation and iron delivery. In our study, the hearts of C57BL/6 mice were flushed with and stored in cold Bretschneider solution for 8h and then transplanted into a syngeneic recipient. We found that Lcn2 neutralization decreased the recruitment of neutrophils and macrophages. Troponin T (TnT) production, 24h after myocardial IR injury, was reduced through anti-Lcn2 antibody administration. The cardiac output at 60mmHg of afterload pressure was significantly increased in hearts administrated with anti-Lcn2 antibody administration (anti-Lcn-2: 58.9 +/- 5.62ml/min; control: 25.8 +/- 4.1ml/min; P<0.05). Anti-Lcn2 antibody treatment suppressed M1 marker (IL-12, IL-23 and iNOS) expression but increased M2 marker (IL-10, Arg1 and Mrc1) expression. Furthermore, in our vitro and vivo experiments, we found that anti-Lcn2 antibody treatment failed to induce M1-related gene expression in response to LPS and that Lcn2 neutralization enhanced the expression of M2-related genes following IL-4 treatment. In conclusion, Lcn2 promotes M1 polarization, and Lcn2 neutralization attenuates cardiac IR injury.
引用
收藏
页码:31 / 38
页数:8
相关论文
共 50 条
  • [1] Secreted protein lipocalin-2 promotes microglial M1 polarization
    Jang, Eunha
    Lee, Shinrye
    Kim, Jong-Heon
    Kim, Jae-Hong
    Seo, Jung-Wan
    Lee, Won-Ha
    Mori, Kiyoshi
    Nakao, Kazuwa
    Suk, Kyoungho
    FASEB JOURNAL, 2013, 27 (03): : 1176 - 1190
  • [2] Lipocalin-2 released in response to cerebral ischaemia mediates reperfusion injury in mice
    Wang, Guona
    Weng, Yi-Chinn
    Han, Xiqian
    Whaley, James D.
    McCrae, Keith R.
    Chou, Wen-Hai
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2015, 19 (07) : 1637 - 1645
  • [3] An in vivo model of ischaemia-reperfusion injury and ischaemic preconditioning in the mouse heart
    Fisher, SG
    Marber, MS
    JOURNAL OF PHARMACOLOGICAL AND TOXICOLOGICAL METHODS, 2002, 48 (03) : 161 - 169
  • [4] The depletion of donor macrophages reduces ischaemia-reperfusion injury after mouse lung transplantation
    Tsushima, Yukio
    Jang, Jae-Hwi
    Yamada, Yoshito
    Schwendener, Reto
    Suzuki, Kenji
    Weder, Walter
    Jungraithmayr, Wolfgang
    EUROPEAN JOURNAL OF CARDIO-THORACIC SURGERY, 2014, 45 (04) : 703 - 709
  • [5] Shenlian extract attenuates myocardial ischaemia-reperfusion injury via inhibiting M1 macrophage polarization by silencing miR-155
    Song, Min
    Cui, Xihe
    Zhang, Jing
    Li, Yujie
    Li, Jingjing
    Zang, Yuanlong
    Li, Qi
    Yang, Qing
    Chen, Ying
    Cai, Weiyan
    Weng, Xiaogang
    Wang, Yajie
    Zhu, Xiaoxin
    PHARMACEUTICAL BIOLOGY, 2022, 60 (01) : 2011 - 2024
  • [6] Humanin prevents brain mitochondrial dysfunction in a cardiac ischaemia-reperfusion injury model
    Kumfu, Sirinart
    Charununtakorn, Savitree T.
    Jaiwongkam, Thidarat
    Chattipakorn, Nipon
    Chattipakorn, Siriporn C.
    EXPERIMENTAL PHYSIOLOGY, 2016, 101 (06) : 697 - 707
  • [7] AMELIORATION OF ISCHAEMIA-REPERFUSION INJURY IN A MOUSE MODEL OF CARDIAC TRANSPLANTATION USING A NOVEL MITOCHONDRIA-TARGETED ANTIOXIDANT
    Dare, Anna
    Logan, Angela
    Prime, Tracy
    Goddard, Martin
    Bolton, Eleanor M.
    Bradley, J. A.
    Pettigrew, Gavin J.
    Saeb-Parsy, Kourosh
    Murphy, Michael
    TRANSPLANT INTERNATIONAL, 2013, 26 : 36 - 36
  • [8] Runx1 deficiency protects against cardiac ischaemia-reperfusion injury in ex vivo mouse hearts
    Riddell, A. H.
    Nicklin, S. A.
    Cameron, E. R.
    Loughrey, C. M.
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2018, 120 : 21 - 21
  • [9] Protective Effects of Hydrogen Gas Inhalation for Hindlimb Ischaemia-Reperfusion Injury in a Mouse Model
    Hayashi, Masanori
    Obara, Hideaki
    Matsuda, Sachiko
    Homma, Koichiro
    Sasaki, Junichi
    Matsubara, Kentaro
    Higuchi, Makoto
    Sano, Motoaki
    Masugi, Yohei
    Kitagawa, Yuko
    EUROPEAN JOURNAL OF VASCULAR AND ENDOVASCULAR SURGERY, 2024, 68 (01) : 120 - 128
  • [10] The role of macrophages in the development of biliary injury in a lipopolysaccharide-aggravated hepatic ischaemia-reperfusion model
    Reiling, J.
    Bridle, K. R.
    Schaap, F. G.
    Jaskowski, L.
    Santrampurwala, N.
    Britton, L. J.
    Campbell, C. M.
    Jansen, P. L. M.
    Damink, S. W. M. Olde
    Crawford, D. H. G.
    Dejong, C. H. C.
    Fawcett, J.
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2018, 1864 (04): : 1284 - 1292