Improved myocardial perfusion and cardiac function by controlled-release basic fibroblast growth factor using fibrin glue in a canine infarct model

被引:21
|
作者
Nie, Shao-ping [1 ]
Wang, Xiao [1 ]
Qiao, Shi-bin [1 ]
Zeng, Qiu-tang [2 ]
Jiang, Ju-quan [2 ]
Liu, Xiao-qing [2 ]
Zhu, Xiang-ming [2 ]
Cao, Guo-xiang [2 ]
Ma, Chang-sheng [1 ]
机构
[1] Capital Med Univ, Beijing Anzhen Hosp, Dept Cardiol, Beijing 100029, Peoples R China
[2] Huazhong Univ Sci & Technol, Tongji Med Coll, Union Hosp, Wuhan 430030, Peoples R China
来源
基金
中国国家自然科学基金;
关键词
Angiogenesis; Basic fibroblast growth factor; Controlled release; Ischemic heart disease; TRANSMYOCARDIAL LASER REVASCULARIZATION; THERAPEUTIC ANGIOGENESIS; ISCHEMIC-HEART; GENE-THERAPY; DOUBLE-BLIND; IN-VITRO; DISEASE; HEPARIN; TRIAL; FGF-2;
D O I
10.1631/jzus.B1000302
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Objective: Angiogenic therapy is emerging as a potential strategy for the treatment of ischemic heart disease but is limited by a relatively short half-life of growth factors. Fibrin glue (FG) provides a reservoir for controlled- release of growth factors. The aim of this study was to evaluate the effects of basic fibroblast growth factor (bFGF) incorporating FG on angiogenesis and cardiac performance in a canine infarct model. Methods: Acute myocardial infarction was induced by ligation of the left anterior descending coronary artery (LAD). Group I (n=6) underwent ligation of LAD alone. In Group II, transmural channels were created in the infarct area (n=6). In Group III, non-transmural channels were created to locate FG cylinders containing bFGF (n=6). Eight weeks after operation, myocardial perfusion was assessed by single photon emission computed tomography, cardiac function by echocardiography, and vascular development by immunohistochemical staining. Results: Total vascular density and the number of large vessels (internal diameter a parts per thousand yen50 mu m) were dramatically higher in Group III than in Groups I and II at eight weeks. Only the controlled-release group exhibited an improvement in regional myocardial perfusion associated with lower defect score. Animals in Group III presented improved cardiac regional systolic and diastolic functions as well as global systolic function in comparison with the other two groups. Conclusions: Enhanced and sustained angiogenic response can be achieved by controlled-release bFGF incorporating FG within transmyocardial laser channels, thus enabling improvement in myocardial perfusion and cardiac function.
引用
收藏
页码:895 / 904
页数:10
相关论文
共 50 条
  • [42] Fibroblast Growth Factor-1 Released from a Heparin Coacervate Improves Cardiac Function in a Mouse Myocardial Infarction Model
    Wang, Zhouguang
    Long, Daniel W.
    Huang, Yan
    Khor, Sinan
    Li, Xiaokun
    Jian, Xiao
    Wang, Yadong
    ACS BIOMATERIALS SCIENCE & ENGINEERING, 2017, 3 (09): : 1988 - 1999
  • [43] Modification of the descending thoracic aortic anastomotic site using biodegradable felt: Study in a canine model with or without basic fibroblast growth factor
    Fujiwara, Hidenori
    Saiki, Yoshikatsu
    Sato, Mitsuru
    Sakamoto, Naoya
    Ohashi, Toshiro
    Sato, Masaaki
    Tabata, Yasuhiko
    Tabayashi, Koichi
    JOURNAL OF VASCULAR SURGERY, 2010, 51 (01) : 194 - 202
  • [44] Controlled Delivery of Basic Fibroblast Growth Factor Promotes Human Cardiosphere-Derived Cell Engraftment to Enhance Cardiac Repair for Chronic Myocardial Infarction
    Takehara, Naofumi
    Tsutsumi, Yoshiaki
    Tateishi, Kento
    Ogata, Takehiro
    Tanaka, Hideo
    Ueyama, Tomomi
    Takahashi, Tomosaburo
    Takamatsu, Tetsuro
    Fukushima, Masanori
    Komeda, Masashi
    Yamagishi, Masaaki
    Yaku, Hitoshi
    Tabata, Yasuhiko
    Matsubara, Hiroaki
    Oh, Hidemasa
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2008, 52 (23) : 1858 - 1865
  • [45] Controlled intramyocardia-delivery of basic fibroblast growth factor combined with human cardiac stem cell transplantation in chronic myocardial infarction: A randomized controlled preclinical-trial
    Takehara, Naofumi
    Tsutsumi, Yoshiaki
    Ota, Hisanobu
    Tateishi, Kento
    Takahashi, Tomosaburo
    Ueyama, Tomomi
    Yamagishi, Masaaki
    Yaku, Hitoshi
    Tabata, Yasuhiko
    Matsubara, Hiroaki
    Oh, Hidemasa
    CIRCULATION, 2007, 116 (16) : 69 - 70
  • [46] LACK OF FIBROBLAST GROWTH FACTOR-23 (FGF23) PRESERVES CARDIAC FUNCTION IN A MURINE MODEL OF ACUTE MYOCARDIAL INFARCTION
    Ford, Kristopher p
    Slavic, Svetlana
    Zeitz, Ute
    Dolezal, Marlies
    Erben, Reinhold G.
    Andrukhova, Olena
    HEART, 2016, 102 : A131 - A131
  • [47] Spatially-directed angiogenesis using ultrasound-controlled release of basic fibroblast growth factor from acoustically-responsive scaffolds
    Huang, Leidan
    Quesada, Carole
    Aliabouzar, Mitra
    Fowlkes, J. Brian
    Franceschi, Renny T.
    Liu, Zheng
    Putnam, Andrew J.
    Fabiilli, Mario L.
    ACTA BIOMATERIALIA, 2021, 129 : 73 - 83
  • [48] The effect of the controlled release of basic fibroblast growth factor from ionic gelatin-based hydrogels on angiogenesis in a murine critical limb ischemic model
    Layman, Hans
    Spiga, Maria-Grazia
    Brooks, Toby
    Pham, Si
    Webster, Keith A.
    Andreopoulos, Fotios M.
    BIOMATERIALS, 2007, 28 (16) : 2646 - 2654
  • [49] Development of a stent capable of the controlled release of basic fibroblast growth factor and argatroban to treat cerebral aneurysms: In vitro experiment and evaluation in a rabbit aneurysm model
    Arai, Daisuke
    Ishii, Akira
    Ikeda, Hiroyuki
    Abekura, Yu
    Nishi, Hidehisa
    Miyamoto, Susumu
    Tabata, Yasuhiko
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2019, 107 (06) : 2185 - 2194
  • [50] Drug delivery system controlled-release basic fibroblast growth factor (dds-bfgf) and multimodality for chronic refractory digital ulcers due to eosinophilic granulomatosis with polyangiitis (egpa): a case report
    Kirinoki-Ichikawa, S.
    Miyamoto, M.
    Takagi, G.
    Kohen, M.
    Kubota, Y.
    Tara, S.
    Shirai, Y.
    Kuwana, M.
    Shimizu, W.
    WOUND REPAIR AND REGENERATION, 2020, 28 (04) : A16 - A16