Adenovirus-mediated gene transfer of transforming growth factor-β3, but not transforming growth factor-β1, inhibits constrictive remodeling and reduces luminal loss after coronary angioplasty

被引:35
|
作者
Kingston, PA
Sinha, S
Appleby, CE
David, A
Verakis, T
Castro, MG
Lowenstein, PR
Heagerty, AM
机构
[1] Univ Manchester, Vasc Gene Therapy Unit, Manchester, Lancs, England
[2] Manchester Royal Infirm, Dept Med, Manchester M13 9WL, Lancs, England
关键词
angioplasty; gene therapy; restenosis; collagen;
D O I
10.1161/01.CIR.0000097068.49080.A0
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-Extracellular matrix (ECM) remodeling is central to the development of restenosis after PTCA. Substantial evidence implicates transforming growth factor-beta(1) (TGF-beta(1)), a regulator of ECM deposition by vascular cells, in its pathogenesis. TGF-beta(3) reduces TGF-beta(1)-induced ECM deposition in cutaneous wounds. We therefore investigated the effects of intracoronary expression of TGF-beta(3) and TGF-beta(1) on luminal loss after angioplasty. Methods and Results-Porcine coronary arteries received an adenovirus expressing TGF-beta(3), TGF-beta(1), or lacZ (beta-galactosidase), or PBS only, at the site of angioplasty. Morphometric analysis 28 days after angioplasty confirmed reduced luminal loss in TGF-beta(3) vessels (-0.65+/-0.10 mm(2)) compared with lacZ (-1.18+/-0.19 mm(2)) or PBS only (-1.19+/-0.17 mm(2); P=0.003). Luminal loss was not reduced in TGF-beta(1) vessels (-1.02+/-0.19 mm(2); P=0.48). An increase in the external elastic lamina area in TGF-beta(3)-treated vessels (-0.73+/-0.32 mm(2)) contrasted with decreases in control vessels (mean, -0.53+/-0.17 mm(2); P=0.001) and TGF-beta(1) vessels (-0.87+/-0.34 mm(2); P=0.003). Collagen content increased at the site of injury in TGF-beta(3)-treated vessels (26.1+/-14.2%) but decreased in the lacZ (-22.8+/-6.6%) and PBS-only (-23.4+/-7.0%; P=0.002) groups and was not significantly changed in TGF-beta(1)-treated vessels. Conclusions-Expression of TGF-beta(3) inhibits constrictive remodeling after PTCA and reduces luminal loss. This is accompanied by increased adventitial collagen, which may act as an external "scaffold" preventing vessel constriction. These findings confirm the potential of gene therapies that modify ECM remodeling for prophylaxis of restenosis.
引用
收藏
页码:2819 / 2825
页数:7
相关论文
共 50 条
  • [31] Transforming growth factor-β1 and disorders of the lung
    Blanca Camoretti-Mercado
    Julian Solway
    Cell Biochemistry and Biophysics, 2005, 43 : 131 - 148
  • [32] Transforming growth factor-β1 and prostate cancer
    Wikström, P
    Bergh, A
    Damber, JE
    SCANDINAVIAN JOURNAL OF UROLOGY AND NEPHROLOGY, 2000, 34 (02): : 85 - 94
  • [33] Mandibular reconstruction with transforming growth factor-β1
    Sherris, DA
    Murakami, CS
    Larrabee, WF
    Bruce, AG
    LARYNGOSCOPE, 1998, 108 (03): : 368 - 372
  • [34] Transforming growth factor-β1 in intrauterine adhesion
    Abudukeyoumu, Ayitila
    Li, Ming-Qing
    Xie, Feng
    AMERICAN JOURNAL OF REPRODUCTIVE IMMUNOLOGY, 2020, 84 (02)
  • [35] IGF-I production by adult rat hepatocytes is stimulated by transforming growth factor-α and transforming growth factor-β1
    Voci, A
    Arvigo, M
    Massajoli, M
    Garrone, S
    Bottazzi, C
    Demori, I
    Gallo, G
    EUROPEAN JOURNAL OF ENDOCRINOLOGY, 1999, 140 (06) : 577 - 582
  • [36] Vascular repair processes mediated by transforming growth factor-β
    V. Lindner
    Zeitschrift für Kardiologie, 2001, 90 (Suppl 3): : 17 - 22
  • [37] Fucoidan inhibits activation and receptor binding of transforming growth factor-β1
    Kim, Tae Hee
    Lee, Eun Kyoung
    Lee, Mee Jeong
    Kim, Ji Hyun
    Yang, Won Seok
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2013, 432 (01) : 163 - 168
  • [38] Transforming growth factor-β1 inhibits steroidogenesis in human trophoblast cells
    Luo, S
    Yu, H
    Wu, DN
    Peng, C
    MOLECULAR HUMAN REPRODUCTION, 2002, 8 (04) : 318 - 325
  • [39] Transforming growth factor-β1 and tumor growth factor-β-inducible gene-H3 in nonrenal transplant cyclosporine nephropathy
    Langham, RG
    Egan, MK
    Dowling, JP
    Gilbert, RE
    Thomson, NM
    TRANSPLANTATION, 2001, 72 (11) : 1826 - 1829
  • [40] Transforming growth factor-β signaling in hypertensive remodeling of porcine aorta
    Popovic, Natasa
    Bridenbaugh, Eric A.
    Neiger, Jessemy D.
    Hu, Jin-Jia
    Vannucci, Marina
    Mo, Qianxing
    Trzeciakowski, Jerome
    Miller, Matthew W.
    Fossum, Theresa W.
    Humphrey, Jay D.
    Wilson, Emily
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2009, 297 (06): : H2044 - H2053