Impaired wound healing and angiogenesis in eNOS-deficient mice

被引:323
作者
Lee, PC
Salyapongse, AN
Bragdon, GA
Shears, LL
Watkins, SC
Edington, HDJ
Billiar, TR
机构
[1] Univ Pittsburgh, Dept Surg, Pittsburgh, PA 15261 USA
[2] Univ Pittsburgh, Ctr Biol Imaging, Pittsburgh, PA 15261 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 1999年 / 277卷 / 04期
关键词
nitric oxide; nitric oxide synthase; endothelial nitric oxide synthase; wound repair; endothelial nitric oxide synthase knockout; endothelial cell;
D O I
10.1152/ajpheart.1999.277.4.H1600
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
A role for nitric oxide (NO) in wound healing has been proposed; however, the absolute requirement of NO for wound healing in vivo and the contribution of endothelial NO synthase (eNOS) have not been determined. Experiments were carried out using eNOS gene knockout (KO) mice to determine the requirement for eNOS on wound closure and wound strength. Excisional wound closure was significantly delayed in the eNOS KO mice (29.4 +/- 2.2 days)compared with wild-type (WT) controls (20.2 +/- 0.4 days). At 10 days, incisional wound tensile strength demonstrated a 38% reduction in the eNOS KO mice. Because effective wound repair requires growth factor-stimulated angiogenesis, in vitro and in vivo angiogenesis assays were performed in the mice to assess the effects of eNOS deficiency on angiogenesis. Endothelial cell sprouting assays confirmed in vitro that eNOS is required for proper endothelial cell migration, proliferation, and differentiation. Aortic segments harvested from eNOS KO mice cultured with Matrigel demonstrated a significant reduction in endothelial cell sprouting and [H-3]thymidine incorporation compared with WT mice at 5 days. Capillary ingrowth into subcutaneously implanted Matrigel plugs was significantly reduced in eNOS KO mice (2.67 +/- 0.33 vessels/plug) compared with. WT mice (10.17 +/- 0.79 vessels/plug). These results clearly show that eNOS plays a significant role in facilitating wound repair and growth factor-stimulated angiogenesis.
引用
收藏
页码:H1600 / H1608
页数:9
相关论文
共 33 条
[1]  
ALBINA JE, 1990, J IMMUNOL, V144, P3877
[2]   ANGIOGENESIS IN WOUND-HEALING [J].
ARNOLD, F ;
WEST, DC .
PHARMACOLOGY & THERAPEUTICS, 1991, 52 (03) :407-422
[3]  
BARBUL A, 1990, SURGERY, V108, P331
[4]  
Brown KJ, 1996, LAB INVEST, V75, P539
[5]   EXPRESSION OF VASCULAR-PERMEABILITY FACTOR (VASCULAR ENDOTHELIAL GROWTH-FACTOR) BY EPIDERMAL-KERATINOCYTES DURING WOUND-HEALING [J].
BROWN, LF ;
YEO, KT ;
BERSE, B ;
YEO, TK ;
SENGER, DR ;
DVORAK, HF ;
VANDEWATER, L .
JOURNAL OF EXPERIMENTAL MEDICINE, 1992, 176 (05) :1375-1379
[6]  
BULGRIN JP, 1995, WOUNDS, V7, P48
[7]   Diphenylhydantoin sodium promotes early and marked angiogenesis and results in increased collagen deposition and tensile strength in healing wounds [J].
DaCosta, ML ;
Regan, MC ;
Al Sader, M ;
Leader, M ;
Bouchier-Hayes, D .
SURGERY, 1998, 123 (03) :287-293
[8]   Suppression of apoptosis by nitric oxide via inhibition of interleukin-1 beta-converting enzyme (ICE)-like and cysteine protease protein (CPP)-32-like proteases [J].
Dimmeler, S ;
Haendeler, J ;
Nehls, M ;
Zeiher, AM .
JOURNAL OF EXPERIMENTAL MEDICINE, 1997, 185 (04) :601-607
[9]   COMPARISON OF THE EFFECTS OF MOIST AND DRY CONDITIONS ON THE PROCESS OF ANGIOGENESIS DURING DERMAL REPAIR [J].
DYSON, M ;
YOUNG, SR ;
HART, J ;
LYNCH, JA ;
LANG, S .
JOURNAL OF INVESTIGATIVE DERMATOLOGY, 1992, 99 (06) :729-733
[10]   ANGIOGENESIS - INITIATION AND CONTROL [J].
FOLKMAN, J .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1982, 401 (DEC) :212-227