Neovascularization of poly(ether ester) block-copolymer scaffolds in vivo:: Long-term investigations using intravital fluorescent microscopy

被引:137
作者
Druecke, D
Langer, S
Lamme, E
Pieper, J
Ugarkovic, M
Steinau, HU
Homann, HH
机构
[1] Ruhr Univ Bochum, Burn Ctr, Dept Plast & Hand Surg, D-44789 Bochum, Germany
[2] ISOTIS NV, Bilthoven, Netherlands
关键词
biomaterials; block-copolymer scaffolds; intravital microscopy; microcirculation; mouse skinfold chamber; neovascularization; tissue engineering;
D O I
10.1002/jbm.a.20016
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Poly(ether ester) block-copolymer scaffolds of different pore size were implanted into the dorsal skinfold chamber of balb / c mice. Using intravital fluorescent microscopy, the temporal course of neovascularization into these scaffolds was quantitatively analyzed. Three scaffold groups (diameter, 5 mm; 220-260 thickness, mum; n = 30) were implanted. Different pore sizes were evaluated: small (20-75 mum), medium (75-212 mum) and large pores (250-300 mum). Measurements were performed on days 8, 12, 16, and 20 in the surrounding normal tissue, in the border zone, and in the center of the scaffold. Standard microcirculatory parameters were assessed (plasma leakage, vessel diameter, red blood cell velocity, and functional vessel density). The large-pored scaffolds showed significantly higher functional vessel density in the border zone and in the center (days 8 and 12) compared with the scaffold with the small and medium-sized pores. These data correlated with a larger vessel diameter and a higher red blood cell velocity in the large-pored scaffold group. Interestingly, during the evaluation period the microcirculatory parameters on the edge of the scaffolds returned to values similar to those found in the surrounding tissue. In the center of the scaffold, however, neovascularization was still active 20 days after implantation. Plasma leakage and vessel diameter were higher in the center of the scaffold. Red blood cell velocity and functional vessel density were 50% lower than in the surrounding tissue. In conclusion, the dorsal skinfold chamber model in mice allows long-term study of blood vessel growth and remodeling in porous biomedical materials. The rate of vessel ingrowth into poly(ether ester) block-copolymer scaffolds is influenced by pore size and was highest in the scaffold with the largest pores. The data generated with this model contribute to knowledge about the development of functional vessels and tissue ingrowth into biomaterials. (C) 2003 Wiley Periodicals, Inc.
引用
收藏
页码:10 / 18
页数:9
相关论文
共 40 条
  • [1] Beumer G. J., 1993, Clinical Materials, V14, P21, DOI 10.1016/0267-6605(93)90043-7
  • [2] DEGRADATIVE BEHAVIOR OF POLYMERIC MATRICES IN (SUB)DERMAL AND MUSCLE-TISSUE OF THE RAT - A QUANTITATIVE STUDY
    BEUMER, GJ
    VANBLITTERSWIJK, CA
    PONEC, M
    [J]. BIOMATERIALS, 1994, 15 (07) : 551 - 559
  • [3] A technique for quantitative three-dimensional analysis of microvascular structure
    Brey, EM
    King, TW
    Johnston, C
    McIntire, LV
    Reece, GP
    Patrick, CW
    [J]. MICROVASCULAR RESEARCH, 2002, 63 (03) : 279 - 294
  • [4] Femoral canal occlusion in total hip replacement using a resorbable and flexible cement restrictor
    Bulstra, SK
    Geesink, RGT
    Bakker, D
    Bulstra, TH
    Bouwmeester, SJM
    vanderLinden, AJ
    [J]. JOURNAL OF BONE AND JOINT SURGERY-BRITISH VOLUME, 1996, 78B (06): : 892 - 898
  • [5] Mechanisms of angiogenesis and arteriogenesis
    Carmeliet, P
    [J]. NATURE MEDICINE, 2000, 6 (04) : 389 - 395
  • [6] Collier JH, 2000, J BIOMED MATER RES, V50, P574, DOI 10.1002/(SICI)1097-4636(20000615)50:4<574::AID-JBM13>3.0.CO
  • [7] 2-I
  • [8] Recombinant AAV vector encoding human VEGF165 enhances wound healing
    Deodato, B
    Arsic, N
    Zentilin, L
    Galeano, M
    Santoro, D
    Torre, V
    Altavilla, D
    Valdembri, D
    Bussolino, F
    Squadrito, F
    Giacca, M
    [J]. GENE THERAPY, 2002, 9 (12) : 777 - 785
  • [9] TECHNICAL REPORT - A NEW CHAMBER TECHNIQUE FOR MICRO-VASCULAR STUDIES IN UNANESTHETIZED HAMSTERS
    ENDRICH, B
    ASAISHI, K
    GOTZ, A
    MESSMER, K
    [J]. RESEARCH IN EXPERIMENTAL MEDICINE, 1980, 177 (02) : 125 - 134
  • [10] ANGIOGENESIS IN CANCER, VASCULAR, RHEUMATOID AND OTHER DISEASE
    FOLKMAN, J
    [J]. NATURE MEDICINE, 1995, 1 (01) : 27 - 31