Tissue response of defined collagen-elastin scaffolds in young and adult rats with special attention to calcification

被引:57
作者
Daamen, WF
Nillesen, STM
Hafmans, T
Veerkamp, JH
van Luyn, MJA
van Kuppevelt, TH
机构
[1] Univ Nijmegen, Med Ctr, NCMLS, Dept Biochem 194, NL-6500 HB Nijmegen, Netherlands
[2] Univ Groningen, Dept Pathol & Lab Med, Fac Med Sci, NL-9713 GZ Groningen, Netherlands
关键词
biomaterial; tissue engineering; calcification; tissue response; biocompatibility;
D O I
10.1016/j.biomaterials.2004.02.011
中图分类号
R318 [生物医学工程];
学科分类号
0831 [生物医学工程];
摘要
Collagen-elastin scaffolds may be valuable biomaterials for tissue engineering because they combine tensile strength with elasticity. In this study, the tissue response to and the calcification of these scaffolds were evaluated. In particular, the hypothesis was tested that calcification, a common phenomenon in biomaterials, may be due to microfibrils within the elastic fibre, and that these microfibrils might generate a tissue response. Four scaffolds were subcutaneously implanted, viz. collagen, collagen + pure elastin, collagen + microfibril-containing, and collagen + pulverised elastic ligament (the source for elastin). Explants were evaluated at day 3, 7 and 21. In young Sprague Dawley rats, collagen + ligament calcified substantially, whereas collagen + elastin (with and without microfibrils) calcified less, and collagen did not. Calcification started at elastic fibres. In both Sprague Dawley and Wistar adult rats, however, none of the scaffolds calcified. Mononuclear cell infiltration was prominent in young and adult Sprague Dawley rats. In adult Wistar rats, this infiltration was associated with the presence of microfibrils. Degradation of scaffolds and new matrix formation were related with cellular influx and degree of vascularisation. In conclusion, absence of microfibrils from the elastic fibre does not prevent calcification in young Sprague Dawley rats, but does reduce the tissue response in adult Wistar rats. Cellular response and calcification differs with age and strain and therefore the choice of animal model is of key importance in biomaterial evaluation. (C) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:81 / 92
页数:12
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