Rosso Francesco, Marino Gerardo, Giordano Antonio, Barbarisi Manlio, Parmeggiani Domenico, Barbarisi Alfonso
IX Division of General Surgery and Applied Biotechnology, Department of Anaesthesological, Surgical and Emergency Sciences, Second University of Naples, Italy.
J Cell Physiol. 2005 Jun;203(3):465-70. doi: 10.1002/jcp.20270.
In this review, we focused our attention on the more important natural extracellular matrix (ECM) molecules (collagen and fibrin), employed as cellular scaffolds for tissue engineering and on a class of semi-synthetic materials made from the fusion of specific oligopeptide sequences, showing biological activities, with synthetic materials. In particular, these new "intelligent" scaffolds may contain oligopeptide cleaving sequences specific for matrix metalloproteinases (MMPs), integrin binding domains, growth factors, anti-thrombin sequences, plasmin degradation sites, and morphogenetic proteins. The aim was to confer to these new "intelligent" semi-synthetic biomaterials, the advantages offered by both the synthetic materials (processability, mechanical strength) and by the natural materials (specific cell recognition, cellular invasion, and the ability to supply differentiation/proliferation signals). Due to their characteristics, these semi-synthetic biomaterials represent a new and versatile class of biomimetic hybrid materials that hold clinical promise in serving as implants to promote wound healing and tissue regeneration.
在本综述中,我们将注意力集中在更重要的天然细胞外基质(ECM)分子(胶原蛋白和纤维蛋白)上,它们被用作组织工程的细胞支架,以及一类由特定寡肽序列与合成材料融合而成的半合成材料,这些寡肽序列具有生物活性。特别地,这些新型“智能”支架可能包含对基质金属蛋白酶(MMPs)具有特异性的寡肽切割序列、整合素结合域、生长因子、抗凝血酶序列、纤溶酶降解位点和形态发生蛋白。目的是赋予这些新型“智能”半合成生物材料合成材料(可加工性、机械强度)和天然材料(特定细胞识别、细胞侵袭以及提供分化/增殖信号的能力)所具有的优势。由于其特性,这些半合成生物材料代表了一类新型且通用的仿生杂化材料,在作为促进伤口愈合和组织再生的植入物方面具有临床应用前景。