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Structural and mechanical aspects of the skin of Bufo marinus (Anura, Amphibia)

机译:中华大蟾蜍皮肤的结构和机械方面(两栖动物阿努拉)

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摘要

Specific biomechanical characters and some structures possibly related to them were investigated in the skin of the toad Bufo marinus using tensile testing techniques (at constant strain till rupture) as well as morphological methods (histological, immunohistochemical and electronmicroscopical). Mechanical parameters of the native skin varied considerably according to sex, individual variability and/or site of specimen collection. In skin strips of males and females excised from different parts of the body thickness ranged from 0.45 to 0.87 mm, strain (epsilon (f)) from 96.52 to 211.03, tensile strength (sigma (m)) from 5.72 to 9.38 MPa, and stiffness (E-modulus) from 5.76 to 6.73. The dermis of B. marinus is provided with a collagenous stratum compactum of considerable thickness, a stratum spongiosum with loosely arranged fibres and a marked calcified layer (substantia amorpha). Collagen appears to be the main determinant of skin mechanics. However, the slope of the J-shaped static stress-strain curves indicates elastin to be responsible for the high values of strain. Contrary to van Gieson and orcein staining, immunostaining with a monoclonal antibody against elastin revealed very few elastic fibers between collagen bundles and in the vertical fiber tracts (perforating bundles), but a considerable amount in the tela subcutanea. This was partly confirmed at the ultrastructural level by tannic acid staining.
机译:使用拉伸测试技术(从恒定应变直到破裂)以及形态学方法(组织学,免疫组织化学和电子显微镜)研究蟾蜍蟾蜍皮肤中的特定生物力学特征和可能与其相关的一些结构。天然皮肤的机械参数根据性别,个体差异和/或样本采集部位的不同而有很大差异。在从身体不同部位切下的男性和女性的皮肤条带中,其厚度范围为0.45至0.87 mm,应变(ε(f))为96.52至211.03,抗张强度(σ(m))为5.72至9.38 MPa,刚度(E模数)从5.76到6.73。 B. marinus的真皮具有相当厚的胶原致密化层,具有疏松排列的纤维的海绵状层和明显的钙化层(无定形)。胶原蛋白似乎是皮肤力学的主要决定因素。但是,J形静态应力-应变曲线的斜率表明弹性蛋白是高应变值的原因。与van Gieson和orcein染色相反,用针对弹性蛋白的单克隆抗体进行的免疫染色显示,胶原束之间和垂直纤维束(穿孔束)中的弹性纤维很少,而皮下延髓中的弹性纤维数量却很大。单宁酸染色在超微结构水平上部分证实了这一点。

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