Lim K O, Boughner D R
Circ Res. 1976 Oct;39(4):580-5. doi: 10.1161/01.res.39.4.580.
Human mitral valve chordae tendineae in which elastic response curves are nonlinear have also been found to exhibit extensibility that increases with chordal size and decreases with chordal age. We used selective enzymatic digestion and scanning transmission electron microscopy to explain these observations. Removal of the outer elastin sheath by enzymatic digestion did not significantly affect the elastic response of this tissue. Scanning electron microscopy revealed that the collagen fibers in the central core of young chordae exhibited a very wavy pattern but the pattern in adult specimens was relatively straight. The increased waviness accounted for the greater extensibility of the young specimens. The collagen fibers from young and old chordae consisted of a network of collagen fibrils that became more collapsed when the tissue was fixed under tension. This network arrangement of the fibrils explains the nonlinearity in the elastic response of the tissue. Transmission electron micrographs showed that the density of collagen fibrils decreased as chordal size increased. The number of fibrils per 10(-8) cm2 of the central core decreased from 182.4 (SE = 1.3) to 131.3 (SE = 1.6) as average chordal cross-sectional area increased from 0.0016 cm2 to 0.0268 cm2. This difference in fibril density provides an explanation for the greater extensibility shown by the thicker chordae. The collagen fibril diameters ranged from 516 A to 552 A.
研究发现,人类二尖瓣腱索的弹性响应曲线呈非线性,其伸展性随腱索尺寸增加而增大,随腱索年龄增长而减小。我们采用选择性酶消化法和扫描透射电子显微镜来解释这些观察结果。通过酶消化去除外层弹性蛋白鞘对该组织的弹性响应没有显著影响。扫描电子显微镜显示,年轻腱索中央核心的胶原纤维呈现出非常弯曲的形态,而成年标本中的形态则相对较直。弯曲程度增加解释了年轻标本具有更大伸展性的原因。年轻和年老腱索的胶原纤维由胶原原纤维网络组成,当组织在张力下固定时,该网络会变得更加塌陷。原纤维的这种网络排列解释了组织弹性响应的非线性。透射电子显微镜照片显示,胶原原纤维的密度随腱索尺寸增加而降低。随着平均腱索横截面积从0.0016平方厘米增加到0.0268平方厘米,中央核心每10(-8)平方厘米的原纤维数量从182.4(标准误 = 1.3)降至131.3(标准误 = 1.6)。原纤维密度的这种差异解释了较粗腱索具有更大伸展性的原因。胶原原纤维直径范围为516埃至552埃。