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成熟和衰老对大鼠结缔组织力学及生化特性的影响。

Influence of maturation and aging on mechanical and biochemical properties of connective tissue in rats.

作者信息

Vogel H G

出版信息

Mech Ageing Dev. 1980 Nov-Dec;14(3-4):283-92. doi: 10.1016/0047-6374(80)90002-0.

Abstract

The influence of maturation and age on the physical and chemical properties of various organs of connective tissue has been studied in rats at ages of 4 weeks, 8 weeks, 4 monhs, 1 year and 2 years. The changes between young (4 weeks old) and adult (4 months to 1 year old) animals were considered as the effects of maturation, whereas the changes between adult and senescent (2 years old) rats were regarded as the effects of aging. Ultimate values, such as ultimate load, tensile strength and breaking strength, or ultimate modulus of elasticity, showed a sharp rise during maturation and a smaller but significant decrease during aging in all organs, such as skin strips, tail tendons, shaft bones, epiphyseal cartilage and aorta rings. Ultimate strain showed a similar pattern, but the maximum occurred earlier. These changes were parallel with the content of insoluble collagen. Other chemical parameters such as soluble collagen or glycosaminoglycans, showed a continuous decrease during the life span, whereas elastin rose continuously. More detailed analysis of mechanical properties in rat skin gave insight into the viscoelastic behaviour of skin. In creep experiments time until break under constant load rose continuously during the life span, whereas ultimate extension rate showed a sharp fall during maturation and a slow decrease during senescence. Stress at low extension degree and moduli of elasticity at low extension degree were decreased by maturation and increased by senescence, exactly the opposite of the changes at high extension degrees. The so-called step phenomenon was increased due to maturation and decreased due to aging. Relaxation and mechanical recovery were changed in the same direction by maturation and aging. Relative viscoelastic parameters, such as the hysteresis phenomenon and relative decrease of stress under cyclic strain, were barely influenced by the aging process. Changes of most of the mechanical parameters at high extension degrees during maturation may be explained by an increase of cross-linking of collagen. Other phenomena such as changes at low extension degrees or parameters of plasticity cannot be explained on this basis. Further studies are needed for a better understanding of the true aging process in connective tissue.

摘要

在4周龄、8周龄、4月龄、1岁和2岁的大鼠中,研究了成熟和年龄对结缔组织各器官物理和化学性质的影响。幼年(4周龄)和成年(4月龄至1岁)动物之间的变化被视为成熟的影响,而成年和衰老(2岁)大鼠之间的变化则被视为衰老的影响。极限值,如极限负荷、拉伸强度和断裂强度或极限弹性模量,在所有器官(如皮肤条、尾腱、骨干、骨骺软骨和主动脉环)的成熟过程中急剧上升,在衰老过程中虽有较小但显著的下降。极限应变呈现类似模式,但最大值出现得更早。这些变化与不溶性胶原蛋白的含量平行。其他化学参数,如可溶性胶原蛋白或糖胺聚糖,在整个生命周期中持续下降,而弹性蛋白则持续上升。对大鼠皮肤力学性能的更详细分析深入了解了皮肤的粘弹性行为。在蠕变实验中,恒定负荷下直至断裂的时间在整个生命周期中持续增加,而极限延伸率在成熟过程中急剧下降,在衰老过程中缓慢下降。低延伸度下的应力和低延伸度下的弹性模量因成熟而降低,因衰老而增加,与高延伸度下的变化正好相反。所谓的阶梯现象因成熟而增加,因衰老而减少。松弛和力学恢复因成熟和衰老而朝相同方向变化。相对粘弹性参数,如滞后现象和循环应变下应力的相对降低,几乎不受衰老过程的影响。成熟过程中高延伸度下大多数力学参数变化可能是由于胶原蛋白交联增加所致。其他现象,如低延伸度下的变化或可塑性参数,在此基础上无法解释。需要进一步研究以更好地理解结缔组织中的真正衰老过程。

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