Kjeldsen K, Nøgaard A, Clausen T
Pflugers Arch. 1984 Sep;402(1):100-8. doi: 10.1007/BF00584838.
The influence of age on the binding of 3H-ouabain in skeletal muscle has been characterized in rats, mice and guinea pigs. Measurements performed using biopsies and intact fibers obtained from different types of rat muscles showed that from birth to the 4th week of life, the number of 3H-ouabain binding sites per unit weight increases up to 5-fold, followed by almost the same relative decrease to a plateau around 250 pmol/g wet wt at an age of 22 weeks. These changes were not associated with any major alterations in apparent KD (1.7-3.1 X 10(-7) M) dissociation rate or heterogeneity in binding characteristics. Measurements of 3-O-methylfluorescein phosphatase activity, an enzyme activity which is closely correlated to the Na-K-ATPase activity, confirmed the 3H-ouabain binding data. In mice, the number of 3H-ouabain binding sites showed similar, albeit less pronounced changes with age, a maximum being reached at the 4th week of life. In guinea pigs, the number of 3H-ouabain binding sites per unit weight decreased by 60% from birth to maturity. The results indicate that the early development and differentiation of individual skeletal muscles is associated with a marked increase in the number of Na-K-pumps (when expressed as pmol/muscle), until at maturity a plateau is reached. However, when expressed as pmol/g wet wt the increase is followed by a decrease to a plateau. This may in part account for the relatively low digitalis sensitivity seen in infants as compared to newborn and mature individuals.
年龄对大鼠、小鼠和豚鼠骨骼肌中3H-哇巴因结合的影响已得到表征。使用从不同类型大鼠肌肉获取的活检组织和完整纤维进行的测量表明,从出生到生命的第4周,每单位重量的3H-哇巴因结合位点数量增加高达5倍,随后在22周龄时几乎以相同的相对幅度下降至约250 pmol/g湿重的平台期。这些变化与表观解离常数KD(1.7 - 3.1×10⁻⁷ M)、解离速率或结合特性的异质性的任何重大改变均无关。与钠钾ATP酶活性密切相关的3 - O - 甲基荧光素磷酸酶活性的测量结果证实了3H-哇巴因结合数据。在小鼠中,3H-哇巴因结合位点数量随年龄呈现出相似但不太明显的变化,在出生后第4周达到最大值。在豚鼠中,每单位重量的3H-哇巴因结合位点数量从出生到成熟减少了60%。结果表明,单个骨骼肌的早期发育和分化与钠钾泵数量的显著增加(以pmol/肌肉表示)相关,直至成熟时达到平台期。然而,以pmol/g湿重表示时,增加之后会下降至平台期。这可能部分解释了与新生儿和成熟个体相比,婴儿洋地黄敏感性相对较低的原因。