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Involvement of phosphodiesterase I in mineralization: histochemical studies using antler from red deer (Cervus elaphus) as a model.

机译:磷酸二酯酶I参与矿化作用:以马鹿茸(鹿)为模型的组织化学研究。

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摘要

The growing antler of 1-year-old red deer is an excellent system in which to study processes involved in "cartilage model" endochondral-type bone growth. Antlers grow from the tip, permitting the developmental sequences of bone formation to be studied as distance-dependent phenomena, in which early processes can be observed at the distal end, and later events are sequentially more proximal. Quantitative light microscope histochemical assays for alkaline phosphatase (ALP) and phosphodiesterase I (PDE I) were used to determine the activities of these two phosphohydrolases in relation to antler mineralization and remodeling. Both enzymes were absent in proliferating young cartilage near the end, but progressively increased in activity in a proximal direction. ALP levels were maximal when mineralization was just beginning, whereas PDE I activity was greatest more proximally, where mineralization was more complete. This study provides strong indirect evidence that each of these enzymes has a function in mineralization, but that their roles are not identical.
机译:1岁马鹿的成长鹿角是研究“软骨模型”软骨内型骨生长过程的绝佳系统。鹿角从尖端生长,可以将骨形成的发育序列作为距离相关的现象进行研究,在这种现象中,可以在远端观察到早期过程,而随后的事件则依次向近端发展。碱性磷酸酶(ALP)和磷酸二酯酶I(PDE I)的定量光学显微镜组织化学测定法用于确定这两种磷酸化水解酶与鹿角矿化和重塑有关的活性。两种酶在末端附近的新生软骨中均不存在,但在近端方向上的活性逐渐增加。当矿化刚刚开始时,ALP水平最高,而近端矿化更完全时,PDE I活性最高。这项研究提供了强有力的间接证据,表明这些酶在矿化中均具有功能,但它们的作用并不相同。

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