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透明质酸有助于生长板中肥大腔隙的扩大。

Hyaluronan contributes to the enlargement of hypertrophic lacunae in the growth plate.

作者信息

Pavasant P, Shizari T, Underhill C B

机构信息

Department of Cell Biology, Georgetown Medical Center, Washington, DC 20007, USA.

出版信息

J Cell Sci. 1996 Feb;109 ( Pt 2):327-34. doi: 10.1242/jcs.109.2.327.

Abstract

Histochemical staining of the epiphysial growth plate revealed that free hyaluronan (i.e. available to the staining probe) was restricted to the zone of hypertrophy, where it was located in the pericellular space between the chondrocytes and the edge of the lacunae. Furthermore, the amount of hyaluronan staining was directly proportional to the size of the lacunae. Autoradiographic analysis of growth plates cultured with isotopically labeled glucosamine indicated that at least a portion of this hyaluronan was newly synthesized by the hypertrophic chondrocytes. Since hyaluronan can adsorb large amounts of water, it is possible that it exerted a hydrostatic pressure on the surrounding territorial matrix and thereby caused the expansion of hypertrophic lacunae. To assess this possibility, segments of the growth plate were placed in organ culture under different conditions. Under normal culture conditions, a band of hyaluronan staining migrated across the segments coinciding with the enlargement of lacunae in these regions, and the segments, as a whole, increased in size. In contrast, when the segments were cultured in the presence of hyaluronidase, which degraded the pericellular hyaluronan, the lacunae did not undergo enlargement and the overall size of the segments did not increase. These results suggest that the production of hyaluronan contributes to the enlargement of hypertrophic lacunae which is important for determining both the body's stature and proportions.

摘要

对骨骺生长板进行组织化学染色显示,游离透明质酸(即可被染色探针检测到的透明质酸)局限于肥大带,位于软骨细胞与陷窝边缘之间的细胞周间隙中。此外,透明质酸染色量与陷窝大小直接成正比。对用同位素标记的葡糖胺培养的生长板进行放射自显影分析表明,这种透明质酸至少有一部分是由肥大软骨细胞新合成的。由于透明质酸能吸附大量水分,因此有可能它对周围的局部基质施加了静水压力,从而导致肥大陷窝扩张。为评估这种可能性,将生长板片段置于不同条件下进行器官培养。在正常培养条件下,一条透明质酸染色带在片段中迁移,与这些区域陷窝的扩大相吻合,并且片段整体尺寸增大。相反,当片段在透明质酸酶存在的情况下培养时,细胞周透明质酸被降解,陷窝未发生扩大,片段的整体尺寸也未增加。这些结果表明,透明质酸的产生有助于肥大陷窝的扩大,这对于确定身体的身高和比例都很重要。

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