首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Studies on the pathogenesis of avian rickets II. Necrosis of perforating epiphyseal vessels during recovery from rickets in chicks caused by vitamin D3 deficiency.
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Studies on the pathogenesis of avian rickets II. Necrosis of perforating epiphyseal vessels during recovery from rickets in chicks caused by vitamin D3 deficiency.

机译:禽病的发病机理研究II。维生素D3缺乏引起的雏鸡recovery病恢复期间穿孔性epi骨血管坏死。

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摘要

This study involved comparison of the distribution and integrity of perforating epiphyseal and marrow vessels with the stage of development and integrity of chondrocytes and the distribution of insoluble calcium in the proximal tibial growth plate of 3-week-old vitamin-D3-deficient hypocalcemic chicks and 3-week-old D3-deficient chicks 12, 36, 72, and 120 hours after an oral dose of 10,000 units vitamin D3. The aim was to clarify the mechanisms responsible for chondrocyte hypertrophy and cartilage calcification in the avian growth plate. Within 12 hours after administration of vitamin D3, serum calcium levels rose to normocalcemic levels. The following morphologic changes were first recognizable at the times indicated. Distal portions of previously elongated perforating epiphyseal vessels and adjacent proliferative and maturing chondrocytes underwent necrosis by 12 hours. Chondrocyte necrosis was not preceded by hypertrophy. By 36 hours, vascular and chondrocyte necrosis involved large portions of the thickened proliferating and maturing zone, and perforating epiphyseal vessels were shortened to a normal length. By 72 hours, chondrocyte hypertrophy and calcification resumed around the shortened epiphyseal vessels. By 120 hours, marrow had removed the necrotic cartilage, and morphologically normal growth plate was restored, with perforating epiphyseal and marrow vessels, both ending in a narrow hypertropic cartilage zone. The results indicate that proximity of chondrocytes to perforating epiphyseal vessels is necessary for their viability, but loss of these vessels does not cause hypertrophy. Since hypertrophy and calcification both occur in the proximity of perforating epiphyseal vessels in normocalcemic animals but not in hypocalcemic animals, it is likely that the vessels influence hypertrophy and calcification by delivering calcium to chondrocytes.
机译:这项研究包括比较3周龄维生素D3缺乏性低钙血症雏鸡和胫骨近端生长板软骨细胞的分布和完整性与软骨细胞的发育和完整性以及软骨近端生长板中不溶性钙的分布。口服10,000单位维生素D3后12、36、72和120小时的3周龄D3缺陷雏鸡。目的是阐明造成禽类生长板软骨细胞肥大和软骨钙化的机制。服用维生素D3后12小时内,血清钙水平升至正常血钙水平。在指定的时间首先识别出以下形态变化。以前拉长的骨epi穿孔血管的远侧部分以及邻近的增殖和成熟的软骨细胞在12小时后坏死。软骨细胞坏死之前没有肥大。到36小时,血管和软骨细胞坏死累及了增厚和成熟区的大部分,穿孔的epi骨血管缩短到正常长度。到72小时,软骨细胞肥大和钙化在缩短的骨phy血管周围恢复。到120小时,骨髓去除了坏死的软骨,形态正常的生长板得以恢复,穿孔骨s和骨髓血管,均终止于狭窄的肥大性软骨区。结果表明软骨细胞靠近穿孔的phy骨血管对于它们的生存能力是必需的,但是这些血管的丢失不会引起肥大。由于肥大和钙化均在正常血钙动物的穿孔epi骨血管附近发生,而在血钙不足的动物中不发生,因此血管可能通过将钙传递到软骨细胞来影响肥大和钙化。

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