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子宫内X线照射后神经颅骨的软骨化生和过度生长。

Cartilaginous metaplasia and overgrowth of neurocranium skull after X-irradiation in utero.

作者信息

Schmahl W, Meyer I, Kriegel H, Tempel K H

出版信息

Virchows Arch A Pathol Anat Histol. 1979;384(2):173-84. doi: 10.1007/BF00427254.

Abstract

Prenatal X-irradiation of mice in the late organogenesis stage either with a fractionated or a single exposure dose (3 X 160 R or 200 R) leads to remarkable, previously undescribed malformations of the skull. These malformations range from mild hyperostotic nodule formation in about 90% of the offspring to excessive formation of desmal bony tissues, which extend deep into the forebrain and are thus only detectable in histological sections. Metaplastic and hyperplastic formation of cartilage in all the neurocranial regions is observed in about 10% of the offspring. The pathogenesis of these overgrowth phenomena is presumably related to a growth disturbance of both the mesenchymal skull primordium and the brain. While malformation of the latter leads to a decrease of intracranial pressure and consequently to altered growth activity of the skull sutures, the reparative and proliferative capacities of the mesenchyme are also stimulated, in a hyperplastic direction, by X-irradiation.

摘要

在器官发生晚期,对小鼠进行分次或单次X射线照射(3×160伦琴或200伦琴)会导致颅骨出现显著的、此前未被描述过的畸形。这些畸形从约90%的后代出现轻度骨肥厚性结节形成,到发育异常的骨组织过度形成,这些骨组织深入前脑,因此只有在组织学切片中才能检测到。在约10%的后代中观察到所有神经颅区域的软骨化生和增生。这些过度生长现象的发病机制可能与间充质颅骨原基和大脑的生长紊乱有关。虽然后者的畸形导致颅内压降低,进而导致颅骨缝线生长活动改变,但间充质的修复和增殖能力也会受到X射线照射的刺激,朝着增生方向发展。

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