Tsukamoto Yuri, Kajii Takashi S, Oonishi Yasutomo, Sugawara-Kato Yuki, Hirabayashi Yoshifumi, Iida Junichiro
Graduate student, Department of Orthodontics, Division of Oral Functional Science, Graduate School of Dental Medicine, Hokkaido University, Sapporo, Japan.
Am J Orthod Dentofacial Orthop. 2008 Nov;134(5):676-83. doi: 10.1016/j.ajodo.2006.08.025.
Homozygous brachymorphic (bm/bm) mice are characterized by disproportionately short stature. Anterior transverse crossbite sometimes develops spontaneously in inbred BALB/c-bm/bm mice that produce undersulfated glycosaminoglycans. The reason for inferior growth of the craniofacial structures of BALB/c-bm/bm mice has not been clarified. We focused on the spheno-occipital synchondrosis (SOS)-the growth site of the cranium-and investigated the growth pattern in the SOS of the BALB/c-bm/bm mice.
The BALB/c-+/+ mice and BALB/c-bm/bm mice without malocclusion were used. Sagittal sections of the cranial bases were stained with hematoxylin and eosin, observed histologically, and used to measure the anteroposterior length and the percentage of active bone volume around the SOS.
In the histologic study, compared with the cartilage in the BALB/c mice, a bipolar column was not seen in the cartilage of the SOS in the BALB/c-bm/bm mice. The histomorphometric study showed that the anteroposterior length of the posterior cranial base was significantly shorter and the percentage of active bone volume was significantly smaller in the BALB/c-bm/bm mice than in the BALB/c mice.
The results suggested that normal endochondral growth is disturbed in the synchondrosis of the posterior base of the skull in BALB/c-bm/bm mice.
纯合短形(bm/bm)小鼠的特征是身材极短。在产生低硫酸化糖胺聚糖的近交BALB/c-bm/bm小鼠中,有时会自发出现前牙反合。BALB/c-bm/bm小鼠颅面结构生长不良的原因尚不清楚。我们聚焦于蝶枕软骨结合(SOS)——颅骨的生长部位——并研究了BALB/c-bm/bm小鼠SOS的生长模式。
使用无错合畸形的BALB/c-+/+小鼠和BALB/c-bm/bm小鼠。颅底矢状切片用苏木精和伊红染色,进行组织学观察,并用于测量SOS前后长度和活跃骨体积百分比。
在组织学研究中,与BALB/c小鼠的软骨相比,BALB/c-bm/bm小鼠SOS的软骨中未见到双极柱。组织形态计量学研究表明,BALB/c-bm/bm小鼠后颅底的前后长度明显较短,活跃骨体积百分比明显小于BALB/c小鼠。
结果表明,BALB/c-bm/bm小鼠颅后基底软骨结合处的正常软骨内生长受到干扰。