Department of Anatomy and Histology - University of Modena and Reggio Emilia, Modena, Italy.
J Anat. 2009 Nov;215(5):577-83. doi: 10.1111/j.1469-7580.2009.01134.x. Epub 2009 Aug 6.
The effect of peripheral leptin on fetal primary ossification centers during the early phases of bone histogenesis was investigated by administration of leptin to pregnant mice. Fourteen pregnant mice were divided into two groups. The treated pregnant group was subcutaneously injected in the intrascapular region with supraphysiologic doses (2 mg kg(-1)) of leptin (Vinci Biochem, Firenze, Italy) in a volume of 0.1 mL per 10 g body weight, at the 7th, 9th and 11th day of gestation. The control group was treated with physiological solution in the same manner and same times as the treated group. The new-born mice were killed 1 day after birth and the primary ossification centers were stained with Alizarin Red S after diaphanizing the soft tissues in 1% potassium hydroxide. The development of both endochondral and intramembranous ossification centers was morphometrically analysed in long bones. The results showed that the ossification centers of mice born by mothers treated with leptin grow more rapidly in both length and cross-sectional area compared with mice born by the untreated mothers. As the development of long bones depends on endochondral ossification occurring at proximal and distal epiphyseal plates as well as on intramembranous ossification along the periosteal surface, it appears that leptin activates the differentiation and proliferation of both chondrocytes and osteoblasts. The role of leptin as a growth factor of cartilage and bone is discussed in the light of the data reported in the literature.
通过给怀孕的老鼠施用瘦素来研究外周瘦素对胎儿初级骨化中心在骨发生早期的影响。将 14 只怀孕的老鼠分成两组。在妊娠第 7、9 和 11 天,治疗组的怀孕老鼠在肩胛间区域通过皮下注射超生理剂量(2 毫克/千克)的瘦素(Vinci Biochem,佛罗伦萨,意大利),每 10 克体重注射 0.1 毫升,以相同的方式和时间用生理盐水处理对照组。新生老鼠在出生后 1 天被杀死,在 1%氢氧化钾中透明软组织后,用茜素红 S 染色初级骨化中心。在长骨中对软骨内和膜内骨化中心的发育进行形态计量学分析。结果表明,与未经处理的母亲所生的老鼠相比,接受瘦素治疗的母亲所生的老鼠的骨化中心在长度和横截面积上生长得更快。由于长骨的发育依赖于近侧和远侧骨骺板的软骨内骨化以及骨膜表面的膜内骨化,瘦素似乎激活了软骨细胞和成骨细胞的分化和增殖。根据文献中的数据,讨论了瘦素作为软骨和骨生长因子的作用。