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碱性磷酸酶水平和骨祖细胞数量表明,骨形成可能导致两种近交系小鼠之间骨密度峰值存在差异。

Alkaline phosphatase levels and osteoprogenitor cell numbers suggest bone formation may contribute to peak bone density differences between two inbred strains of mice.

作者信息

Dimai H P, Linkhart T A, Linkhart S G, Donahue L R, Beamer W G, Rosen C J, Farley J R, Baylink D J

机构信息

J. L. Pettis Memorial Veterans Medical Center, Loma Linda, California 92357, USA.

出版信息

Bone. 1998 Mar;22(3):211-6. doi: 10.1016/s8756-3282(97)00268-8.

Abstract

Previous studies have shown that C3H/HeJ (C3H) mice have higher peak bone density than C57BL/6J (B6) mice, at least in part because of differences in rates of bone resorption. The current studies were intended to examine the alternative, additional hypothesis that the greater bone density in C3H mice might also be a consequence of increased bone formation. To that end, we measured two presumptive, indirect indices of bone formation and osteoblast number in these inbred strains of mice: alkaline phosphatase (ALP) activity in serum, bones, and bone cells; and the number of ALP-positive colony-forming units (CFU) in bone marrow stromal cell cultures. We found that C3H mice had higher serum levels of ALP activity than B6 mice at 6 (118 vs. 100 U/L, p < 0.03) and 32 weeks of age (22.2 vs. 17.2 U/L, p < 0.001). Tibiae from C3H mice also contained higher levels of ALP activity than tibiae from B6 mice at 6 (417 vs. 254 mU/mg protein, p < 0.02) and 14 weeks of age (132 vs. 79 mU/mg protein, p < 0.001), as did monolayer cultures of bone-derived cells from explants of 7.5-week-old C3H calvariae and femora (8.2 times more, p < 0.02, and 4.6 times more, p < 0.001, respectively). Monolayer cell cultures prepared by collagenase digestion of calvariae from newborn and 6-week-old mice also showed similar strain-dependent differences in ALP-specific activity (p < 0.001 for each). Our studies also showed more ALP-positive CFU in bone marrow stromal cell cultures from 8-week-old C3H mice, compared with B6 mice (72.3 vs. 26.1 ALP-positive CFU/culture dish, p < 0.001). A similar result was seen for ALP-positive CFU production at 6 and 14 weeks of age, and the difference was greatest for the CFU that contained the greatest numbers of ALP-positive cells. Because skeletal ALP activity is a product of osteoblasts and has been shown to correlate with rates of bone formation, and because the number of ALP-positive CFU is believed to reflect the number of osteoprogenitor cells, the current data are consistent with the general hypothesis that bone formation may be greater in C3H than B6 mice because of a difference in osteoblast number. Our data further suggest that peak bone density may be greater in C3H mice than B6 mice due to a combination of decreased bone resorption and increased bone formation.

摘要

先前的研究表明,C3H/HeJ(C3H)小鼠的骨密度峰值高于C57BL/6J(B6)小鼠,至少部分原因是骨吸收速率存在差异。当前的研究旨在检验另一种补充假说,即C3H小鼠更高的骨密度也可能是骨形成增加的结果。为此,我们测量了这些近交系小鼠中两个假定的、间接的骨形成指标和成骨细胞数量:血清、骨骼和骨细胞中的碱性磷酸酶(ALP)活性;以及骨髓基质细胞培养物中ALP阳性集落形成单位(CFU)的数量。我们发现,C3H小鼠在6周龄(118 vs. 100 U/L,p < 0.03)和32周龄时(22.2 vs. 17.2 U/L,p < 0.001)血清ALP活性水平高于B6小鼠。6周龄(417 vs. 254 mU/mg蛋白,p < 0.02)和14周龄时(132 vs. 79 mU/mg蛋白,p < 0.001),C3H小鼠的胫骨中ALP活性水平也高于B6小鼠,7.5周龄C3H颅骨和股骨外植体的骨源细胞单层培养物中的ALP活性水平同样如此(分别高出8.2倍,p < 0.02,和4.6倍,p < 0.001)。通过胶原酶消化新生小鼠和6周龄小鼠的颅骨制备的单层细胞培养物也显示出类似的品系依赖性ALP比活性差异(每次p < 0.001)。我们的研究还表明,与B6小鼠相比,8周龄C3H小鼠骨髓基质细胞培养物中的ALP阳性CFU更多(72.3 vs. 26.1个ALP阳性CFU/培养皿,p < 0.001)。在6周龄和14周龄时,ALP阳性CFU产生也出现了类似结果,对于包含最多ALP阳性细胞的CFU,差异最为显著。由于骨骼ALP活性是成骨细胞的产物,并且已被证明与骨形成速率相关,而且ALP阳性CFU的数量被认为反映了骨祖细胞的数量,因此当前数据与一般假说一致,即由于成骨细胞数量的差异,C3H小鼠的骨形成可能比B6小鼠更多。我们的数据进一步表明,由于骨吸收减少和骨形成增加的共同作用,C3H小鼠的骨密度峰值可能高于B6小鼠。

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