| Literature DB >> 24066100 |
Min Jia1, Sixu Chen, Bo Zhang, Huaping Liang, Jianquan Feng, Zhaowen Zong.
Abstract
BACKGROUND ANDEntities:
Mesh:
Substances:
Year: 2013 PMID: 24066100 PMCID: PMC3774640 DOI: 10.1371/journal.pone.0074093
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Primers used for real-time PCR.
|
|
|
|---|---|
| BSP | F: |
| GAPDH | F: |
| OPG | F: |
| RANKL | F: |
| RunX2 | F: |
| TNAP | F: |
| TRAP | F: |
Figure 1Representative x-ray images of the spine.
a-e X-ray images of the spine in wild-type and CA-β-catenin mice 1 month (a), 3 months (b), 5 months (c), 6 months (d) and 8 months (e) after birth.
Figure 2H&E staining of coronal sections of the fourth lumbar vertebra in wild-type and CA-β-catenin mice.
Boxes in a, c, e, g, i, k, m, o, q and s are magnified in b, d, f, h, j, l, n, p, r and t, respectively. Bars: 200 µm (a, c, e, g, I, k, m, o, q and s) and 100 µm (b, d, f, h, j, l, n, p, r and t).
Figure 3Safranin O staining of lumbar vertebra.
a-i Safranin O staining of coronal sections of the fourth lumbar vertebra in wild-type and CA-β-catenin mice at 1 month (a, b, e and f), 3 months (i and j), 5 months (c and d), 6 months (g and h) and 8 months (k and l) of age. Boxes in a and b are magnified in e and f, respectively. Bars: 200 µm (a, b, c, d, g, h, i, j, k and l) and 100 µm (e and f).
Figure 4MicroCT examination of lumbar vertebrae in each group.
a-j representative, transverse MicroCT images of the fifth lumbar vertebra in wild-type and CA-β-catenin mice at 1 month (a and b), 3 months (c and d), 5 months (e and f), 6 months (g and h) and 8 months (i and j) of age. k MicroCT analysis of BVF (BV/TV, %) of the fifth lumbar vertebra in CA-β-catenin mice and wild-type mice. BV trabecular bone volume (mm3); TV total volume selected for analysis (mm3). l Trabecular number (Tb.N) of the fifth lumbar vertebra in CA-β-catenin and wild-type mice. m Mean trabecular thickness (Tb.Th) of the fifth lumbar vertebra in CA-β-catenin and wild-type mice. n Trabecular separation (Tb. Sp) of the fifth lumbar vertebra in CA-β-catenin and wild-type mice. Bars represent the mean ± SEM (n=6 for each group). *p<0.05.
Figure 5TRAP staining of lumbar vertebra in each group.
a-j TRAP staining of coronal sections of the fourth lumbar vertebra in wild-type and CA-β-catenin mice at 1 month (a and b), 3 months (c and d), 6 months (e and f), and 8 months (g and h) of age. Bars: 200 µm. i: The number of TRAP-positive cells in each group. j: The ratio of RANKL:OPG expression levels in each group. Bars represent the mean ± SEM (n=6 for each group). *p<0.05.
Figure 6Examination of markers for bone formation and maturation by immunohistochemistry (IHC).
a-d IHC against TNAP in wild-type and CA-β-catenin mice at 1 month (a, b) and 6 months (c, d) of age. e: Number of TNAP-positive cells in each group. f-i IHC against RunX2 in wild-type and CA-β-catenin mice at 1 month (f, g) and 6 months (h, i) of age. j: Number of RunX2-positive cells in each group. k-n IHC against BSP in WT and CA-β-catenin mice at 1 month (k, l) and 6 months (m, n) of age. o Number of BSP-positive cells in each group. Bars: 200 µm. Bars represent the mean ± SEM (n=6 for each group). *p<0.05.
Figure 7Examination of markers for bone formation and bone resorption by Real-time PCR and EILISA.
a The mRNA expression level of tissue non-specific alkaline phosphatase (TNAP) in each group. b The mRNA expression level of Runx2 in each group. c The mRNA expression level of bone sialoprotein (BSP) in each group. d The mRNA expression level of tartrate resistant acid phosphatase (TRAP) in each group. e The serum concentration of intact N-terminal propeptide of type I procollagen (P1NP) in each group. f The serum concentration of osteocalcin in each group. g The serum concentration of C-terminal telopeptides of type I collagen (CTX-I) in each group. h The serum concentration of tartrate resistant acid phosphatase 5b (TRAP5b) in each group. Bars represent the mean ± SEM (n=6 for each group). *p<0.05.