| Literature DB >> 28810570 |
Xiao Liu1,2,3, Deguo Wang1,4, Zhengzheng Zhang5, Fenghui Zhu2, Aiming Yao2, Jiwei Tian1, Dengshun Miao3.
Abstract
This study aims to investigate the function and related mechanism of P27 gene in intervertebral disc (IVD) degeneration of mice. X-ray, immunohistochemical staining, and alkaline phosphatase (ALP) histochemical staining were used to analyze the phenotypic difference of the intervertebral discs of 4-week-old mice with P27 gene knockout (P27-/-) and wild-type (WT) mice in the same brood. Protein in the intervertebral disc was extracted and western blot analysis was employed to detect the changes in the expression of related molecules in the Shh-signal pathways, including Shh, Patched, Smoothened and Gli2. As a result, the ALP histochemical staining revealed that the ALP-positive area of mice in the P27-/- group was obviously increased compared to the 4-week-old mice of the same brood in the WT group. In addition, the Col-I immunohistochemical staining showed that the Col-I-positive area of mice in the P27-/- group was significantly increased compared to mice in the WT group. Furthermore, Smo-positive cell rate of mice in the P27-/- group was apparently increased compared to mice in the WT group. Western blot analysis revealed that in terms of changes of protein expression levels of Shh, Patched, Smoothened and Gli2 in the intervertebral disc, protein expression levels of Shh, Patched, Smoothened and Gli2 of mice in the P27-/- group were significantly increased compared to those of mice in the WT group. The results show that P27 deficiency activates the expression of Shh-signal pathway and promotes the proliferation of osteoblast, thus, playing a role in promoting IVD degeneration, which provides a scientific and reliable experimental basis for the treatment of the IVD degeneration-related diseases in clinical practice.Entities:
Keywords: P27; intervertebral disc degeneration; mice
Year: 2017 PMID: 28810570 PMCID: PMC5525579 DOI: 10.3892/etm.2017.4584
Source DB: PubMed Journal: Exp Ther Med ISSN: 1792-0981 Impact factor: 2.447
Figure 1.Intervertebral spaces of Co6-7 (red arrow) and Co7-8 (blue arrow) of mice in the WT group were normal at the end of the 4th week. WT, wild-type.
Figure 2.Intervertebral spaces of Co6-7 (red arrow) and Co7-8 (blue arrow) of mice in P27−/− group were obviously decreased at the end of the 4th week. P27−/−, P27 gene knockout.
Figure 3.(A) Normal intervertebral disc staining in the WT group. (B) IVD staining in P27−/− group. WT, wild-type; IVD, intervertebral disc; P27−/−, P27 gene knockout.
Figure 4.ALP histochemical staining result. (A) IVD ALP staining micrograph. (B) Columnar statistical figure of IVD ALP positive area rate. ALP, alkaline phosphatase; IVD, intervertebral disc. **P<0.01.
Figure 5.Col-I immumohistochemical staining result. (A) IVD Col-I staining micrograph (B) Columnar statistical figure of intervertebral disc Col-I positive area rate. IVD, intervertebral disc.**P<0.01.
Figure 6.Shh-signal pathway expression of mice in the two groups. (A) IVD Smoothened staining micrograph. (B) Columnar statistical figure of Smo-positive cell rate. (C) Western blot analysis result of protein expression levels of Shh, Patched, Smoothened and Gli2 in IVD. IVD, intervertebral disc.**P<0.01.