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1.
Chongqing Medicine ; (36): 385-387, 2014.
Article in Chinese | WPRIM | ID: wpr-444712

ABSTRACT

Objective To observe the role of Osterix in controlling bone volume in vertebral body and to investigate the possible mechanism .Methods X-ray radiology ,micro CT and HE staining were used to evaluate the change of bone volume in both Osterix knockout and transgenic mice .TRAP staining was used to assess the activity of osteoclasts and immunohistochemistry was used to examine the expression level of RANKL .Results No obvious changes were found in Osterix transgenic mice ,while X-ray examina-tion ,micro CT and HE staining showed that the bone density and bone volume in the lumbar vertebral body increased significantly in OSX null mice 12 weeks after birth .TRAP staining showed that the number of osteoclasts decreased in OSX null mice .IHC re-vealed that the expression level of RANKL was down-regualted in OSX null mice .Conclusion Osterix play an important role in controlling bone volume of vertebral body in mice .

2.
Journal of Biomedical Engineering ; (6): 842-846, 2010.
Article in Chinese | WPRIM | ID: wpr-230773

ABSTRACT

This study was conducted to isolate and purify antimicrobial polypeptides HMGN2 (high mobility group nucleosomal-binding domain2) from human lymph node, to detect the antimicrobial activity of HMGN2, and to determine the subcellular location of HMGN2 in human lymph node. The antimicrobial polypeptides were purified by the Reverse Phase HPLC and identified by Tricine-SDS-PAGE. The antimicrobial activity was detected by agar diffusion test. Mass spectrum and Western-blot analysis indicated the individual character of protein. HMGN2 was isolated and purified from human lymph node, and it showed antimicrobial potency against the pathogenic strain E. coli 54,080. The immunocytochemistry staining indicated that HMGN2 was present both in human lymph node cells' nucleus and cytoplasm. In conclusion, HMGN2 protein is of antimicrobial activity and it is probably involved in the defence of innate immunity in vivo.


Subject(s)
Humans , Antimicrobial Cationic Peptides , Metabolism , Escherichia coli , HMGN2 Protein , Metabolism , Lymph Nodes , Chemistry , Metabolism , Tissue Distribution
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