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Yongzhong Xu

Publications and source records attributed to Yongzhong Xu.

4 recordsLinked to original sources

Decreased saliva secretion and down-regulation of AQP5 in submandibular gland in irradiated rats.

The molecular mechanisms of radiation-induced xerostomia remain unclear. The purpose of this study was to investigate the alterations of aquaporins (AQPs) and Na(+)/K(+)-ATPase in irradiated rat submandibular glands and to test the hypothesis that down-regulation of AQP5 expression in irradiated salivary glands is one of the mechanisms of radiation-induced xerostomia. Saliva from control and irradiated rat submandibular glands was analyzed. The mRNA level of AQP5 in the submandibular glands was assessed by semi-quantitative RT-PCR and in situ hybridization. The protein expression of AQP5, AQP1 and Na(+)/K(+)-ATPase was determined by Western blotting and immunohistochemistry. The body weight, submandibular gland weight, and saliva secretion of irradiated rats significantly decreased by 12, 24 and 32% on day 3 and 24, 16 and 38% on day 30 postirradiation, respectively. There was a significant increase in the protein concentration and osmolality of saliva in irradiated rats on days 3 and 30 postirradiation. However, there was no significant difference between irradiated and control rats in total saliva protein secretion. RT-PCR analysis showed that mRNA expression of AQP5 was significantly down-regulated by 37 and 51% in irradiated rats on days 3 and 30 postirradiation, respectively. Immunoblotting showed that the AQP5 protein level was decreased by 40 and 60% in irradiated glands, in contrast to the slight reductions of AQP1 and Na(+)/K(+)-ATPase proteins. Immunohistochemical analysis demonstrated that loss of AQP5 protein occurred throughout the irradiated glands, while no significant reduction was detected in AQP1 and Na(+)/ K(+)-ATPase labeling density. These results suggest that the preferential down-regulation of AQP5 with minor effects on AQP1 and Na(+)/K(+)-ATPase may contribute to radiation-induced salivary dysfunction.

Animals↗

[Experimental research on the effect of nanophase ceramics on osteoblasts functions].

In order to study the cytocompatibility of nanophase hydroxyapatite ceramic in vitro, we prepared hydroxyapatite by use of the wet chemistry techniques. The grain size of hydroxyapatite of interest to the present study was determined by scanning electron microscopy and atomic force microscopy with image analysis software. Primary culture of osteoblast from rat calvaria was established. Protein content, synthesis of alkaline phosphatase and deposition of calcium-containing mineral by osteoblasts cultured on nanophase hydroxyapatite ceramics and on conventional hydroxyapatite ceramics for 7, 14, 21 and 28 days were examined. The results showed that the average surface grain size of the nanophase and that of the conventional HA compact formulations was 55 (nanophase) and 780 (conventional) nm, respectively. More importantly, compared to the synthesis of alkaline phosphatase and deposition of calcium-containing mineral by osteoblasts cultured on nanophase was significantly greater than that on conventional ceramics after 21 and 28 days. The cytocompatibility was significantly greater on nanophase HA than on conventional formulations of the same ceramic.

Alkaline Phosphatase↗

Using a cDNA microarray to study cellular gene expression altered by Mycobacterium tuberculosis.

OBJECTIVE: To examine the global effects of Mycobacterium tuberculosis (M. tuberculosis) infection on macrophages. METHODS: The gene expression profiling of macrophage U937, in response to infection with M. tuberculosis H(37)R(a), was monitored using a high-density cDNA microarray. RESULTS: M. tuberculosis infection caused 463 differentially expressed genes, of which 366 genes are known genes registered in the Gene Bank. These genes function in various cellular processes including intracellular signalling, cytoskeletal rearrangement, apoptosis, transcriptional regulation, cell surface receptors, cell-mediated immunity as well as a variety of cellular metabolic pathways, and may play key roles in M. tuberculosis infection and intracellular survival. CONCLUSIONS: M. tuberculosis infection alters the expression of host-cell genes, and these genes will provide a foundation for understanding the infection process of M. tuberculosis. The cDNA microarray is a powerful tool for studying pathogen-host cell interaction.

Cells, Cultured↗

[Differential expression of human macrophage genes encoding cytokines and their regulatory elements after Mycobacterium tuberculosis infection].

To investigate whether the genes encoding cytokines and their regulatory elements participated in the immune response to Mycobacterium tuberculosis infection. Expression microarray was employed to compare the avirulent strain and clinically isolated strains infection induced macrophage cytokine differential expression. Results were cytokines IFN, TNF, TGF, IL and their regulatory elements are involved in the immune reaction. IL-19 was first reported to be involved in the anti-Mtb immunity. Relative expression level of theses factors before and after infection were assayed too. The data provides clues for further scrutinize the role of cytokines and related elements in the interaction between Mycobacterium tuberculosis and host macrophage.

Cytokines↗