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1.
Journal of Huazhong University of Science and Technology (Medical Sciences) ; (6): 152-5, 2008.
Article in English | WPRIM | ID: wpr-634592

ABSTRACT

In order to identify the differentially expressing gene of bone marrow mesenchymal stem cells (MSCs) stimulated by electromagnetic field (EMF) with osteogenesis microarray analysis, the bone marrow MSCs of SD rats were isolated and cultured in vitro. The third-passage cells were stimulated by EMFs and total RNA was extracted, purified and then used for the synthesis of cDNA and cRNA. The cRNA of stimulated group and the control group was hybridized with the rat oligo osteogenesis microarray respectively. The hybridization signals were acquired by using X-ray film after chemiluminescent detection and the data obtained were analyzed by employing the web-based completely integrated GEArray Expression Analysis Suite. RT-PCR was used to identify the target genes: Bmp1, Bmp7, Egf and Egfr. The results showed that 19 differentially expressing genes were found between the stimulated group and the control group. There were 6 up-regulated genes and 13 down-regulated genes in the stimulated group. Semi-quantitative RT-PCR confirmed that the expressions of Bmp1, Bmp7 mRNA of the stimulated group were up-regulated (P<0.05) and those of Egf, Egfr were down-regulated (P<0.05). It was suggested that the gene expression profiles of osteogenesis of the bone marrow MSCs were changed after EMF treatment. It is concluded that the genes are involved in skeletal development, bone mineral metabolism, cell growth and differentiation, cell adhesion etc.


Subject(s)
Bone Marrow Cells/cytology , Cell Differentiation , Down-Regulation , Electromagnetic Fields , Gene Expression Profiling , Gene Expression Regulation , Mesenchymal Stem Cells/cytology , Nucleic Acid Hybridization , Oligonucleotide Probes/chemistry , Osteogenesis/genetics , RNA, Complementary/metabolism , Reverse Transcriptase Polymerase Chain Reaction
2.
Experimental & Molecular Medicine ; : 204-212, 2005.
Article in English | WPRIM | ID: wpr-201941

ABSTRACT

The organic anion transporters (OAT) have recently been identified. Although the some transport properties of OATs in the kidney have been verified, the regulatory mechanisms for OAT's functions are still not fully understood. The rat OAT1 (rOAT1) transports a number of negatively charged organic compounds between the cells and their extracellular milieu. Caveolin (Cav) also plays a role in membrane transport. Therefore, we investigated the protein-protein interactions between rOAT1 and caveolin-2. In the rat kidney, the expressions of rOAT1 mRNA and protein were observed in both the cortex and the outer medulla. With respect to Cav-2, the expressions of mRNA and protein were observed in all portions of the kidney (cortex < outer medulla = inner medulla). The results of Western blot analysis using the isolated caveolae-enriched membrane fractions or the immunoprecipitates by respective antibodies from the rat kidney showed that rOAT1 and Cav-2 co-localized in the same fractions and they formed complexes each other. These results were confirmed by performing confocal microscopy with immunocytochemistry using the primary cultured renal proximal tubular cells. When the synthesized cRNA of rOAT1 along with the antisense oligodeoxynucleotides of Xenopus Cav-2 were co-injected into Xenopus oocytes, the [14C]p-aminohippurate and [3H]methotrexate uptake was slightly, but significantly decreased. The similar results were also observed in rOAT1 over-expressed Chinese hamster ovary cells. These findings suggest that rOAT1 and caveolin-2 are co-expressed in the plasma membrane and rOAT1's function for organic compound transport is upregulated by Cav-2 in the normal physiological condition.


Subject(s)
Animals , Rats , Biological Transport, Active/physiology , CHO Cells , Caveolins/metabolism , Cell Membrane/metabolism , Cells, Cultured , Cricetinae , Immunoprecipitation , Kidney Tubules, Proximal/metabolism , Methotrexate/metabolism , Microscopy, Confocal , Oligonucleotides, Antisense/pharmacology , Oocytes/metabolism , Organic Anion Transport Protein 1/antagonists & inhibitors , RNA, Complementary/metabolism , RNA, Messenger/genetics , Xenopus laevis/metabolism , p-Aminohippuric Acid/metabolism
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