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1.
Asian Pacific Journal of Tropical Biomedicine ; (12): 23-28, 2011.
Article in English | WPRIM | ID: wpr-335069

ABSTRACT

<p><b>OBJECTIVE</b>To study whether the infection of Schistosomiasis japanicum (S. japanicum) is related to enhanced proliferation and migration of cancer cells, and the molecular mechanism pertains to cancer cell metastasis in human host.</p><p><b>METHODS</b>The gene of S. japanicum glutathione transferase (sjGST) cloned from S. japanicum was expressed, purified and applied in a series of assays to explore the effect of sjGST on proliferation and migration of MDA-MB-435S, and the expression of MMP2 and MMP9. Immunofluorescence assay for the binding of sjGST to MDA-MB-435S was also carried out.</p><p><b>RESULTS</b>Results showed that sjGST enhanced proliferation and migration in human breast cancer cell MDA-MB-435S signifycantly at 50-200 nM, but did not enhance them in human lung cancer cell A549. Immunofluorescence assay for the binding of sjGST to MDA-MB-435S and A549 showed that GST was readily bound to the breast cancer cells, but showed almost no binding to human lung cancer cells. The assays for gelatinase activity showed that both MMP2 and MMP9 activities were increased significantly in the presence of sjGST (50-200 nM) in MDA-MB-435S, but they were not significant in A549.</p><p><b>CONCLUSIONS</b>Our current results show strongly that S. japanicum GST binds to MDA-MB-435S probably via its receptor, and enhances proliferation and migration of the cancer cells by up-regulatory expression of MMP2 and MMP9.</p>


Subject(s)
Humans , Breast Neoplasms , Cell Line, Tumor , Cell Movement , Cell Proliferation , Glutathione Transferase , Genetics , Metabolism , Pharmacology , Matrix Metalloproteinase 2 , Metabolism , Matrix Metalloproteinase 9 , Metabolism , Protozoan Proteins , Genetics , Metabolism , Pharmacology , Recombinant Proteins , Genetics , Metabolism , Pharmacology , Schistosomiasis japonica , Genetics
2.
Acta Pharmaceutica Sinica ; (12): 1570-1575, 2010.
Article in Chinese | WPRIM | ID: wpr-250593

ABSTRACT

Biodegradable four-arm star-shaped poly(ethylene glycol)-block-poly(L-lactic acid) copolymer (sPEG-b-PLLA), four-arm star-shaped poly(L-lactic acid) (sPLLA), linearly poly(ethylene glycol)-block-poly(L-lactic acid) copolymer (PEG-b-PLLA) and linearly poly(L-lactic acid) (PLLA) were synthesized from L-lactice acid, pentaerythritol, poly(ethylene glycol) and star-shaped poly(ethylene glycol), using the method of melt polycondensation, and the products were characterized and confirmed by 1H NMR spectroscopy, FT-IR and GPC. Four types of ibuprofen loaded microspheres based on the above four types of polymers, i.e., IBU/PLLA, IBU/sPLLA, IBU/PEG-b-PLLA, and IBU/sPEG-b-PLLA microspheres were prepared using the method of solvent evaporation, and the optimized preparation technology was obtained via orthogonal experiments, and the drug-encapsulating properties and in vitro drug-releasing properties were studied. The results showed that compared with IBU/PLLA and IBU/PEG-b-PLLA microspheres, the drug encapsulate efficiency of IBU/sPLLA and IBU/sPEG-b-PLLA microspheres were higher and the in vitro drug releasing rate slowed down, which mainly due to the faster degradation of sPLLA and sPEG-b-PLLA for the star-shaped structure and the block copolymerization of sPEG. The drug releasing curves of these three types of microspheres could be fit by first-order equation, and the releasing mechanism was non-Fickian diffusing, i.e., the synergetic effect of polymer degradation and drug diffusion.


Subject(s)
Analgesics, Non-Narcotic , Chemistry , Anti-Inflammatory Agents, Non-Steroidal , Chemistry , Delayed-Action Preparations , Drug Carriers , Ibuprofen , Chemistry , Lactates , Chemistry , Lactic Acid , Chemistry , Magnetic Resonance Spectroscopy , Microspheres , Particle Size , Polyesters , Polyethylene Glycols , Chemistry , Polymers , Chemistry , Spectroscopy, Fourier Transform Infrared
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