1.Histopathological Changes in Tissues of Bithynia siamensis goniomphalos Incubated in Crude Extracts of Camellia Seed and Mangosteen Pericarp.
Ratchadawan AUKKANIMART ; Thidarut BOONMARS ; Somchai PINLAOR ; Smarn TESANA ; Surasit AUNPROMMA ; Chantana BOOYARAT ; Pranee SRIRAJ ; Porntip LAUMMAUNWAI ; Wiyada PUNJARUK
The Korean Journal of Parasitology 2013;51(5):537-544
The present study was performed to observe histopathological changes in tissues of Bithynia siamensis goniomphalos (Gastropoda, Bithyniidae) incubated in crude extract solutions of camellia (Camellia oleifera) seed and mangosteen (Garcinia mangostana) pericarp, and furthermore to estimate the molluscicidal effects of 2 plant substances. Substantial numbers of bithyniid snails were incubated in various concentrations of 2 plant solution for 24 hr. As the positive control, snails incubated in various concentrations of niclosamide, a chemical molluscicide, were used. The histopathological findings were observed in sectioned snail specimens of each experimental and control groups. The results showed that both camellia and mangosteen extracts had molluscicidal effects at 24 hr with 50% lethal concentration (LC50) at concentrations of 0.003 and 0.002 g/ml, respectively, while niclosamide had LC50 at concentrations 0.599 ppm. B. siamensis goniomphalos snail tissues (foot, gill, and digestive system) showed disruption of columnar muscle fibers of the foot, reduction of the length and number of gill cilia, numerous mucous vacuoles, and irregularly shaped of epithelial cells. Irregular apical and calciferous cells, dilatation of the digestive gland tubule, and large hemolymphatic spaces, and irregular apical surfaces, detachment of cilia, and enlargement of lysosomal vacuoles of epidermis were also shown in all groups. By the present study, it is confirmed that 2 plants, camellia and mangosteen, are keeping some substance having molluscicidal effects, and histopathological findings obtained in this study will provide some clues in further studies on their action mechanisms to use them as natural molluscicides.
Animals
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Camellia/*chemistry
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Disease Vectors
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Garcinia mangostana/*chemistry
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Gastropoda/*drug effects
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Host-Parasite Interactions
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Plant Extracts/chemistry/*pharmacology
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Seeds/chemistry
2.Tolfenamic Acid Inhibits the Proliferation, Migration, and Invasion of Nasopharyngeal Carcinoma: Involvement of p38-Mediated Down-Regulation of Slug.
Tatsanachat JITTREETAT ; Yoo Seob SHIN ; Hye Sook HWANG ; Bok Soon LEE ; Yeon Soo KIM ; Phakdee SANNIKORN ; Chul Ho KIM
Yonsei Medical Journal 2016;57(3):588-598
PURPOSE: Tolfenamic acid (TA), a non-steroidal anti-inflammatory drug, is known to exhibit antitumor effects in various cancers apart from nasopharyngeal cancer (NPC). NPC exhibits high invasiveness, as well as metastatic potential, and patients continue to suffer from residual, recurrent, or metastatic disease even after chemoradiation therapy. Therefore, new treatment strategies are needed for NPC. In this study, we investigated the efficacy and molecular mechanisms of TA in NPC treatment. MATERIALS AND METHODS: TA-induced cell death was detected by cell viability assay in the NPC cell lines, HNE1 and HONE1. Wound healing assay, invasion assay, and Western blot analysis were used to evaluate the antitumor effects of TA in NPC cell lines. RESULTS: Treatment with TA suppressed the migration and invasion of HNE1 and HONE1 cells. Hepatocyte growth factor enhanced the proliferation, migration, and invasion abilities of NPC cells. This enhancement was successfully inhibited by TA treatment. Treatment with TA increased phosphorylation of p38, and the inhibition of p38 with SB203580 reversed the cytotoxic, anti-invasive, and anti-migratory effects of TA treatment in NPC cell lines. Moreover, inhibition of p38 also reversed the decrease in expression of Slug that was induced by TA treatment. CONCLUSION: In conclusion, the activation of p38 plays a role in mediating TA-induced cytotoxicity and inhibition of invasion and migration via down-regulation of Slug.
Animals
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Anti-Inflammatory Agents, Non-Steroidal/*pharmacology/therapeutic use
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Cell Line, Tumor
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Cell Movement/*drug effects
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Cell Proliferation/*drug effects
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Cell Survival/*drug effects
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Down-Regulation
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Gastropoda
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Gene Expression Regulation, Neoplastic/drug effects
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Hepatocyte Growth Factor/metabolism/*pharmacology
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Humans
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Imidazoles
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MAP Kinase Signaling System/drug effects
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Nasopharyngeal Neoplasms/*drug therapy/metabolism/pathology
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Neoplasm Invasiveness/*prevention & control
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Phosphorylation/drug effects
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Pyridines
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ortho-Aminobenzoates/*pharmacology/therapeutic use