1.Saponins isolated from roots of Chlorophytum borivilianum reduce acute and chronic inflammation and histone deacetylase.
Anirudha A LANDE ; Shirishkumar D AMBAVADE ; E-mail: SHIRISHKUMAR77@YAHOO.COM. ; Uma S SWAMI ; Prafulla P ADKAR ; Prashant D AMBAVADE ; Arun B WAGHAMARE
Journal of Integrative Medicine 2015;13(1):25-33
OBJECTIVEThe roots of Chlorophytum borivilanum are used in traditional medicine for the treatment of arthritis and inflammation. The aim of the work was to evaluate the anti-inflammatory activity of isolated saponins from Chlorophytum borivilianum (ISCB).
METHODSThe ISCB was screened using the carrageenan-induced paw edema, histamine-induced paw edema, cotton pellet-induced granuloma, and Freund's adjuvant-induced arthritis in rats at orally administered doses of 3, 10, and 30 mg/kg. Effect of ISCB on histone deacetylase (HDAC) level was measured by the HDAC assay at the highest dose (30 mg/kg).
RESULTSThe results showed that the ISCB significantly reduced carrageenan-induced inflammation, histamine-induced inflammation, cotton pellet-induced granuloma and Freund's adjuvant-induced arthritis in rats. The ISCB at a dose of 30 mg/kg significantly inhibited HDAC level in rat paw tissue.
CONCLUSIONIt is concluded that saponins isolated from roots of C. borivilianum possess anti-inflammatory and anti-arthritic properties. ISCB may act by inhibiting histamine, prostaglandin and HDAC. This suggests that ISCBs have potential for therapeutic use in the treatment of inflammation and arthritis.
Animals ; Anti-Inflammatory Agents ; pharmacology ; Arthritis, Experimental ; drug therapy ; Female ; Histone Deacetylase Inhibitors ; pharmacology ; Histone Deacetylases ; metabolism ; Liliaceae ; chemistry ; Male ; Plant Roots ; chemistry ; Rats ; Rats, Wistar ; Saponins ; pharmacology ; therapeutic use ; toxicity
2.Improved Therapeutic Effect against Leukemia by a Combination of the Histone Methyltransferase Inhibitor Chaetocin and the Histone Deacetylase Inhibitor Trichostatin A.
Huong Thi Thanh TRAN ; Hee Nam KIM ; Il Kwon LEE ; Thanh Nhan NGUYEN-PHAM ; Jae Sook AHN ; Yeo Kyeoung KIM ; Je Jung LEE ; Kyeong Soo PARK ; Hoon KOOK ; Hyeoung Joon KIM
Journal of Korean Medical Science 2013;28(2):237-246
SUV39H1 is a histone 3 lysine 9 (H3K9)-specific methyltransferase that is important for heterochromatin formation and the regulation of gene expression. Chaetocin specifically inhibits SUV39H1, resulted in H3K9 methylation reduction as well as reactivation of silenced genes in cancer cells. Histone deacetylase (HDAC) inhibitors inhibit deacetylases and accumulate high levels of acetylation lead to cell cycle arrest and apoptosis. In this study, we demonstrated that treatment with chaetocin enhanced apoptosis in human leukemia HL60, KG1, Kasumi, K562, and THP1 cells. In addition, chaetocin induced the expression of cyclin-dependent kinase inhibitor 2B (p15), E-cadherin (CDH1) and frizzled family receptor 9 (FZD9) through depletion of SUV39H1 and reduced H3K9 methylation in their promoters. Co-treatment with chaetocin and HDAC inhibitor trichostatin A (TSA) dramatically increased apoptosis and produced greater activation of genes. Furthermore, this combined treatment significantly increased loss of SUV39H1 and reduced histone H3K9 trimethylation responses accompanied by increased acetylation. Importantly, co-treatment with chaetocin and TSA produced potent antileukemic effects in leukemia cells derived from patients. These in vitro findings suggest that combination therapy with SUV39H1 and HDAC inhibitors may be of potential value in the treatment of leukemia.
Acetylation/drug effects
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Adolescent
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Adult
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Aged
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Apoptosis/*drug effects
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Cadherins/metabolism
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Cell Line, Tumor
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Cyclin-Dependent Kinase Inhibitor p15/metabolism
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DNA Methylation/drug effects
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Enzyme Inhibitors/therapeutic use/*toxicity
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Frizzled Receptors/metabolism
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Gene Expression Regulation/drug effects
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HL-60 Cells
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Histone Deacetylase Inhibitors/therapeutic use/*toxicity
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Histone-Lysine N-Methyltransferase/*antagonists & inhibitors/metabolism
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Histones/genetics/metabolism
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Humans
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Hydroxamic Acids/therapeutic use/*toxicity
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K562 Cells
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Leukemia/drug therapy/metabolism/pathology
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Leukemia, Myeloid, Acute/genetics/metabolism/pathology
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Male
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Middle Aged
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Piperazines/therapeutic use/toxicity
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Promoter Regions, Genetic
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Young Adult