| Literature DB >> 25756523 |
Dmitry L Aminin1, Ekaterina S Menchinskaya2, Evgeny A Pisliagin3, Alexandra S Silchenko4, Sergey A Avilov5, Vladimir I Kalinin6.
Abstract
Triterpene glycosides are characteristic secondary metabolites of sea cucumbers (Holothurioidea, Echinodermata). They have hemolytic, cytotoxic, antifungal, and other biological activities caused by membranotropic action. These natural products suppress the proliferation of various human tumor cell lines in vitro and, more importantly, intraperitoneal administration in rodents of solutions of some sea cucumber triterpene glycosides significantly reduces both tumor burden and metastasis. The anticancer molecular mechanisms include the induction of tumor cell apoptosis through the activation of intracellular caspase cell death pathways, arrest of the cell cycle at S or G2/M phases, influence on nuclear factors, NF-κB, and up-down regulation of certain cellular receptors and enzymes participating in cancerogenesis, such as EGFR (epidermal growth factor receptor), Akt (protein kinase B), ERK (extracellular signal-regulated kinases), FAK (focal adhesion kinase), MMP-9 (matrix metalloproteinase-9) and others. Administration of some glycosides leads to a reduction of cancer cell adhesion, suppression of cell migration and tube formation in those cells, suppression of angiogenesis, inhibition of cell proliferation, colony formation and tumor invasion. As a result, marked growth inhibition of tumors occurs in vitro and in vivo. Some holothurian triterpene glycosides have the potential to be used as P-gp mediated MDR reversal agents in combined therapy with standard cytostatics.Entities:
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Year: 2015 PMID: 25756523 PMCID: PMC4377980 DOI: 10.3390/md13031202
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Chart 1Structure of philinopsides.
Chart 2Structure of patagonicoside A.
Chart 3Structures of holothurin A and echinosides.
Chart 4Structure of colohiroside A.
Chart 5Structure of intercedenside A.
Chart 6Structures of okhotosides and frondoside A.
Chart 7Structure of stichoposides.
Chart 8Structures of holotoxins.
Chart 9Structures of cucumariosides.
Chart 10Structure of bivittoside A and holothurinoside A.
Effects of sea cucumber triterpene glycosides upon cancer cells and tumors.
| # | Glycoside | Sea Cucumber sp. | Type of Activity |
|---|---|---|---|
| Philinopside A | Reduction of cell viability [ | ||
| Philinopside E | |||
| Patagonicoside A | Suppression of cell proliferation [ | ||
| Holothurin A | Reduction of cell viability [ | ||
| Ds-echinoside A | |||
| Echinoside A | |||
| 24-dehydro echinoside A | |||
| Colochiroside A | Reduction of cell viability, reduction of tumor growth | ||
| Intercedenside A | Reduction of cell viability, reduction of tumor growth | ||
| Okhotoside B1 | Reduction of cell viability [ | ||
| Okhotoside B2 | |||
| Okhotoside B3 | |||
| Frondoside A | Reduction of cell viability [ | ||
| Stichoposide C | Induction of apoptosis; reduction of tumor growth | ||
| Cucumariosides A2-2 | Inhibition of cell proliferation, cell cycle arrest and induction of apoptosis [ | ||
| Cucumarioside A4-2 |