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Potential of xanthones from tropical fruit mangosteen as anti-cancer agents: Caspase-dependent apoptosis induction in vitro and in mice

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dc.contributor.author Watanapokasin R.
dc.contributor.author Jarinthanan F.
dc.contributor.author Jerusalmi A.
dc.contributor.author Suksamrarn S.
dc.contributor.author Nakamura Y.
dc.contributor.author Sukseree S.
dc.contributor.author Uthaisang-Tanethpongtamb W.
dc.contributor.author Ratananukul P.
dc.contributor.author Sano T.
dc.date.accessioned 2021-04-05T03:36:22Z
dc.date.available 2021-04-05T03:36:22Z
dc.date.issued 2010
dc.identifier.issn 2732289
dc.identifier.other 2-s2.0-77955920713
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/14670
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-77955920713&doi=10.1007%2fs12010-009-8903-6&partnerID=40&md5=0910ecf01c2abf5a04a3f50a0532414a
dc.description.abstract The pericarp of mangosteen (Garcinia mangostana L.) is rich in various xanthones that are known to possess unique biological activities. In this work, we characterized the anti-proliferative and cytotoxic activities of mangosteen xanthones both in vitro and in mice. In vitro analysis with a human colorectal adenocarcinoma cell line, COLO 205, showed that mangosteen xanthones not only inhibit the proliferation of target cells but also induce their death by apoptosis that involves the activation of the caspase cascade. In vivo analysis using a mouse subcutaneous tumor model with COLO 205 cells showed that, at relatively low doses, the growth of tumors was repressed upon intratumoral administration of mangosteen xanthones. When a higher dose of mangosteen xanthones was administered, the size of tumors was reduced gradually, and, in some mice, the disappearance of tumors was seen. Histopathological evaluation and biochemical analysis of tumors that received mangosteen xanthones indicate the induction of apoptosis in tumors, which resulted in the repression of their growth and the reduction of their sizes. These results demonstrate the potential of mangosteen xanthones to serve as anti-cancer agents for the chemotherapy of cancer. © 2010 Springer Science+Business Media, LLC.
dc.subject Apoptosis
dc.subject Cancer Chemotherapy
dc.subject Caspases
dc.subject Garcinia mangostana L (mangosteen)
dc.subject Mangostin
dc.subject Activation analysis
dc.subject Cell culture
dc.subject Cell death
dc.subject Chemotherapy
dc.subject Tumors
dc.subject antineoplastic agent
dc.subject caspase
dc.subject caspase 3
dc.subject caspase 8
dc.subject cytochrome c
dc.subject mangosteen xanthone
dc.subject unclassified drug
dc.subject xanthone derivative
dc.subject adenocarcinoma
dc.subject animal experiment
dc.subject animal model
dc.subject animal tissue
dc.subject antineoplastic activity
dc.subject apoptosis
dc.subject article
dc.subject cell proliferation
dc.subject cell structure
dc.subject cell viability
dc.subject colon adenocarcinoma
dc.subject colorectal cancer
dc.subject controlled study
dc.subject DNA fragmentation
dc.subject drug cytotoxicity
dc.subject enzyme activation
dc.subject enzyme activity
dc.subject enzyme release
dc.subject fruit
dc.subject growth inhibition
dc.subject high performance liquid chromatography
dc.subject histopathology
dc.subject human
dc.subject human cell
dc.subject in vitro study
dc.subject in vivo study
dc.subject male
dc.subject mangosteen
dc.subject mouse
dc.subject nonhuman
dc.subject signal transduction
dc.subject tumor cell
dc.subject tumor growth
dc.subject tumor volume
dc.subject Animals
dc.subject Antineoplastic Agents, Phytogenic
dc.subject Apoptosis
dc.subject Caspases
dc.subject Cell Line, Tumor
dc.subject Cell Proliferation
dc.subject Colorectal Neoplasms
dc.subject Enzyme Activation
dc.subject Female
dc.subject Fruit
dc.subject Garcinia mangostana
dc.subject Humans
dc.subject Mice
dc.subject Mice, Nude
dc.subject Neoplasms
dc.subject Plant Extracts
dc.subject Xanthones
dc.subject Garcinia mangostana
dc.subject Mus
dc.title Potential of xanthones from tropical fruit mangosteen as anti-cancer agents: Caspase-dependent apoptosis induction in vitro and in mice
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation Applied Biochemistry and Biotechnology. Vol 162, No.4 (2010), p.1080-1094
dc.identifier.doi 10.1007/s12010-009-8903-6


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