Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran

This study was carried out to investigate the protective effect of standardized ?-oryzanol-rich extracts on oxidative DNA damage induced by Fenton reaction and antiproliferative activity against human cancer cells. Six cultivars of Thai purple rice were collected in northern Thailand. Rice bran was...

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Main Authors: Saenjum C., Chaiyasut C., Chansakaow S., Sirithunyalug B.
Format: Article
Language:English
Published: 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-84881093988&partnerID=40&md5=280c2e98f7a180dd31f8bbf3609c0037
http://cmuir.cmu.ac.th/handle/6653943832/4718
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-47182014-08-30T02:42:46Z Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran Saenjum C. Chaiyasut C. Chansakaow S. Sirithunyalug B. This study was carried out to investigate the protective effect of standardized ?-oryzanol-rich extracts on oxidative DNA damage induced by Fenton reaction and antiproliferative activity against human cancer cells. Six cultivars of Thai purple rice were collected in northern Thailand. Rice bran was extracted with hexane/ethyl acetate mixture and the extract was evaporated to obtain crude rice bran oil. Each rice bran oil was further purified by column chromatography to obtain the ?-oryzanol-rich extract. The extracts contained ?-oryzanol in the range of 1.17 - 7.54 % w/w, in which GAM THOR exhibited the highest ?-oryzanol content. The extr \acts containing more than 5.0 % w/w ?-oryzanol (GAM THOR, GAM DOI MUSUR and GAM SUKHOTHAI-2) were selected to be standardized with ?-oryzanol and then the protective effect on oxidative DNA damage and antiproliferative activity against four human cancer cell lines (HT-29, HCT 116, MDA-MB-468 and PC3) were investigated. The extracts (10 ?g/ml) exhibited a protective effect on oxidative DNA damage induced by Fenton reaction as compared with standard quercetin (lower than 5 ?g/ml). Furthermore, all of the extracts exerted antiproliferative activity against human cancer cell lines in a dose-dependent manner. GAM THOR exhibited the highest antiproliferative activity against HT-29, HCT 116, MDA-MB-468 and PC3 with an 50% inhibition concentration value of 52.18 ? 1.21, 40.58 ? 5.69, 48.59 ? 2.40 and 51.61 ? 1.30 ?g/ml, respectively. From these findings, ?-oryzanolrich extracts from Thai purple rice bran show potential as chemopreventive supplements or in nutraceuticals. 2014-08-30T02:42:46Z 2014-08-30T02:42:46Z 2013 Article 16851994 10.12982/CMUJNS.2013.0001 http://www.scopus.com/inward/record.url?eid=2-s2.0-84881093988&partnerID=40&md5=280c2e98f7a180dd31f8bbf3609c0037 http://cmuir.cmu.ac.th/handle/6653943832/4718 English
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description This study was carried out to investigate the protective effect of standardized ?-oryzanol-rich extracts on oxidative DNA damage induced by Fenton reaction and antiproliferative activity against human cancer cells. Six cultivars of Thai purple rice were collected in northern Thailand. Rice bran was extracted with hexane/ethyl acetate mixture and the extract was evaporated to obtain crude rice bran oil. Each rice bran oil was further purified by column chromatography to obtain the ?-oryzanol-rich extract. The extracts contained ?-oryzanol in the range of 1.17 - 7.54 % w/w, in which GAM THOR exhibited the highest ?-oryzanol content. The extr \acts containing more than 5.0 % w/w ?-oryzanol (GAM THOR, GAM DOI MUSUR and GAM SUKHOTHAI-2) were selected to be standardized with ?-oryzanol and then the protective effect on oxidative DNA damage and antiproliferative activity against four human cancer cell lines (HT-29, HCT 116, MDA-MB-468 and PC3) were investigated. The extracts (10 ?g/ml) exhibited a protective effect on oxidative DNA damage induced by Fenton reaction as compared with standard quercetin (lower than 5 ?g/ml). Furthermore, all of the extracts exerted antiproliferative activity against human cancer cell lines in a dose-dependent manner. GAM THOR exhibited the highest antiproliferative activity against HT-29, HCT 116, MDA-MB-468 and PC3 with an 50% inhibition concentration value of 52.18 ? 1.21, 40.58 ? 5.69, 48.59 ? 2.40 and 51.61 ? 1.30 ?g/ml, respectively. From these findings, ?-oryzanolrich extracts from Thai purple rice bran show potential as chemopreventive supplements or in nutraceuticals.
format Article
author Saenjum C.
Chaiyasut C.
Chansakaow S.
Sirithunyalug B.
spellingShingle Saenjum C.
Chaiyasut C.
Chansakaow S.
Sirithunyalug B.
Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran
author_facet Saenjum C.
Chaiyasut C.
Chansakaow S.
Sirithunyalug B.
author_sort Saenjum C.
title Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran
title_short Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran
title_full Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran
title_fullStr Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran
title_full_unstemmed Protective effect on oxidative DNA damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from Thai purple rice bran
title_sort protective effect on oxidative dna damage and antiproliferative activity of standardized ?-oryzanol-rich extracts from thai purple rice bran
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-84881093988&partnerID=40&md5=280c2e98f7a180dd31f8bbf3609c0037
http://cmuir.cmu.ac.th/handle/6653943832/4718
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