Betaine Modulates Age-Related NF-[kappa]B by Thiol-Enhancing Action
Depletion of glutathione levels and perturbations in redox status are considered to play a crucial role in aging and chronic inflammatory processes through the activation of redox sensitive transcription factors, including nuclear factor-κB (NF-κB). In the current study, we assessed the regulatory a...
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Veröffentlicht in: | Biological & pharmaceutical bulletin 2007-12, Vol.30 (12), p.2244 |
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description | Depletion of glutathione levels and perturbations in redox status are considered to play a crucial role in aging and chronic inflammatory processes through the activation of redox sensitive transcription factors, including nuclear factor-κB (NF-κB). In the current study, we assessed the regulatory action of dietary betaine in the suppression of NF-κB by comparing kidney tissue from old, betaine-supplemented rats or non-betaine-supplemented rats (age 21 months) and 7 month-old rats. In addition, cultured HEK 293T cells were utilized for the molecular assessment of betaine's restorative ability of redox status when treating cells with potent glutathione (GSH)-depleting agents. Results showed that in old rats a short-term feeding (10 d) with betaine attenuated the age-related decrease in thiol levels, increase in reactive species and TNFα expression via NF-κB activation, compared to the young controls. These findings were verified in the cell-cultured system. Further investigations found that redox imbalance due to thiol depletion caused increased NF-κB activation, and cyclooxygenase (COX)-2 and TNFα levels, both of which were suppressed by betaine treatment. Based on both in vivo and in vitro data, we concluded that betaine exerts its efficacy by maintaining thiol status in the regulation of COX-2 and TNFα via NF-κB activation during aging. |
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In the current study, we assessed the regulatory action of dietary betaine in the suppression of NF-κB by comparing kidney tissue from old, betaine-supplemented rats or non-betaine-supplemented rats (age 21 months) and 7 month-old rats. In addition, cultured HEK 293T cells were utilized for the molecular assessment of betaine's restorative ability of redox status when treating cells with potent glutathione (GSH)-depleting agents. Results showed that in old rats a short-term feeding (10 d) with betaine attenuated the age-related decrease in thiol levels, increase in reactive species and TNFα expression via NF-κB activation, compared to the young controls. These findings were verified in the cell-cultured system. Further investigations found that redox imbalance due to thiol depletion caused increased NF-κB activation, and cyclooxygenase (COX)-2 and TNFα levels, both of which were suppressed by betaine treatment. Based on both in vivo and in vitro data, we concluded that betaine exerts its efficacy by maintaining thiol status in the regulation of COX-2 and TNFα via NF-κB activation during aging.</description><identifier>ISSN: 0918-6158</identifier><identifier>EISSN: 1347-5215</identifier><language>eng</language><publisher>Tokyo: Japan Science and Technology Agency</publisher><ispartof>Biological & pharmaceutical bulletin, 2007-12, Vol.30 (12), p.2244</ispartof><rights>Copyright Japan Science and Technology Agency 2007</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784</link.rule.ids></links><search><creatorcontrib>Kyung Go, Eun</creatorcontrib><creatorcontrib>Jin Jung, Kyung</creatorcontrib><creatorcontrib>Min Kim, Ji</creatorcontrib><creatorcontrib>Lim, Hyunae</creatorcontrib><creatorcontrib>Kwan Lim, Hyeang</creatorcontrib><creatorcontrib>Pal Yu, Byung</creatorcontrib><creatorcontrib>Young Chung, Hae</creatorcontrib><title>Betaine Modulates Age-Related NF-[kappa]B by Thiol-Enhancing Action</title><title>Biological & pharmaceutical bulletin</title><description>Depletion of glutathione levels and perturbations in redox status are considered to play a crucial role in aging and chronic inflammatory processes through the activation of redox sensitive transcription factors, including nuclear factor-κB (NF-κB). In the current study, we assessed the regulatory action of dietary betaine in the suppression of NF-κB by comparing kidney tissue from old, betaine-supplemented rats or non-betaine-supplemented rats (age 21 months) and 7 month-old rats. In addition, cultured HEK 293T cells were utilized for the molecular assessment of betaine's restorative ability of redox status when treating cells with potent glutathione (GSH)-depleting agents. Results showed that in old rats a short-term feeding (10 d) with betaine attenuated the age-related decrease in thiol levels, increase in reactive species and TNFα expression via NF-κB activation, compared to the young controls. These findings were verified in the cell-cultured system. Further investigations found that redox imbalance due to thiol depletion caused increased NF-κB activation, and cyclooxygenase (COX)-2 and TNFα levels, both of which were suppressed by betaine treatment. 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In the current study, we assessed the regulatory action of dietary betaine in the suppression of NF-κB by comparing kidney tissue from old, betaine-supplemented rats or non-betaine-supplemented rats (age 21 months) and 7 month-old rats. In addition, cultured HEK 293T cells were utilized for the molecular assessment of betaine's restorative ability of redox status when treating cells with potent glutathione (GSH)-depleting agents. Results showed that in old rats a short-term feeding (10 d) with betaine attenuated the age-related decrease in thiol levels, increase in reactive species and TNFα expression via NF-κB activation, compared to the young controls. These findings were verified in the cell-cultured system. Further investigations found that redox imbalance due to thiol depletion caused increased NF-κB activation, and cyclooxygenase (COX)-2 and TNFα levels, both of which were suppressed by betaine treatment. 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title | Betaine Modulates Age-Related NF-[kappa]B by Thiol-Enhancing Action |
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