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In-vitro examination of the positive inotropic effect of caffeine and taurine, the two most frequent active ingredients of energy drinks.

エナジードリンクの主要成分であるカフェインとタウリンの陽性変力作用のin vitro検討 (機械翻訳の邦題)

BMC cardiovascular disorders2017Chaban R, Kornberger A, Branski N, et al.
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研究デザイン
その他の原著論文
対象
ヒト
出版年
2017
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doi.org
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状態確認日
2026/08/17
収集日
2026/08/03
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公開

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日本語要約(機械生成)

本研究は、エナジードリンクの主成分であるカフェインとタウリンがヒト心筋の収縮挙動に及ぼす影響を評価した。心臓手術患者の右心耳組織から作成した92検体を対象に、電気刺激後、タウリン単独、カフェイン単独、両者併用の各群に曝露し、等尺性収縮力と収縮時間を測定した。その結果、タウリン単独では収縮挙動に変化は見られなかったが、カフェイン単独では収縮力が有意に増加し、収縮時間はわずかに短縮した。併用群でも同様の有意な収縮力増加と収縮時間短縮が認められたが、カフェイン単独と併用群の間で収縮力増加に有意差はなかった。結論として、カフェインは変力作用を示すが、タウリンは単独で有意な効果を示さず、カフェインの効果を増強も減弱もしなかった。

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抄録

Background: Our study aimed to evaluate changes in the contractile behavior of human myocardium after exposure to caffeine and taurine, the main active ingredients of energy drinks (EDs), and to evaluate whether taurine exhibits any inotropic effect at all in the dosages commonly used in EDs.Methods: Myocardial tissue was removed from the right atrial appendages of patients undergoing cardiac surgery and prepared to obtain specimens measuring 4 mm in length. A total of 92 specimens were exposed to electrical impulses at a frequency of 75 bpm for at least 40 min to elicit their maximum contractile force before measuring the isometric contractile force (ICF) and duration of contraction (CD). Following this, each specimen was treated with either taurine (group 1, n = 29), or caffeine (group 2, n = 31) or both (group 3, n = 32). After exposure, ICF and CD measuring were repeated. Post-treatment values were compared with pre-treatments values and indicated as percentages.Results: Exposure to taurine did not alter the contraction behavior of the specimens. Exposure to caffeine, in contrast, led to a significant increase in ICF (118 ± 03%, p < 0.01) und a marginal decrease in CD (95 ± 1.6%, p < 0.01). Exposure to a combination of caffeine and taurine also induced a statistically significant increase in ICF (124 ± 4%, p < 0.01) and a subtle reduction in CD (92 ± 1.4%, p < 0.01). The increase in ICF achieved by administration of caffeine was similar to that achieved by a combination of both caffeine and taurine (p = 0.2). The relative ICF levels achieved by administration of caffeine and a combination of taurine and caffeine, respectively, were both significantly higher (p < 0.01) than the ICF resulting from exposure to taurine only.Conclusion: While caffeine altered the contraction behavior of the specimen significantly in our in-vitro model, taurine did not exhibit a significant effect. Adding taurine to caffeine did not significantly enhance or reduce the effect of caffeine.

MeSH

AgedAtrial AppendageCaffeineCardiac Pacing, ArtificialCardiotonic AgentsEnergy DrinksHumansIn Vitro TechniquesMiddle AgedMyocardial ContractionTaurineTime Factors

DOI 10.1186/s12872-017-0625-z

PMID 28793864

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