ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Up Regulation of cystathione γ lyase and Hydrogen Sulphide in the Myocardium Inhibits the Progression of Isoproterenol-Caffeine Induced Left Ventricular Hypertrophy in Wistar Kyoto Rats.

心筋におけるシスタチオニンγリアーゼと硫化水素の上方制御は、Wistar Kyotoラットにおけるイソプロテレノール-カフェイン誘発左室肥大の進行を抑制する (機械翻訳の邦題)

PloS one2016Ahmad A, Sattar MA, Rathore HA, et al.
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研究デザイン
その他の原著論文
対象
動物
出版年
2016
出典
doi.org
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表示あり
出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
鮮度
確認期限内
確認段階
自動処理
記録状態
公開

日本語要約(機械生成)

本研究は、外因性硫化水素(H2S)投与が左室肥大(LVH)の退行に及ぼす影響を、酸化ストレス、動脈スティフネス、心筋のシスタチオニンγリアーゼ(CSE)発現の調節を通じて検討した。LVHはイソプレナリンとカフェインで誘発し、H2S供与体としてNaHSを腹腔内投与した。LVH群では心筋CSE mRNA発現が3倍減少したが、LVH-H2S群では4倍増加した。LVH-H2S群では収縮期血圧、平均動脈圧、脈波伝播速度が有意に低下し、心臓重量、左室重量、心筋厚が減少し、左室内径が増加した。また、スーパーオキシドジスムターゼ、グルタチオン、総抗酸化能が増加し、血漿マロンジアルデヒドが減少した。腎皮質血流は40%増加した。外因性H2S投与はLVHの進行を抑制し、CSE/H2S経路が抗肥大作用を示すことが示唆された。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Hydrogen sulphide (H2S) is an emerging molecule in many cardiovascular complications but its role in left ventricular hypertrophy (LVH) is unknown. The present study explored the effect of exogenous H2S administration in the regression of LVH by modulating oxidative stress, arterial stiffness and expression of cystathione γ lyase (CSE) in the myocardium. Animals were divided into four groups: Control, LVH, Control-H2S and LVH-H2S. LVH was induced by administering isoprenaline (5mg/kg, every 72 hours, S/C) and caffeine in drinking water (62mg/L) for 2 weeks. Intraperitoneal NaHS, 56μM/kg/day for 5 weeks, was given as an H2S donor. Myocardial expression of Cystathione γ lyase (CSE) mRNA was quantified using real time polymerase chain reaction (qPCR).There was a 3 fold reduction in the expression of myocardial CSE mRNA in LVH but it was up regulated by 7 and 4 fold in the Control-H2S and LVH-H2S myocardium, respectively. Systolic blood pressure, mean arterial pressure, pulse wave velocity were reduced (all P<0.05) in LVH-H2S when compared to the LVH group. Heart, LV weight, myocardial thickness were reduced while LV internal diameter was increased (all P<0.05) in the LVH-H2S when compared to the LVH group. Exogenous administration of H2S in LVH increased superoxide dismutase, glutathione and total antioxidant capacity but significantly reduced (all P<0.05) plasma malanodialdehyde in the LVH-H2S compared to the LVH group. The renal cortical blood perfusion increased by 40% in LVH-H2S as compared to the LVH group. Exogenous administration of H2S suppressed the progression of LVH which was associated with an up regulation of myocardial CSE mRNA/ H2S and a reduction in pulse wave velocity with a blunting of systemic hemodynamic. This CSE/H2S pathway exhibits an antihypertrophic role by antagonizing the hypertrophic actions of angiotensin II(Ang II) and noradrenaline (NA) but attenuates oxidative stress and improves pulse wave velocity which helps to suppress LVH. Exogenous administration of H2S augmented the reduced renal cortical blood perfusion in the LVH state.

MeSH

AnimalsCaffeineCystathionine gamma-LyaseGene Expression Regulation, EnzymologicHydrogen SulfideHypertrophy, Left VentricularIsoproterenolMaleMyocardiumRatsRats, Inbred WKYUp-Regulation

DOI 10.1371/journal.pone.0150137

PMID 26963622

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