Disrupted endothelial cell heterogeneity and network organization impair vascular function in prediabetic obesity.
前糖尿病性肥満における内皮細胞の不均一性とネットワーク組織の破綻が血管機能を障害する (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 動物
- 出版年
- 2020
- 出典
- doi.org
- 抄録の表示
- 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)
肥満は心血管疾患の危険因子であり、内皮機能障害が初期段階で生じるが、その機序は不明である。本研究では、前糖尿病性肥満ラットを用いて、内皮細胞の不均一性とネットワーク組織の変化が血管反応性に及ぼす影響を検討した。その結果、肥満では一酸化窒素依存性の血管拡張反応が障害され、内皮細胞ネットワーク全体のカルシウム応答が低下していた。構造的ネットワークは不変であったが、機能的ネットワークではアゴニスト感知細胞のクラスターが大型化・減少し、クラスター間のシグナル伝達経路長が延長した。隣接細胞間の伝達は正常であり、ネットワーク組織の変化が集団レベルのカルシウムシグナル障害を引き起こし、血管緊張の制御不全をもたらすことが示された。内皮細胞の分布と配置が血管応答の全体を決定するという新たな枠組みを提唱する。
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抄録
Background: Obesity is a major risk factor for diabetes and cardiovascular diseases such as hypertension, heart failure, and stroke. Impaired endothelial function occurs in the earliest stages of obesity and underlies vascular alterations that give rise to cardiovascular disease. However, the mechanisms that link weight gain to endothelial dysfunction are ill-defined. Increasing evidence suggests that endothelial cells are not a population of uniform cells but are highly heterogeneous and are organized as a communicating multicellular network that controls vascular function.Purpose: To investigate the hypothesis that disrupted endothelial heterogeneity and network-level organization contribute to impaired vascular reactivity in obesity.Methods and results: To study obesity-related vascular function without complications associated with diabetes, a state of prediabetic obesity was induced in rats. Small artery diameter recordings confirmed nitric-oxide mediated vasodilator responses were dependent on increases in endothelial calcium levels and were impaired in obese animals. Single-photon imaging revealed a linear relationship between blood vessel relaxation and population-wide calcium responses. Obesity did not alter the slope of this relationship, but impaired calcium responses in the endothelial cell network. The network comprised structural and functional components. The structural architecture, a hexagonal lattice network of connected cells, was unchanged in obesity. The functional network contained sub-populations of clustered specialized agonist-sensing cells from which signals were communicated through the network. In obesity there were fewer but larger clusters of sensory cells and communication path lengths between clusters increased. Communication between neighboring cells was unaltered in obesity. Altered network organization resulted in impaired, population-level calcium signaling and deficient endothelial control of vascular tone.Conclusions: The distribution of cells in the endothelial network is critical in determining overall vascular response. Altered cell heterogeneity and arrangement in obesity decreases endothelial function and provides a novel framework for understanding compromised endothelial function in cardiovascular disease.
MeSH
DOI 10.1016/j.metabol.2020.154340
PMID 32791171
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