在Choublier等人在2021年[6]進(jìn)行的一項研究中,解決了與研究血腦屏障相關(guān)的實驗挑戰(zhàn)。血腦屏障由于其在大腦中的位置以及對恒定、層流和均勻血流的需求而存在困難。為了應(yīng)對這些挑戰(zhàn),研究人員開發(fā)了一種堅固、低成本的裝置,將上部通道連接到 ibidi Pump System ibidi泵系統(tǒng)/流體剪切力系統(tǒng),建立四天的培養(yǎng)基單向循環(huán)以模擬生理條件。
Hong等人2022 [7]的這項工作,研究了了線粒體在維持內(nèi)皮細(xì)胞穩(wěn)態(tài)和健康中的作用。研究結(jié)果表明,線粒體斷裂在暴露于紊亂流動的區(qū)域增加,而細(xì)長的線粒體在單向流動的區(qū)域占主導(dǎo)地位。這表明流動模式對線粒體融合/分裂事件有深遠(yuǎn)的影響,影響內(nèi)皮細(xì)胞的促炎和代謝狀態(tài)。研究人員使用了ibidi Pump System ibidi泵系統(tǒng)/流體剪切力系統(tǒng)來研究流動模式相關(guān)的動力學(xué)。
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