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Analysis of focused ultrasound with microbubbles induced BBB disruption on tight junction morphology

机译:聚焦超声与微泡引起的血脑屏障破坏紧密连接形态分析

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Focused ultrasound (FUS) with systemically delivered microbubbles has been established to locally, reversibly and non-invasively increase the permeability of the blood brain barrier to facilitate targeted drug delivery to the brain. Despite FUS constituting a promising therapeutic technique, the cellular mechanism of FUS-mediated BBB opening has yet to be fully described. Immunoelectron microscopy of vessels has reported the removal of tight junction (TJ) proteins from the junctional cleft, yet no study has examined the structural integrity of the entire length of the TJ strand following FUS with microbubbles. Furthermore, permeability studies have identified differences in the rate of leakage between large and small vessels, but it remains to be studied if TJ strand morphology differs among vessel types. The aim of the current study is to investigate TJ strand morphology for structural abnormalities in different vessel types following FUS-induced BBB opening.
机译:已经建立了具有系统递送的微泡的聚焦超声(FUS),以局部,可逆和非侵入性地增加血脑屏障的通透性,以促进靶向药物向脑的递送。尽管FUS构成了一种有前途的治疗技术,但FUS介导的BBB开放的细胞机制尚未得到充分描述。血管的免疫电子显微镜术报道了从交界裂隙中去除了紧密连接(TJ)蛋白,但尚无研究检查了FUS产生微泡后TJ链全长的结构完整性。此外,渗透性研究已经确定了大血管和小血管之间的渗漏率差异,但是如果不同血管类型的TJ链形态不同,则仍有待研究。当前研究的目的是研究FUS诱导的BBB开放后不同血管类型的TJ链形态异常。

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