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使用可注射磁性微粒进行无导线心脏起搏的可行性

Feasibility of Leadless Cardiac Pacing Using Injectable Magnetic Microparticles.

作者信息

Rotenberg Menahem Y, Gabay Hovav, Etzion Yoram, Cohen Smadar

机构信息

The Avram and Stella Goldstein-Goren Department of Biotechnology Engineering, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

Cardiac Arrhythmia Research Laboratory, Department of Physiology and Cell Biology, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

出版信息

Sci Rep. 2016 Apr 19;6:24635. doi: 10.1038/srep24635.

Abstract

A noninvasive, effective approach for immediate and painless heart pacing would have invaluable implications in several clinical scenarios. Here we present a novel strategy that utilizes the well-known mechano-electric feedback of the heart to evoke cardiac pacing, while relying on magnetic microparticles as leadless mechanical stimulators. We demonstrate that after localizing intravenously-injected magnetic microparticles in the right ventricular cavity using an external electromagnet, the application of magnetic pulses generates mechanical stimulation that provokes ventricular overdrive pacing in the rat heart. This temporary pacing consistently managed to revert drug-induced bradycardia, but could only last up to several seconds in the rat model, most likely due to escape of the particles between the applied pulses using our current experimental setting. In a pig model with open chest, MEF-based pacing was induced by banging magnetic particles and has lasted for a longer time. Due to overheating of the electromagnet, we intentionally terminated the experiments after 2 min. Our results demonstrate for the first time the feasibility of external leadless temporary pacing, using injectable magnetic microparticles that are manipulated by an external electromagnet. This new approach can have important utilities in clinical settings in which immediate and painless control of cardiac rhythm is required.

摘要

一种用于即时且无痛心脏起搏的非侵入性有效方法在多种临床场景中将具有不可估量的意义。在此,我们提出一种新颖的策略,该策略利用心脏著名的机械 - 电反馈来诱发心脏起搏,同时依靠磁性微粒作为无导线机械刺激器。我们证明,在使用外部电磁铁将静脉注射的磁性微粒定位在右心室腔后,施加磁脉冲会产生机械刺激,从而在大鼠心脏中引发心室超速起搏。这种临时起搏始终成功地逆转了药物诱导的心动过缓,但在大鼠模型中只能持续数秒,这很可能是由于在我们当前的实验设置下,微粒在施加的脉冲之间逸出所致。在开胸猪模型中,通过撞击磁性微粒诱导基于机械 - 电反馈的起搏,并且持续了更长时间。由于电磁铁过热,我们在2分钟后有意终止了实验。我们的结果首次证明了使用由外部电磁铁操纵的可注射磁性微粒进行外部无导线临时起搏的可行性。这种新方法在需要即时且无痛控制心律的临床环境中可能具有重要用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97d1/4876985/a2f706d56c67/srep24635-f1.jpg

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