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一种新型的微针装置,可用于人类内耳的可控且可靠的液体活检。

A novel microneedle device for controlled and reliable liquid biopsy of the human inner ear.

机构信息

Department of Otolaryngology and Eaton-Peabody Laboratories, Massachusetts Eye and Ear, 243 Charles St., Boston, MA, 02114, USA; Department of Otolaryngology, Harvard Medical School, 243 Charles St., Boston, MA, 02114, USA; University of California San Diego School of Medicine, 9500 Gilman Dr., La Jolla, CA, 92093, USA.

Department of Otolaryngology and Eaton-Peabody Laboratories, Massachusetts Eye and Ear, 243 Charles St., Boston, MA, 02114, USA; Department of Otolaryngology, Harvard Medical School, 243 Charles St., Boston, MA, 02114, USA.

出版信息

Hear Res. 2019 Sep 15;381:107761. doi: 10.1016/j.heares.2019.06.004. Epub 2019 Jun 22.

Abstract

Sensorineural hearing loss is the most common sensory deficit worldwide, yet our understanding of the underlying pathophysiology is limited by the challenges of access to the inner ear in a safe and reliable manner. We present a novel microneedle device for trans-round window membrane liquid biopsy, which utilizes controlled depth of perforation and microliter aspiration control to safely biopsy fluids of the inner ear. Of eleven devices tested in fresh frozen human temporal bones, seven demonstrated alignment between electrical, visual and tactile detection of round window membrane perforation, and nine were successful in aspiration of meaningful diagnostic samples from the perilymphatic space. Purity of the average perilymph sample was 69% for a 5 μL sample volume, equivalent to 3.5 μL attributable to perilymph. Diagnostic success was shown both by transmastoid facial recess and transcanal tympanotomy approach. This device can enable new advances in the understanding of inner ear pathology, and brings us one step closer to liquid biopsy of the inner ear becoming a routine part of clinical care.

摘要

感音神经性听力损失是全球最常见的感觉缺陷,但由于安全可靠地进入内耳的挑战,我们对其潜在病理生理学的理解有限。我们提出了一种用于经圆窗膜液体活检的新型微针装置,该装置利用穿孔的受控深度和微升抽吸控制来安全地对内耳液进行活检。在十一个经过新鲜冷冻人颞骨测试的装置中,有七个装置在电、视觉和触觉检测圆窗膜穿孔方面显示出了一致性,有九个装置成功地从外淋巴间隙抽吸到有意义的诊断样本。对于 5μL 样本量,平均外淋巴样本的纯度为 69%,相当于 3.5μL 归因于外淋巴。经乳突面神经隐窝和经耳道鼓室切开术均显示出诊断成功。该装置可以促进对内耳病理学的新进展,并使我们更接近于实现内耳液体活检成为临床护理常规的一部分。

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