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一种用于微创血液提取的优化空心微针。

An optimized hollow microneedle for minimally invasive blood extraction.

机构信息

Department of Biotechnology, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 120-749, South Korea.

出版信息

Biomed Microdevices. 2013 Feb;15(1):17-25. doi: 10.1007/s10544-012-9683-2.

DOI:10.1007/s10544-012-9683-2
PMID:22833155
Abstract

The healthcare system relies widely on biochemical information obtained from blood sample extracted via hypodermic needles, despite the invasiveness and pain associated with this procedure. Therefore, an alternative micro-scale needle for minimally invasive blood sampling is highly desirable. Traditional fabrication techniques to create microneedles do not generate needles with the combined features of a sharp tip, long length, and hollow structure concurrently. Here, we report the fabrication of a microneedle long enough to reach blood vessels and sharp enough to minimize nerve contact for minimally invasive blood extraction. The microneedle structure was precisely controlled using a drawing lithography technique, and a sharp tip angle was introduced using a laser-cutting system. We investigated the characteristics of a microneedle with a length of 1,800 μm length, an inner diameter of 60 μm, a tip diameter of 120 μm, and a 15° bevel angle through in-vitro liquid extraction and mechanical strength analysis. We demonstrated that the proposed structure results in blood extraction at a reasonable rate, and that a microneedle with this geometry can reliably penetrate skin without breaking. We integrated this microneedle into a blood extraction device to extract a 20 μl volume of mouse blood in-vivo. Our optimized, hollow microneedle can potentially be incorporated with other cutting-edge technologies such as microactuators, biosensors, and microfluidic chips to create blood analysis systems for point-of-care diagnostics.

摘要

医疗保健系统广泛依赖于通过皮下针从血液样本中获得的生化信息,尽管这种方法具有侵入性和疼痛。因此,非常需要一种替代的微创采血微针。传统的制造微针的技术无法同时生成具有锋利尖端、长长度和中空结构的组合特征的针。在这里,我们报告了一种足够长的微针的制造方法,该微针可以到达血管,并且足够锋利,可以最大限度地减少微创采血时与神经的接触。使用绘图光刻技术精确控制微针结构,并使用激光切割系统引入尖锐的尖端角度。我们通过体外液体提取和机械强度分析研究了长度为 1800 μm、内径为 60 μm、尖端直径为 120 μm 和 15°斜面的微针的特性。我们证明了所提出的结构可以以合理的速度进行血液提取,并且具有这种几何形状的微针可以可靠地穿透皮肤而不会断裂。我们将这种微针集成到血液提取装置中,以在体内提取 20 μl 体积的小鼠血液。我们优化的中空微针可以与其他尖端技术(如微致动器、生物传感器和微流控芯片)相结合,为即时诊断创建血液分析系统。

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