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Microbiopsy engineered for minimally invasive and suture-free sub-millimetre skin sampling

机译:显微活检专为微创和无缝合亚毫米皮肤采样而设计

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摘要

We describe the development of a sub-millimetre skin punch biopsy device for minimally invasive and suture-free skin sampling for molecular diagnosis and research. Conventional skin punch biopsies range from 2-4 mm in diameter. Local anaesthesia is required and sutures are usually used to close the wound. Our microbiopsy is 0.50 mm wide and 0.20 mm thick. The microbiopsy device is fabricated from three stacked medical grade stainless steel plates tapered to a point and contains a chamber within the centre plate to collect the skin sample. We observed that the application of this device resulted in a 0.21 ± 0.04 mm wide puncture site in volunteer skin using reflectance confocal microscopy. Histological sections from microbiopsied skin revealed 0.22 ± 0.12 mm wide and 0.26 ± 0.09 mm deep puncture sites. Longitudinal observation in microbiopsied volunteers showed that the wound closed within 1 day and was not visible after 7 days. Reflectance confocal microscope images from these same sites showed the formation of a tiny crust that resolved by 3 weeks and was completely undetectable by the naked eye. The design parameters of the device were optimised for molecular analysis using sampled DNA mass as the primary end point in volunteer studies. Finally, total RNA was characterized. The optimised device extracted 5.9 ± 3.4 ng DNA and 9.0 ± 10.1 ng RNA. We foresee that minimally invasive molecular sampling will play an increasingly significant role in diagnostic dermatology and skin research.
机译:我们描述了亚毫米皮肤打孔活检设备的发展,用于微创和无缝合皮肤采样,用于分子诊断和研究。常规的皮肤打孔活检的直径范围为2-4毫米。需要局部麻醉,通常使用缝合线闭合伤口。我们的活检组织为0.50毫米宽和0.20毫米厚。微生物活检装置由三个渐缩成一点的堆叠的医用级不锈钢板制成,并在中心板上包含一个腔室,用于收集皮肤样本。我们观察到,使用反射共聚焦显微镜,该设备的应用在志愿者皮肤中导致0.21±0.04 mm宽的穿刺部位。活检皮肤的组织学切片显示0.22±0.12 mm宽和0.26±0.09 mm深的穿刺部位。在经过活检的志愿者中进行的纵向观察显示,伤口在1天之内闭合,并且在7天后不可见。来自这些相同位置的反射共聚焦显微镜图像显示形成了微小的硬皮,该硬皮在3周后分解,并且用肉眼完全无法检测到。该设备的设计参数针对分子分析进行了优化,以DNA采样量为志愿者研究的主要终点。最后,表征了总RNA。优化的设备提取了5.9±3.4 ng DNA和9.0±10.1 ng RNA。我们预见到,微创分子采样将在诊断皮肤病学和皮肤研究中发挥越来越重要的作用。

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