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Simple and customizable method for fabrication of high-aspect ratio microneedle molds using low-cost 3D printing

机译:使用低成本3D打印制造高纵横比微针模具的简单且可定制的方法

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摘要

We present a simple and customizable microneedle mold fabrication technique using a low-cost desktop SLA 3D printer. As opposed to conventional microneedle fabrication methods, this technique neither requires complex and expensive manufacturing facilities nor expertise in microfabrication. While most low-cost 3D-printed microneedles to date display low aspect ratios and poor tip sharpness, we show that by introducing a two-step “Print & Fill” mold fabrication method, it is possible to obtain high-aspect ratio sharp needles that are capable of penetrating tissue. Studying first the effect of varying design input parameters and print settings, it is shown that printed needles are always shorter than specified. With decreasing input height, needles also begin displaying an increasingly greater than specified needle base diameter. Both factors contribute to low aspect ratio needles when attempting to print sub-millimeter height needles. By setting input height tall enough, it is possible to print needles with high-aspect ratios and tip radii of 20–40 µm. This tip sharpness is smaller than the specified printer resolution. Consequently, high-aspect ratio sharp needle arrays are printed in basins which are backfilled and cured in a second step, leaving sub-millimeter microneedles exposed resulting microneedle arrays which can be used as male masters. Silicone female master molds are then formed from the fabricated microneedle arrays. Using the molds, both carboxymethyl cellulose loaded with rhodamine B as well as polylactic acid microneedle arrays are produced and their quality examined. A skin insertion study is performed to demonstrate the functional capabilities of arrays made from the fabricated molds. This method can be easily adopted by the microneedle research community for in-house master mold fabrication and parametric optimization of microneedle arrays.
机译:我们提出了一种使用低成本台式SLA 3D打印机的简单且可定制的微针模具制造技术。与传统的微针制造方法相反,该技术既不需要复杂且昂贵的制造设施,也不需要微制造方面的专业知识。迄今为止,大多数低成本3D打印的微针都显示出较低的长宽比和较差的针尖锐度,但我们表明,通过引入两步“打印并填充”模具制造方法,可以获得高长径比的锐针,能够穿透组织。首先研究改变设计输入参数和打印设置的影响,结果表明打印的针总是比指定的短。随着输入高度的减小,针也开始显示出比指定的针底直径更大的直径。当尝试打印亚毫米高度的针时,这两个因素都会导致长宽比低的针。通过将输入高度设置得足够高,可以打印高纵横比且针尖半径为20–40μm的针。该笔尖清晰度小于指定的打印机分辨率。因此,将高纵横比的尖针阵列印在水池中,然后在第二步中进行回填和固化,从而使亚毫米级的微针暴露在外,从而形成可用作男性原版的微针阵列。然后,由制造的微针阵列形成硅胶母模。使用模具,既可以生产出装有若丹明B的羧甲基纤维素,也可以生产聚乳酸微针阵列,并检查其质量。进行了皮肤插入研究,以证明由预制模具制成的阵列的功能能力。这种方法可以很容易地被微针研究团体用于内部主模制造和微针阵列的参数优化。

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