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Integrated hollow microneedle-optofluidic biosensor for therapeutic drug monitoring in sub-nanoliter volumes

机译:集成中空微针-光生物传感器用于纳纳以下体积的治疗药物监测

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摘要

Therapeutic drug monitoring (TDM) typically requires painful blood drawn from patients. We propose a painless and minimally-invasive alternative for TDM using hollow microneedles suitable to extract extremely small volumes (<1 nL) of interstitial fluid to measure drug concentrations. The inner lumen of a microneedle is functionalized to be used as a micro-reactor during sample collection to trap and bind target drug candidates during extraction, without requirements of sample transfer. An optofluidic device is integrated with this microneedle to rapidly quantify drug analytes with high sensitivity using a straightforward absorbance scheme. Vancomycin is currently detected by using volumes ranging between 50–100 μL with a limit of detection (LoD) of 1.35 μM. The proposed microneedle-optofluidic biosensor can detect vancomycin with a sample volume of 0.6 nL and a LoD of <100 nM, validating this painless point of care system with significant potential to reduce healthcare costs and patients suffering.
机译:治疗药物监测(TDM)通常需要从患者身上抽出痛苦的血液。我们提出了一种使用空心微针的TDM无痛且微创的替代方案,该空心针适合于提取极小体积(<1nL)的组织液以测量药物浓度。将微针的内腔功能化,使其在样品收集过程中用作微反应器,以在提取过程中捕获并结合目标药物候选物,而无需样品转移。光流体装置与该微针集成在一起,可使用简单的吸收方案以高灵敏度快速定量分析药物分析物。目前,万古霉素的使用量在50–100μL之间,检出限(LoD)为1.35μM。拟议中的微针式光生物传感器可以检测万古霉素,样品量为0.6µnL,LoD小于100µnM,从而验证了这种无痛的护理系统具有显着的潜力,可降低医疗成本和患者的痛苦。

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