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Foreign Body Reaction to a Subcutaneously Implanted Self-Cleaning Thermoresponsive Hydrogel Membrane for Glucose Biosensors

机译:对葡萄糖生物传感器皮下植入自清洁热响应水凝胶膜的异物反应。

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摘要

Towards achieveing a subcutaneously implanted glucose biosensor with long-term functionality, a thermoresponsive membrane previously shown to have potential to house a glucose sensing assay was evaluated herein for its ability to minimize the foriegn body reaction (FBR) and the resulting fibrous capsule. The severity of the FBR proportionally reduces diffusion of glucose to the sensor and hence sensor lifetime. However, efforts to reduce the FBR have largedly focused on anti-fouling materials that passively inhibit cellular attachment, particularly poly(ethylene glycol) (PEG). Herein, the extent of the FBR of a subcutaneously implanted “self-cleaning” cylindrical membrane was analyzed in rodents. This membrane represents an “actively anti-fouling” approach to reduce cellular adhesion. It is a thermoresponsive double network nanocomposite hydrogel (DNNC) comprised of poly(N-isopropylacrylamide) (PNIPAAm) and embedded polysiloxane nanoparticles. The membrane’s cyclical deswelling/reswelling response to local body temperature fluctuations was anticipated to limit cellular accumulation. Indeed, after 30 days, the self-cleaning membrane exhibited a notably thin fibrous capsule (~30 µm) and increased microvascular density within 1 mm of the implant surface in comparison to a non-thermoresponsive, benchmark biocompatible control (PEG diacrylate, PEG-DA)
机译:为了实现具有长期功能的皮下植入的葡萄糖生物传感器,本文评估了先前显示的具有容纳葡萄糖传感测定的潜力的热响应膜的最小化前体反应(FBR)和所得纤维囊的能力。 FBR的严重程度成比例地降低了葡萄糖向传感器的扩散,从而降低了传感器的使用寿命。然而,减少FBR的努力主要集中于被动抑制细胞附着的防污材料,特别是聚乙二醇(PEG)。本文中,在啮齿动物中分析了皮下植入的“自清洁”圆柱膜的FBR程度。该膜代表减少细胞粘附的“主动防污”方法。它是一种热响应性双网络纳米复合水凝胶(DNNC),由聚(N-异丙基丙烯酰胺)(PNIPAAm)和嵌入的聚硅氧烷纳米颗粒组成。预期该膜对局部体温波动的周期性溶胀/溶胀反应会限制细胞的积累。的确,与无热反应的基准生物相容性对照物(PEG二丙烯酸酯,PEG- DA)

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