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生物安全、环保的低聚甘露糖多糖,走向瞬态电子。

Biosafe, Eco-Friendly Levan Polysaccharide toward Transient Electronics.

机构信息

School of Chemical Engineering, Sungkyunkwan University (SKKU), Suwon, 16419, Republic of Korea.

KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul, 02841, Republic of Korea.

出版信息

Small. 2018 Aug;14(32):e1801332. doi: 10.1002/smll.201801332. Epub 2018 Jul 4.

Abstract

New options in the material context of transient electronics are essential to create or expand potential applications and to progress in the face of technological challenges. A soft, transparent, and cost-effective polymer of levan polysaccharide that is capable of complete, programmable dissolution is described when immersed in water and implanted in an animal model. The results include chemical analysis, the kinetics of hydrolysis, and adjustable dissolution rates of levan, and a simple theoretical model of reactive diffusion governed by temperature. In vivo experiments of the levan represent nontoxicity and biocompatibility without any adverse reactions. On-demand, selective control of dissolution behaviors with an animal model demonstrates an effective triggering strategy to program the system's lifetime, providing the possibility of potential applications in envisioned areas such as bioresorbable electronic implants and drug release systems.

摘要

瞬态电子材料背景下的新选择对于创造或扩展潜在应用以及面对技术挑战取得进展至关重要。本文描述了一种柔软、透明且具有成本效益的水凝胶,当浸入水中并植入动物模型时,该水凝胶能够完全、可编程地溶解。研究结果包括化学分析、水解动力学和莱凡的可调溶解速率,以及一个简单的温度控制反应扩散理论模型。莱凡的体内实验表明其具有无毒性和生物相容性,没有任何不良反应。通过动物模型对溶解行为进行按需、选择性控制,展示了一种有效的触发策略,可用于控制该系统的寿命,为生物可吸收电子植入物和药物释放系统等预期领域的潜在应用提供了可能。

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