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Temperature/near-infrared light-responsive conductive hydrogels for controlled drug release and real-time monitoring

机译:温度/近红外light-responsive导电水凝胶在药物控制释放和实时监控

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Stimuli-responsive hydrogels with adaptable physical properties show great potential in the biomedical field. In particular, the collection of electrical signals is essential for precision medicine. Here, a simple strategy is demonstrated for achieving controlled drug release and real-time monitoring using an interpenetrating binary network consisting of a graphene aerogel and a poly(N-isopropylacrylamide) hydrogel with incorporated polydopamine nanoparticles (PDA-NPs). Owing to the good physical properties of graphene and the embedded PDA-NPs, the hybrid hydrogel shows enhanced mechanical properties and good electrical conductivity. In addition, the hybrid hydrogel also shows dual thermo- and near-infrared light responsiveness, as revealed by the controlled release of a model drug. In addition, as the hydrogel exhibits detectable changes in resistance during drug release, the drug-release behavior of the hydrogel can be monitored in real time using electrical signals. Moreover, owing to the abundance of catechol groups on the PDA-NPs, the hybrid hydrogel shows good tissue adhesiveness, as demonstrated usingin vivoexperiments. Thus, the developed hybrid hydrogel exhibits considerable practical applicability for drug delivery and precision medicine.
机译:Stimuli-responsive水凝胶与适应性强物理性质的方面显示了很大的潜力生物医学领域。的电信号对精度至关重要医学。实现药物控制释放和使用一个穿插的实时监控二进制组成的石墨烯气凝胶网络保利(N-isopropylacrylamide)水凝胶合并polydopamine纳米颗粒(PDA-NPs)。石墨烯和嵌入式PDA-NPs混合水凝胶显示增强的机械性能和良好的导电性。混合水凝胶还显示双重热,近红外光响应,如显示药物的控制释放模型。此外,水凝胶展品可检测电阻的变化在药物释放,水凝胶的药物释放行为使用电子信号实时监控。此外,由于大量的儿茶酚组PDA-NPs,混合水凝胶显示好的组织粘性,usingin示威vivoexperiments。水凝胶具有相当大的实用药物输送和精确的适用性医学。

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