Facultad de Ciencias y Tecnologías Químicas, Universidad de Castilla-La Mancha, Calle Camilo José Cela s/n, 13071, Ciudad Real, Spain.
Instituto Regional de Investigación Científica Aplicada (IRICA), Universidad de Castilla-La Mancha, Calle Camilo José Cela s/n, 13071, Ciudad Real, Spain.
Chemistry. 2020 Dec 18;26(71):17069-17080. doi: 10.1002/chem.202001429. Epub 2020 Nov 30.
Electromagnetically driven drug delivery systems stand out among stimulus-responsive materials due to their ability to release cargo on demand by remote stimulation, such as light, near infrared (NIR) or microwave (MW) radiation. MW-responsive soft materials, such as hydrogels, generally operate at 2.45 GHz frequencies, which usually involves rapid overheating of the scaffold and may affect tissue surrounding the target location. In contrast, 915 MHz MW penetrate deeper tissues and are less prone to induce rapid overheating. In order to circumvent these limitations, we present here for the first time a graphene-based hydrogel that is responsive to MW irradiation of ν=915 MHz. This system is a candidate soft scaffold to deliver a model hydrophobic drug. The graphene present in the hydrogel acts as a heat-sink and avoids overheating of the scaffold upon MW irradiation. In addition, the microwave trigger stimulates the in vitro delivery of the model drug, thus suggesting a remote and deep-penetrating means to deliver a drug from a delivery reservoir. Moreover, the MW-triggered release of drug was observed to be enhanced under acidic conditions, where the swelling state is maximum due to the swelling-induced pH-responsiveness of the hydrogel. The hybrid composite described here is a harmless means to deliver remotely a hydrophobic drug on demand with a MW source of 915 MHz. Potential use in biomedical applications were evaluated by cytotoxicity tests.
电磁驱动药物输送系统因其能够通过远程刺激(如光、近红外(NIR)或微波(MW)辐射)按需释放货物而在响应性材料中脱颖而出。MW 响应软材料,如水凝胶,通常在 2.45GHz 频率下工作,这通常涉及支架的快速过热,并且可能会影响目标位置周围的组织。相比之下,915MHz 的 MW 可以穿透更深的组织,并且不太容易引起快速过热。为了规避这些限制,我们首次提出了一种对 MW 辐射ν=915MHz 有响应的基于石墨烯的水凝胶。该系统是一种用于输送模型疏水性药物的候选软支架。水凝胶中存在的石墨烯充当散热器,从而避免了 MW 照射时支架的过热。此外,微波触发刺激了模型药物的体外释放,从而表明可以从药物输送储库中远程和深穿透方式输送药物。此外,在酸性条件下观察到 MW 触发的药物释放增强,这是由于水凝胶的溶胀诱导的 pH 响应性导致溶胀状态达到最大值。这里描述的混合复合材料是一种使用 915MHz 的 MW 源按需远程输送疏水性药物的无害方法。通过细胞毒性试验评估了其在生物医学应用中的潜在用途。