Collaborative Innovation Center of Advanced Microstructures, National Laboratory of Solid State Microstructure, Department of Physics, Nanjing University, Nanjing, 210093, P. R. China.
Jinan Microecological Biomedicine Shandong Laboratory, Jinan, 250021, P. R. China.
Adv Sci (Weinh). 2023 Apr;10(11):e2207269. doi: 10.1002/advs.202207269. Epub 2023 Feb 12.
Biodegradable piezoelectric force sensors can be used as implantable medical devices for monitoring physiological pressures of impaired organs or providing essential stimuli for drug delivery and tissue regeneration without the need of additional invasive removal surgery or battery power. However, traditional piezoelectric materials, such as inorganic ceramics and organic polymers, show unsatisfactory degradability, and cytotoxicity. Amino acid crystals are biocompatible and exhibit outstanding piezoelectric properties, but their small crystal size makes it difficult to align the crystals for practical applications. Here, a mechanical-annealing strategy is reported for engineering all-organic biodegradable piezoelectric force sensors using natural amino acid crystals as piezoelectric materials. It is shown that the piezoelectric constant of the mechanical-annealed crystals can reach 12 times that of the single crystal powders. Moreover, mechanical annealing results in flat and smooth surfaces, thus improving the contact of the crystal films with the electrodes and leading to high output voltages of the devices. The packaged force sensors can be used to monitor dynamic motions, including muscle contraction and lung respiration, in vivo for 4 weeks and then gradually degrade without causing obvious inflammation or systemic toxicity. This work provides a way to engineer all-organic and biodegradable force sensors for potential clinical applications.
可生物降解的压电压力传感器可用作植入式医疗设备,用于监测受损器官的生理压力,或提供基本的药物输送和组织再生刺激,而无需进行额外的侵入性移除手术或电池供电。然而,传统的压电材料,如无机陶瓷和有机聚合物,表现出不理想的可降解性和细胞毒性。氨基酸晶体具有生物相容性和出色的压电性能,但由于其小晶体尺寸,难以将晶体排列以用于实际应用。在这里,报告了一种机械退火策略,用于使用天然氨基酸晶体作为压电材料来工程化全有机可生物降解的压电压力传感器。结果表明,机械退火晶体的压电常数可达到单晶粉末的 12 倍。此外,机械退火导致表面变得平整光滑,从而改善了晶体薄膜与电极的接触,使器件产生高输出电压。封装的压力传感器可用于监测体内的动态运动,包括肌肉收缩和肺部呼吸,持续 4 周,然后逐渐降解,而不会引起明显的炎症或全身毒性。这项工作为潜在的临床应用提供了一种工程化全有机和可生物降解的压力传感器的方法。