Rehabilitation exercise–driven symbiotic electrical stimulation system accelerating bone regeneration

IF 11.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Tianlong Wang, Han Ouyang, Yiping Luo, Jiangtao Xue, Engui Wang, Lei Zhang, Zifei Zhou, Zhiqing Liu, Xifan Li, Shuo Tan, Yixing Chen, Liping Nan, Wentao Cao, Zhou Li, Feng Chen, Longpo Zheng
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Abstract

Electrical stimulation can effectively accelerate bone healing. However, the substantial size and weight of electrical stimulation devices result in reduced patient benefits and compliance. It remains a challenge to establish a flexible and lightweight implantable microelectronic stimulator for bone regeneration. Here, we use self-powered technology to develop an electric pulse stimulator without circuits and batteries, which removes the problems of weight, volume, and necessary rigid packaging. The fully implantable bone defect electrical stimulation (BD-ES) system combines a hybrid tribo/piezoelectric nanogenerator to provide biphasic electric pulses in response to rehabilitation exercise with a conductive bioactive hydrogel. BD-ES can enhance multiple osteogenesis-related biological processes, including calcium ion import and osteogenic differentiation. In a rat model of critical-sized femoral defects, the bone defect was reversed by electrical stimulation therapy with BD-ES and subsequent bone mineralization, and the femur completely healed within 6 weeks. This work is expected to advance the development of symbiotic electrical stimulation therapy devices without batteries and circuits.

Abstract Image

康复运动驱动的共生电刺激系统加速骨再生。
电刺激可以有效加速骨愈合。然而,电刺激装置体积大、重量重,导致患者的获益和依从性降低。建立一种灵活轻便的植入式骨再生微电子刺激器仍是一项挑战。在这里,我们利用自供电技术开发了一种无电路和电池的电脉冲刺激器,从而解决了重量、体积和必要的硬包装等问题。这种完全可植入的骨缺损电刺激(BD-ES)系统结合了一种混合型三波/压电纳米发电机,可根据康复锻炼的需要提供双相电脉冲,并带有导电性生物活性水凝胶。BD-ES 可增强多种与成骨相关的生物过程,包括钙离子输入和成骨分化。在大鼠临界大小股骨缺损模型中,使用 BD-ES 进行电刺激治疗后,骨缺损被逆转,随后骨矿化,股骨在 6 周内完全愈合。这项研究有望推动无电池和电路的共生电刺激治疗设备的发展。
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来源期刊
Science Advances
Science Advances 综合性期刊-综合性期刊
CiteScore
21.40
自引率
1.50%
发文量
1937
审稿时长
29 weeks
期刊介绍: Science Advances, an open-access journal by AAAS, publishes impactful research in diverse scientific areas. It aims for fair, fast, and expert peer review, providing freely accessible research to readers. Led by distinguished scientists, the journal supports AAAS's mission by extending Science magazine's capacity to identify and promote significant advances. Evolving digital publishing technologies play a crucial role in advancing AAAS's global mission for science communication and benefitting humankind.
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