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使用植入式有机生物电子学的治疗方法。

Therapy using implanted organic bioelectronics.

作者信息

Jonsson Amanda, Song Zhiyang, Nilsson David, Meyerson Björn A, Simon Daniel T, Linderoth Bengt, Berggren Magnus

机构信息

Laboratory of Organic Electronics, Department of Science and Technology, Linköping University, SE-601 74 Norrköping, Sweden.

Department of Clinical Neuroscience, Karolinska Institutet, SE-171 77 Stockholm, Sweden.

出版信息

Sci Adv. 2015 May 8;1(4):e1500039. doi: 10.1126/sciadv.1500039. eCollection 2015 May.

Abstract

Many drugs provide their therapeutic action only at specific sites in the body, but are administered in ways that cause the drug's spread throughout the organism. This can lead to serious side effects. Local delivery from an implanted device may avoid these issues, especially if the delivery rate can be tuned according to the need of the patient. We turned to electronically and ionically conducting polymers to design a device that could be implanted and used for local electrically controlled delivery of therapeutics. The conducting polymers in our device allow electronic pulses to be transduced into biological signals, in the form of ionic and molecular fluxes, which provide a way of interfacing biology with electronics. Devices based on conducting polymers and polyelectrolytes have been demonstrated in controlled substance delivery to neural tissue, biosensing, and neural recording and stimulation. While providing proof of principle of bioelectronic integration, such demonstrations have been performed in vitro or in anesthetized animals. Here, we demonstrate the efficacy of an implantable organic electronic delivery device for the treatment of neuropathic pain in an animal model. Devices were implanted onto the spinal cord of rats, and 2 days after implantation, local delivery of the inhibitory neurotransmitter γ-aminobutyric acid (GABA) was initiated. Highly localized delivery resulted in a significant decrease in pain response with low dosage and no observable side effects. This demonstration of organic bioelectronics-based therapy in awake animals illustrates a viable alternative to existing pain treatments, paving the way for future implantable bioelectronic therapeutics.

摘要

许多药物仅在体内特定部位发挥治疗作用,但给药方式却会导致药物在整个机体中扩散。这可能会引发严重的副作用。通过植入式装置进行局部给药或许可以避免这些问题,特别是当给药速率能够根据患者需求进行调节时。我们借助电子导电和离子导电聚合物来设计一种可植入的装置,用于局部电控给药治疗。我们装置中的导电聚合物能够将电脉冲转化为离子和分子通量形式的生物信号,这提供了一种生物学与电子学连接的方式。基于导电聚合物和聚电解质的装置已在向神经组织的控释给药、生物传感以及神经记录与刺激方面得到了验证。虽然这些验证提供了生物电子整合的原理证明,但都是在体外或麻醉动物身上进行的。在此,我们展示了一种可植入的有机电子给药装置在动物模型中治疗神经性疼痛的疗效。将装置植入大鼠脊髓,植入后2天开始局部递送抑制性神经递质γ-氨基丁酸(GABA)。高度局部化的递送在低剂量下显著降低了疼痛反应,且未观察到明显副作用。这种在清醒动物中基于有机生物电子学的治疗方法的展示,为现有疼痛治疗方法提供了一种可行的替代方案,为未来可植入生物电子治疗学铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1dc/4640645/07be01d06d61/1500039-F1.jpg

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