Kim Saehyun, Eig Ethan, Yue Jiping, Yang Albert, Comerci Colin J, Laune Megan, Yang Chuanwang, Kamath Ananth, Shi Jiuyun, Li Pengju, Cheng Zhe, Sun Changxu, Guo Tiantian, Tian Vanessa, Süel Gürol M, Tian Bozhi
Department of Chemistry, University of Chicago, Chicago, IL 60637, USA.
Molecular Biology Section, Division of Biological Sciences, University of California San Diego, La Jolla, CA 92093, USA.
Device. 2024 Nov 15;2(11). doi: 10.1016/j.device.2024.100596. Epub 2024 Oct 24.
The natural excitability in mammalian tissues has been extensively exploited for drug-free electroceutical therapies. However, it is unclear whether bacterial residents on the human body are equally excitable and if their excitability can also be leveraged for drug-free bioelectronic treatment. Using a microelectronic platform, we examined the electrical excitability of , a skin-residing bacterium responsible for widespread clinical infections. We discovered that a non-lethal electrical stimulus could excite , inducing reversible changes in membrane potential. Intriguingly, became excitable only under acidic skin pH, indicating that the bacteria were 'selective' about the environment in which they display excitability. This selective excitability enabled programmable suppression of biofilm formation using benign stimulation voltages. Lastly, we demonstrated suppression of on a porcine skin model using a flexible electroceutical patch. Our work shows that the innate excitability of resident bacteria can be selectively activated for drug-free bioelectronic control.
哺乳动物组织的天然兴奋性已被广泛用于无药电疗。然而,尚不清楚人体上的常驻细菌是否同样具有兴奋性,以及它们的兴奋性是否也可用于无药生物电子治疗。我们使用一个微电子平台,研究了一种导致广泛临床感染的皮肤常驻细菌——的电兴奋性。我们发现,非致命电刺激可使兴奋,诱导膜电位发生可逆变化。有趣的是,仅在皮肤酸性pH值条件下才变得具有兴奋性,这表明细菌对其表现出兴奋性的环境具有“选择性”。这种选择性兴奋性使得能够使用良性刺激电压对生物膜形成进行可编程抑制。最后,我们使用柔性电疗贴片在猪皮肤模型上证明了对的抑制作用。我们的工作表明,常驻细菌的固有兴奋性可被选择性激活,用于无药生物电子控制。