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◆ Frontiers in Medicine2026-08-12· Motility

Arresting spirochetes: nonthermal extremely low-frequency electromagnetic field exposure suppresses Borrelia burgdorferi motility in vitro

Erik A. Nilsen, Heather Adkison, John R. Martinez, Nevena Zubcevik, Monica E. Embers

原始摘要(英文原文)· Original abstract
We evaluated the effect of nonthermal extremely low-frequency electromagnetic field (ELF-EMF) exposure on the motility of Borrelia burgdorferi , the causative agent of Lyme disease, using the Electrome BB™ Protocol, a non-contact, non-ionizing system operating within regulatory safety thresholds. Cultures were exposed and assessed by dark-field microscopy for motility. ELF-EMF exposure was substantially more effective, immobilizing up to 96.8% of spirochetes under the longer-duration treatment condition, compared with 13.1% by doxycycline at 0.5 μg/mL in the same assay, a greater than sevenfold separation from this single clinically relevant antibiotic reference condition achieved entirely through a non-pharmacological, biophysical mechanism. Exact one-sided binomial tests against an established baseline motility fraction of 0.85 returned p < 10 −120 for both conditions, with every individual longer-duration replicate independently significant at p < 4.4 × 10 −12 after Bonferroni correction; longer exposure produced deeper suppression than shorter exposure at the organism level (exact two-sided Fisher test, p = 0.026), consistent with a duration-dependent nonthermal mechanism rather than an acute thermal or stress response. Loss of flagellar motility is functionally equivalent to organismal inactivation in tissue: non-motile B. burgdorferi cannot disseminate, evade immune surveillance, or sustain infection. Because the ELF-EMF mechanism arrests motility without inducing cell lysis, it is also expected to enable host-mediated clearance of intact, motility-arrested spirochetes without triggering the Jarisch–Herxheimer reaction associated with rapid bacterial killing. A controlled murine infection model is the next test in vivo .
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Arresting spirochetes: nonthermal extremely low-frequency electromagnetic field exposure suppresses Borrelia burgdorferi motility in vitro — 科研速览 Science Skim