Oral Magnetoelectric Neuroimmunomodulation via the Gut–Brain–Spleen–Heart Axis for Noninvasive Atrial Fibrillation Therapy

C Cam‐Hoa Mac (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) C Chen‐Hsuan Kuo (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) I I‐Wei Wang (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) Y Yu‐Jung Lin (Research Center for Applied Sciences Academia Sinica Taipei Taiwan) C Cheng‐Yueh Lin (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) H Hong‐Nhung Nguyen (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) N Ninh‐Son Pham (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) S Shih‐Kai Lo (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan) W Wen‐Wei Wu (Department of Materials Science and Engineering National Yang Ming Chiao Tung University Hsinchu Taiwan) H Hua‐Jing Huang (Department of Materials Science and Engineering National Yang Ming Chiao Tung University Hsinchu Taiwan) Y Yen Chang (Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation and School of Medicine) H Hsiao‐Huang Chang (Department of Surgery School of Medicine Taipei Medical University Taipei Taiwan) H Hao‐Ji Wei (Cardiovascular Center Taichung Veterans General Hospital Taichung Taiwan) H Hsing‐Wen Sung (Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan)

Abstract

ABSTRACT Atrial fibrillation (AF), the most common cardiac arrhythmia, is closely associated with autonomic imbalance and inflammation. While low‐level vagus nerve stimulation (LL‐VNS) offers therapeutic benefits, its clinical application is limited by the need for surgical implants. Here, we present a noninvasive, orally delivered magnetoelectric neuroimmunomodulation platform that targets the gut–brain–spleen–heart axis to deliver LL‐VNS for AF therapy. The platform comprises ingestible microparticles (MPs) embedding magnetostrictive Fe 3 O 4 @BaTiO 3 nanogenerators (FO@BTO NGs) within a conductive matrix of poly(3,4‐ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), which facilitates electrical signal transmission, and dopamine–alginate, which promotes gastric adhesion via catechol‐mediated interactions. After oral gavage in a rat AF model, MPs adhere to the stomach lining and, upon alternating magnetic activation, FO@BTO NGs generate pulsed electrical currents that stimulate vagal afferent fibers. This activates brainstem autonomic circuits, enhancing parasympathetic tone and suppressing sympathetic activity. Concurrently, it engages the splenic neuroimmune circuit via the cholinergic anti‐inflammatory pathway, thereby reducing systemic inflammation. This dual neuroimmune modulation significantly shortens AF duration and mitigates cardiac inflammation and electrical remodeling. These findings establish a clinically translatable, implant‐free strategy for delivering LL‐VNS through coordinated neural and immune pathways, offering a safe and accessible alternative to implantable systems for AF management.

Article Details

Volume / Issue Vol. 38, Issue 15
Published March 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (14)

C

Cam‐Hoa Mac

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

C

Chen‐Hsuan Kuo

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

I

I‐Wei Wang

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

Y

Yu‐Jung Lin

Research Center for Applied Sciences Academia Sinica Taipei Taiwan

C

Cheng‐Yueh Lin

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

H

Hong‐Nhung Nguyen

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

N

Ninh‐Son Pham

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

S

Shih‐Kai Lo

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan

W

Wen‐Wei Wu

Department of Materials Science and Engineering National Yang Ming Chiao Tung University Hsinchu Taiwan

H

Hua‐Jing Huang

Department of Materials Science and Engineering National Yang Ming Chiao Tung University Hsinchu Taiwan

Y

Yen Chang

Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation and School of Medicine

H

Hsiao‐Huang Chang

Department of Surgery School of Medicine Taipei Medical University Taipei Taiwan

H

Hao‐Ji Wei

Cardiovascular Center Taichung Veterans General Hospital Taichung Taiwan

H

Hsing‐Wen Sung

Department of Chemical Engineering National Tsing Hua University Hsinchu Taiwan