Soft, bioresorbable, transparent microelectrode arrays for multimodal spatiotemporal mapping and modulation of cardiac physiology.


Journal

Science advances
ISSN: 2375-2548
Titre abrégé: Sci Adv
Pays: United States
ID NLM: 101653440

Informations de publication

Date de publication:
07 07 2023
Historique:
medline: 7 7 2023
pubmed: 5 7 2023
entrez: 5 7 2023
Statut: ppublish

Résumé

Transparent microelectrode arrays (MEAs) that allow multimodal investigation of the spatiotemporal cardiac characteristics are important in studying and treating heart disease. Existing implantable devices, however, are designed to support chronic operational lifetimes and require surgical extraction when they malfunction or are no longer needed. Meanwhile, bioresorbable systems that can self-eliminate after performing temporary functions are increasingly attractive because they avoid the costs/risks of surgical extraction. We report the design, fabrication, characterization, and validation of a soft, fully bioresorbable, and transparent MEA platform for bidirectional cardiac interfacing over a clinically relevant period. The MEA provides multiparametric electrical/optical mapping of cardiac dynamics and on-demand site-specific pacing to investigate and treat cardiac dysfunctions in rat and human heart models. The bioresorption dynamics and biocompatibility are investigated. The device designs serve as the basis for bioresorbable cardiac technologies for potential postsurgical monitoring and treating temporary patient pathological conditions in certain clinical scenarios, such as myocardial infarction, ischemia, and transcatheter aortic valve replacement.

Identifiants

pubmed: 37406128
doi: 10.1126/sciadv.adi0757
pmc: PMC10321742
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

eadi0757

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Auteurs

Zhiyuan Chen (Z)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Zexu Lin (Z)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Sofian N Obaid (SN)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Eric Rytkin (E)

Department of Biomedical Engineering, Northwestern University, Evanston, IL 60208, USA.

Sharon A George (SA)

Department of Biomedical Engineering, Northwestern University, Evanston, IL 60208, USA.

Christopher Bach (C)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Micah Madrid (M)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Miya Liu (M)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Jessica LaPiano (J)

MedStar Georgetown University Hospital, Washington, DC 20037, USA.

Amy Fehr (A)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Xinyu Shi (X)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Nathaniel Quirion (N)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Benjamin Russo (B)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Helen Knight (H)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Anthony Aduwari (A)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

Igor R Efimov (IR)

Department of Biomedical Engineering, Northwestern University, Evanston, IL 60208, USA.
Department of Medicine (Cardiology), Northwestern University, Chicago, IL 60611, USA.

Luyao Lu (L)

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA.

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Classifications MeSH