Intraoperative phrenic nerve stimulation to prevent diaphragm fiber weakness during thoracic surgery

G Guilherme Bresciani T Thomas Beaver A A. Daniel Martin R Robbert van der Pijl R Robert Mankowski C Christiaan Leeuwenburgh C Coen A. C. Ottenheijm T Tomas Martin G George Arnaoutakis S Shakeel Ahmed V Vinicius M. Mariani W Wei Xue (Key Laboratory of Biomaterials of Guangdong Higher Education Institutes, Engineering Technology Research Center of Drug Carrier of Guangdong, Department of Biomedical Engineering) B Barbara K. Smith L Leonardo F. Ferreira

Abstract

Thoracic surgery rapidly induces weakness in human diaphragm fibers. The dysfunction is thought to arise from combined effects of the surgical procedures and inactivity. This project tested whether brief bouts of intraoperative hemidiaphragm stimulation would mitigate slow and fast fiber loss of force in the human diaphragm. We reasoned that maintenance of diaphragm activity with brief bouts of intraoperative phrenic stimulation would mitigate diaphragm fiber weakness and myofilament protein derangements caused by thoracic surgery. Nineteen adults (9 females, age 59 ± 12 years) with normal inspiratory strength or spirometry consented to participate. Unilateral phrenic twitch stimulation (twitch duration 1.5 ms, frequency 0.5 Hz, current 2x the motor threshold, max 25 mA) was applied for one minute, every 30 minutes during cardiothoracic surgery. Thirty minutes following the last stimulation bout, biopsies were obtained from the hemidiaphragms for single fiber force mechanics and quantitation of myofilament proteins (abundance and phosphorylation) and compared by a linear mixed model and paired t-test, respectively. Subjects underwent 6 ±  2 hemidiaphragm stimulations at 17 ±  6 mA, during 278 ±  68 minutes of surgery. Longer-duration surgeries were associated with a progressive decline in diaphragm fiber force (p < 0.001). In slow-twitch fibers, phrenic stimulation increased absolute force (+25%, p <  0.0001), cross-sectional area (+16%, p < 0.0001) and specific force (+7%, p < 0.0005). Stimulation did not alter contractile function of fast-twitch fibers, calcium-sensitivity in either fiber type, and abundance and phosphorylation of myofilament proteins. In adults without preoperative weakness or lung dysfunction, unilateral phrenic stimulation mitigated diaphragm slow fiber weakness caused by thoracic surgery, but had no effect on myofilament protein abundance or phosphorylation.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 4
Published April 01, 2025
Pages e0320936
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (14)

G

Guilherme Bresciani

T

Thomas Beaver

A

A. Daniel Martin

R

Robbert van der Pijl

R

Robert Mankowski

C

Christiaan Leeuwenburgh

C

Coen A. C. Ottenheijm

T

Tomas Martin

G

George Arnaoutakis

S

Shakeel Ahmed

V

Vinicius M. Mariani

W

Wei Xue

Key Laboratory of Biomaterials of Guangdong Higher Education Institutes, Engineering Technology Research Center of Drug Carrier of Guangdong, Department of Biomedical Engineering

B

Barbara K. Smith

L

Leonardo F. Ferreira