Abstract 4366018: Lung Injury Following Stent Implantation in Adult Patients with Pulmonary Artery Stenosis

W Wenjie Dong (Center for Carbon-Based Electronics and Key Laboratory for the Physics and Chemistry of Nanodevices, School of Electronics) Y YUNSHAN CAO (Heart, Lung and Vessels Center, Sic, Chengdu, China) H Hongling Su (Pulmonary Vascular Disease Center, Lanzhou, China) K Kaiyu Jiang (Pulmonary Vascular Disease Center, Lanzhou, China) A Aqian Wang (Pulmonary Vascular Disease Center, Lanzhou, China) B Bo Li H Hai Zhu F Fu Zhang X Xuechun Sun (School of Engineering) D Dili Xie (Heart, Lung and Vessels Center, Sic, Chengdu, China) Y Yunhe Zhang T Ting Liang (Department of Electronic Engineering and Materials Science and Technology Research Center)

Abstract

Backgrounds: Pulmonary artery stenosis in adults presents a therapeutic challenge Although percutaneous transluminal pulmonary angioplasty has emerged as an effective treatment, lung injury remains a significant complication with poorly understood predictive factors. Methods: We analyzed 90 initial stenting procedures in 90 adult PAS patients, comparing clinical and procedural characteristics between those who developed lung injury and those who did not. Variable selection incorporated near-zero variance assessment and collinearity screening. A random forest model was developed to predict post-stenting lung injury and underwent prospective external validation in 71 subsequent stent implantation procedures. Results: In this total cohort of 152 patients undergoing 161 stenting procedures, lung injury occurred in 48 procedures (29.8%), of which 11 procedures (6.8%) required non-invasive positive pressure ventilation, and 2 procedures (1.2%) progressed to severe respiratory failure requiring mechanical ventilation, including one death (0.6%). The final model incorporated 10 key variables, with the change in systolic pressure gradient (ΔSPG) identified as the most important predictor. ΔSPG effectively predicted lung injury risk in both development and validation cohorts (AUC: 0.785 and 0.788, respectively). In the validation cohort, ΔSPG >34 mmHg predicted lung injury with specificity of 88.68% and sensitivity of 61.11%. Conclusions: ΔSPG represents a key predictor of post-stenting lung injury in adult PAS patients. Maintaining ΔSPG below 34 mmHg during the procedure may reduce lung injury risk.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (12)

W

Wenjie Dong

Center for Carbon-Based Electronics and Key Laboratory for the Physics and Chemistry of Nanodevices, School of Electronics

Y

YUNSHAN CAO

Heart, Lung and Vessels Center, Sic, Chengdu, China

H

Hongling Su

Pulmonary Vascular Disease Center, Lanzhou, China

K

Kaiyu Jiang

Pulmonary Vascular Disease Center, Lanzhou, China

A

Aqian Wang

Pulmonary Vascular Disease Center, Lanzhou, China

B

Bo Li

H

Hai Zhu

F

Fu Zhang

X

Xuechun Sun

School of Engineering

D

Dili Xie

Heart, Lung and Vessels Center, Sic, Chengdu, China

Y

Yunhe Zhang

T

Ting Liang

Department of Electronic Engineering and Materials Science and Technology Research Center