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1.
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery ; (12): 415-420, 2020.
Article in Chinese | WPRIM | ID: wpr-821151

ABSTRACT

@#Objective    To analyze the outcomes of surgical repair for mixed total anomalous pulmonary venous connection (TAPVC). Methods    Between 2006 and 2018, a total of 51 patients with mixed TAPVC underwent surgery in our hospital. Patients with such associated anomalies as single ventricle and tetralogy of Fallot were excluded. There were 35 males and 16 females with a median age of 102.0 (59.0, 181.0) days and a median weight of 5.0 (4.1, 6.4) kg. Patients were divided into three categories based on the anatomy: "3+1" pattern (n=38, three pulmonary veins drained at one site, and the other drained at the opposite site); "2+2" pattern (n=9, the pulmonary veins from each lung joined to form a confluence and drained at separate sites); bizarre pattern (n=4, the anatomy could not be classified into the above two patterns). Results    There was no in-hospital death. The median follow-up was 41.0 (18.0, 86.5) months. Postoperative pulmonary venous obstruction occurred in 10 patients. Kaplan-Meier survival curves showed no statistically significant difference in postoperative pulmonary venous obstruction among the three groups (P=0.239). Cox risk regression showed that preoperative pulmonary venous obstruction was significantly associated with postoperative pulmonary venous obstruction (P=0.024). Conclusion    Mixed TAPVC has various anatomic morphologies and requires individualized surgery.

2.
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery ; (12): 1008-1013, 2019.
Article in Chinese | WPRIM | ID: wpr-751028

ABSTRACT

@#Objective    Pulmonary vein banding was used to establish a piglet model of pulmonary vein stenosis. We investigated the pathomorphological alterations of pulmonary veins in the model and compared it with the vascular tissue of recurrent stenosis after total anomalous pulmonary venous connection (TAPVC). Methods    Ten pigs of 6 weeks old were selected and randomly divided into 2 groups: 5 in a sham operation group and 5 in a pulmonary vein banding group. The operation had two stages, in which thoracotomies through intercostal space were done respectively on both sides. Biocompatible materials were applied around the pulmonary veins in the experimental group. The same method was used in the sham group. But the pulmonary veins were not banded. Six weeks after the operation, the pulmonary veins of the animals were harvested for hematoxylin-eosin staining and immunofluorescence staining to observe the pathological alterations of pulmonary veins. The proliferative tissues of patients with recurrent stenosis after TAPVC repair were collected and observed by hematoxylin-eosin staining and immunofluorescence staining. Results    Both the sham operation group and the pulmonary vein banding group survived. But the pulmonary vein banding group had obvious clinical manifestations of pulmonary venous stenosis. Compared with the sham group, the pulmonary vein banding group showed intimal hyperplasia, decreased expression of endothelial marker and increased expression of mesenchymal markers, and co-expression of endothelial and mesenchymal markers in intimal cells. Human pathology also showed intimal hyperplasia and co-expression of endothelial and mesenchymal markers in intimal cells. Conclusion    The surgical pulmonary vein stenosis in piglets shows intimal hyperplasia and myofibroblasts, which was consistent with clinical pathology.

3.
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery ; (12): 895-898, 2019.
Article in Chinese | WPRIM | ID: wpr-750991

ABSTRACT

@#Objective    To investigate the effects of a self-powered conduit in different patients’ models who underwent extracardiac Fontan procedure. Methods    Four children who underwent extracardiac Fontan procedure in Shanghai Children's Medical Center from 2011 to 2017 year were selected. Venae cavae and pulmonary arteries were reconstructed using Mimics 19.0®. In silico, a venturi conduit was introduced to the anastomosis of venae cavae and pulmonary artery. Then computational fluid dynamics simulation was performed using patients’ clinical data. Results    When inferior venae cavae were directly to or to the left of superior venae cavae, the venturi conduit could assist the return of venous blood and reduce the pressures of venae cavae about 0.5 mm Hg. And the pressure differences between venae cavae and pulmonary arteries were about –0.7 mm Hg, which suggested that the conduit could generate right ventricle-like effect. Conclusion    The venturi conduit can reduce the pressure of venae cavae, increase pulmonary circulation flow and improve Fontan hemodynamics.

4.
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery ; (12): 983-987, 2017.
Article in Chinese | WPRIM | ID: wpr-749852

ABSTRACT

@#With the discovery of cardiac stem cell, the conception of the heart considered to be a terminally differentiated organ was changed. Cardiac stem cells possess the common characteristics of self-renew, clone formation and differentiating into cardiomyocyte, smooth muscle cell, and endothelial cell. Because of the properties of tissue specificity and lineage commitment, cardiac stem cells are considered to have great advantages over other stem cells in the treatment of cardiovascular disease. However, the low rate of engraftment still remains a problem to be solved. In recent years, people attempted to combine stem cell therapy with other ways, such as tissue engineering, gene therapy, exosome therapy, to cure cardiovascular diseases, aiming at finding better ways to treat the cardiovascular disease. This article is mainly for the reviewing of the mechanisms underlying the stem cell therapy and the combinatory use of new technology emerged these years.

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