Effectiveness of a novel, completely biomaterial valved pulmonary arterial conduit: An in vivo study
Autor: | Dinghua Yi, Tao Chen, Yimin Zhao, Bo Yu, Xufeng Wei, Linhe Lu, Shiqiang Yu, Weixun Duan, Kai Ren, Zhenxiao Jin |
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Jazyk: | angličtina |
Rok vydání: | 2020 |
Předmět: |
0301 basic medicine
Cancer Research medicine.medical_specialty sheep hemodynamics 03 medical and health sciences 0302 clinical medicine Immunology and Microbiology (miscellaneous) medicine.artery Internal medicine medicine Ventricular outflow tract Blood coagulation test business.industry Extracorporeal circulation completely biomaterial valved pulmonary arterial conduit General Medicine Articles medicine.disease congenital heart disease Transplantation Stenosis 030104 developmental biology medicine.anatomical_structure Ventricle 030220 oncology & carcinogenesis Pulmonary valve Pulmonary artery Cardiology cardiovascular system business transplantation |
Zdroj: | Experimental and Therapeutic Medicine |
ISSN: | 1792-1015 1792-0981 |
Popis: | As a pre-clinical assessment, the present study aimed to investigate the safety and effectiveness of a novel valved pulmonary arterial conduit constructed entirely from biomaterials by transplanting it in the outflow tract of the right ventricle in sheep. Under extracorporeal circulation, the valved pulmonary arterial conduit was used to replace the pulmonary artery of sheep with a beating heart. The performance was assessed at 30, 90 and 180 days post-surgery. Hemodynamic and structural changes were evaluated, and safety was assessed after 180 postoperative days. The hemodynamic effect and biosafety of the implant were further evaluated by observing the changes in various pressure indicators of the heart, echocardiographic results, anatomical and pathological examination results, liver and kidney functions, routine blood tests, a blood coagulation test, and other test results following implantation of the purely biotic valved conduit. The conduit was successfully implanted in 12 sheep and no mortality occurred postoperatively. During the 180-day follow-up, there was no obvious stenosis or regurgitation of the right ventricular outflow tract and pulmonary valve after valved conduit implantation. The findings of autopsy, pathology and laboratory examinations were unremarkable. The implantation of this biosynthetic vascular graft into animals meets the safety and effectiveness requirements for clinical application. This pulmonary arterial conduit has potential clinical application for children with complex congenital heart disease who require pulmonary artery reconstruction to achieve a radical cure. |
Databáze: | OpenAIRE |
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