Quarti Andrea, Nardone Stefania, Colaneri Massimo, Santoro Gaetano, Pozzi Marco
Department of Congenital and Paediatric Cardiac Surgery and Cardiology, Riuniti Hospital, Ancona, Italy.
Interact Cardiovasc Thorac Surg. 2011 Dec;13(6):569-72. doi: 10.1510/icvts.2011.280016. Epub 2011 Oct 6.
Congenital heart diseases are corrected early in life, so the surgical procedure has to maintain the maximum potential for growth. The quest for the ideal material for cardiac tissue repair is still ongoing. Here, we describe our preliminary experience with an extracellular matrix for cardiac and vascular tissue repair. Between August 2009 and April 2011, 26 patients underwent cardiac surgery using the CorMatrix patch for vascular repair (10 pulmonary artery, four ascending aorta, three aortic arch and one right ventricular outflow tract) or for valve reconstruction (five aortic, two tricuspid, one mitral and one pulmonary valve); in four cases, the repair was associated with pericardial closure using the same patch. There were no deaths, and at a mean follow-up of 13.2 months, there was no evidence of patch-related complications either in the vascular position or when used for valve repair. The ideal material for cardiac tissue repair should be haemostatic and resistant to tearing and calcification, and possibly one that will not induce an inflammatory cascade. In the last 25 months, we used an extracellular matrix for cardiac and vascular tissue repair. The patch is advocated to induce the patient's own tissue regeneration. The early results are encouraging, but a longer follow-up is needed to understand the real potential of this material.
先天性心脏病在生命早期就得以矫正,因此手术操作必须最大程度地保留生长潜力。寻找用于心脏组织修复的理想材料的工作仍在进行中。在此,我们描述了我们在使用细胞外基质进行心脏和血管组织修复方面的初步经验。在2009年8月至2011年4月期间,26例患者接受了心脏手术,使用CorMatrix补片进行血管修复(10例肺动脉、4例升主动脉、3例主动脉弓和1例右心室流出道)或瓣膜重建(5例主动脉瓣、2例三尖瓣、1例二尖瓣和1例肺动脉瓣);在4例中,修复手术同时使用相同补片进行心包闭合。无死亡病例,平均随访13.2个月,无论是在血管修复部位还是用于瓣膜修复时,均未发现与补片相关的并发症。用于心脏组织修复的理想材料应具有止血性、抗撕裂性和抗钙化性,并且可能不会引发炎症反应。在过去25个月里,我们使用细胞外基质进行心脏和血管组织修复。该补片被认为可诱导患者自身组织再生。早期结果令人鼓舞,但需要更长时间的随访来了解这种材料的真正潜力。