Department of Cardiovascular Surgery, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Circulation. 2010 Sep 14;122(11 Suppl):S100-6. doi: 10.1161/CIRCULATIONAHA.109.922211.
We developed autologous prosthetic implants by simple and safe in-body tissue architecture technology. We present the first report on the development of autologous valved conduit with the sinus of Valsalva (BIOVALVE) by using this unique technology and its subsequent implantation in the pulmonary valves in a beagle model.
A mold of BIOVALVE organization was assembled using 2 types of specially designed silicone rods with a small aperture in a trileaflet shape between them. The concave rods had 3 projections that resembled the protrusions of the sinus of Valsalva. The molds were placed in the dorsal subcutaneous spaces of beagle dogs for 4 weeks. The molds were covered with autologous connective tissues. BIOVALVEs with 3 leaflets in the inner side of the conduit with the sinus of Valsalva were obtained after removing the molds. These valves had adequate burst strength, similar to that of native valves. Tight valvular coaptation and sufficient open orifice area were observed in vitro. These BIOVALVEs were implanted to the main pulmonary arteries as allogenic conduit valves (n=3). Postoperative echocardiography demonstrated smooth movement of the leaflets with trivial regurgitation. Histological examination of specimens obtained at 84 days showed that the surface of the leaflet was covered by endothelial cells and neointima, including an elastin fiber network, and was formed at the anastomosis sides on the luminal surface of the conduit.
We developed the first completely autologous BIOVALVE and successfully implanted these BIOVALVEs in a beagle model in a pilot study.
我们开发了自体假体植入物,采用简单且安全的体内组织架构技术。我们首次报道了使用这种独特技术开发自体带窦房结(BIOVALVE)的有瓣管道的情况,并将其随后植入比格犬模型的肺动脉瓣中。
使用 2 种具有小孔的特制硅酮棒,在它们之间形成三叶形的窦房结,组装 BIOVALVE 组织的模具。凹面棒有 3 个突起,类似于窦房结的突起。模具被放置在比格犬的背部皮下空间中 4 周。模具被自体结缔组织覆盖。移除模具后,可获得具有窦房结的管道内侧三叶的 BIOVALVE。这些瓣膜具有足够的爆破强度,类似于天然瓣膜。在体外观察到紧密的瓣叶对合和足够的开放瓣口面积。这些 BIOVALVE 被作为同种异体管道瓣膜植入到主肺动脉(n=3)。术后超声心动图显示瓣叶运动平稳,仅有轻微反流。84 天时获得的标本组织学检查显示,瓣叶表面被内皮细胞和新生内膜覆盖,包括弹性纤维网络,并在管道腔面的吻合侧形成。
我们开发了第一个完全自体的 BIOVALVE,并在一项初步研究中成功将这些 BIOVALVE 植入比格犬模型中。