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首页> 外文期刊>Cardiovascular engineering and technology >Enhanced Autologous Re-endothelialization of Decellularized and Extracellular Matrix Conditioned Allografts Implanted Into the Right Ventricular Outflow Tracts of Juvenile Sheep
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Enhanced Autologous Re-endothelialization of Decellularized and Extracellular Matrix Conditioned Allografts Implanted Into the Right Ventricular Outflow Tracts of Juvenile Sheep

机译:脱细胞和细胞外基质条件同种异体移植到少年绵羊右心室流出道中的增强的自体内皮再生。

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摘要

Decellularized allografts are promising options for pediatric valve replacement due to reduced immunogenicity and the potential for in vivo autologous recellularization, extracellular matrix (ECM) remodeling and re-endothelialization, which may be enhanced with post-decellularization processing steps. This study investigated the performance and morphology of decellularized and ECM conditioned pulmonary valves implanted in the right ventricular outflow tracts (RVOT) of juvenile sheep. RVOT reconstructions in juvenile sheep using cryopreserved pulmonary allografts (Cryo; n = 2), porcine aortic root bioprostheses (Biopros; n = 2) or decellularized/ECM conditioned pulmonary allografts (Conditioned; n = 4) were performed. Valve performance and morphology were evaluated at 20 weeks after implant. Uniaxial tensile testing was performed on a subset of unimplanted valves from each group. At explant, Biopros had significantly higher peak/mean gradients vs. Conditioned and Cryo, which were similar. No cusp calcification occurred in any valve; arterial wall calcification was present only in Cryo (mild/moderate) and Biopros (severe). No autologous recellularization or inflammation occurred in Biopros; cellularity was decreased in Cryo. Autologous recellularization was present in Conditioned arterial walls and variably extending into the cusps, with consistent cusp re-endothelialization. Conditioned valves had reduced cusp extensibility, increased stiffness and similar tensile strength vs. Cryo. Although Conditioned valves were slightly stiffer and less extensible than Cryo valves, their hemodynamic performance was comparable, indicating they behave as functional heart valves immediately following implant. Because both autologous recellularization and re-endothelialization were seen, ECM conditioning shows promise for encouraging renewal of the cellularity of decellularized allograft valves without the need for pre-implant endothelial cell seeding.
机译:脱细胞的同种异体移植物由于降低的免疫原性和体内自体再细胞化,细胞外基质(ECM)重塑和再内皮化的潜力而成为小儿瓣膜置换的有前途的选择,可通过去细胞化后的处理步骤来增强。这项研究调查的功能和形态的脱细胞和ECM条件化的肺动脉瓣植入少年羊右心室流出道(RVOT)。使用冷冻保存的肺同种异体移植物(Cryo; n = 2),猪主动脉根部生物假体(Biopros; n = 2)或脱细胞/ ECM条件化的肺异种移植物(条件; n = 4)对幼年绵羊进行RVOT重建。植入后20周评估瓣膜性能和形态。对每组未植入瓣膜的子集进行单轴拉伸测试。在外植体上,Biopros的峰/均值梯度明显高于条件和低温的梯度/均值梯度。任何瓣膜均未出现尖锐的钙化;仅在低温(轻度/中度)和Biopros(严重)中存在动脉壁钙化。 Biopros中未发生自体细胞重组或发炎;低温下细胞数量减少。自体再细胞化存在于条件性动脉壁中,并且可变地延伸至尖瓣,并具有一致的尖瓣再内皮化。与低温相比,调节后的瓣膜的尖角延伸性降低,刚度提高,并且拉伸强度相似。尽管条件瓣膜比冷冻瓣膜稍硬一些,并且可扩展性较差,但它们的血液动力学性能相当,表明它们在植入后立即起功能性心脏瓣膜的作用。因为自体再细胞化和再内皮化都可以看到,所以ECM调理显示出有望促进脱细胞同种异体移植瓣膜细胞更新的需要,而无需植入前内皮细胞播种。

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