Department of Surgery, Columbia University Irving Medical Center, New York, NY 10032.
Division of Cardiology, Department of Pediatrics, Pediatric Heart Valve Center, The Children's Hospital of Philadelphia, Philadelphia, PA 19104.
Proc Natl Acad Sci U S A. 2023 Jan 3;120(1):e2219054120. doi: 10.1073/pnas.2219054120. Epub 2022 Dec 27.
Bioprosthetic heart valves (BHV), made from glutaraldehyde-fixed xenografts, are widely used for surgical and transcatheter valve interventions but suffer from limited durability due to structural valve degeneration (SVD). We focused on metabolic syndrome (MetS), a risk factor for SVD and a highly prevalent phenotype in patients affected by valvular heart disease with a well-recognized cluster of comorbidities. Multicenter patient data (N = 251) revealed that patients with MetS were at significantly higher risk of accelerated SVD and required BHV replacement sooner. Using a next-generation proteomics approach, we identified significantly differential proteomes from leaflets of explanted BHV from MetS and non-MetS patients (N = 24). Given the significance of protein infiltration in MetS-induced SVD, we then demonstrated the protective effects of polyoxazoline modification of BHV leaflets to mitigate MetS-induced BHV biomaterial degeneration (calcification, tissue cross-linking, and microstructural changes) in an ex vivo serum model and an in vivo with MetS rat subcutaneous implants.
生物瓣心脏瓣膜(BHV)由戊二醛固定的异种移植物制成,广泛用于外科和经导管瓣膜介入治疗,但由于结构性瓣膜退化(SVD),其耐用性有限。我们专注于代谢综合征(MetS),这是 SVD 的一个危险因素,也是瓣膜性心脏病患者的一种高发表型,这些患者具有公认的多种合并症。多中心患者数据(N=251)显示,患有代谢综合征的患者发生加速 SVD 的风险显著更高,需要更早更换 BHV。使用下一代蛋白质组学方法,我们从代谢综合征和非代谢综合征患者的 BHV 瓣叶中鉴定出明显不同的蛋白质组(N=24)。鉴于蛋白质浸润在代谢综合征诱导的 SVD 中的重要性,我们随后证明了聚恶唑啉修饰 BHV 瓣叶以减轻代谢综合征诱导的 BHV 生物材料退化(钙化、组织交联和微观结构变化)的保护作用,该作用在体外血清模型和体内代谢综合征大鼠皮下植入物中得到了验证。