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在主动脉瓣钙化中 rRNA 和核染色质衍生物对羟磷灰石成核作用的超微结构和免疫组织化学检测:体外和体内促钙化动物模型以及人类实际钙化疾病。

Ultrastructural and Immunohistochemical Detection of Hydroxyapatite Nucleating Role by rRNA and Nuclear Chromatin Derivatives in Aortic Valve Calcification: In Vitro and In Vivo Pro-Calcific Animal Models and Actual Calcific Disease in Humans.

机构信息

Department of Medicine, University of Udine, I-33100 Udine, Italy.

出版信息

Int J Mol Sci. 2023 Jan 31;24(3):2667. doi: 10.3390/ijms24032667.

Abstract

Calcification starts with hydroxyapatite (HA) crystallization on cell membranous components, as with aortic valve interstitial cells (AVICs), wherein a cell-membrane-derived substance containing acidic phospholipids (PPM/PPLs) acts as major crystal nucleator. Since nucleic acid removal is recommended to prevent calcification in valve biosubstitutes derived from decellularized valve scaffolds, the involvement of ribosomal RNA (rRNA) and nuclear chromatin (NC) was here explored in three distinct contexts: (i) bovine AVIC pro-calcific cultures; (ii) porcine aortic valve leaflets that had undergone accelerated calcification after xenogeneic subdermal implantation; and (iii) human aortic valve leaflets affected by calcific stenosis. Ultrastructurally, shared AVIC degenerative patterns included (i) the melting of ribosomes with PPM/PPLs, and the same for apparently well-featured NC; (ii) selective precipitation of silver particles on all three components after adapted von Kossa reactions; and (iii) labelling by anti-rRNA immunogold particles. Shared features were also provided by parallel light microscopy. In conclusion, the present results indicate that rRNA and NC contribute to AVIC mineralization in vitro and in vivo, with their anionic charges enhancing the HA nucleation capacity exerted by PPM/PPL substrates, supporting the concept that nucleic acid removal is needed for valve pre-implantation treatments, besides better elucidating the modality of pro-calcific cell death.

摘要

钙化始于细胞膜成分上的羟基磷灰石 (HA) 结晶,就像主动脉瓣间质细胞 (AVIC) 一样,其中含有酸性磷脂 (PPM/PPLs) 的细胞膜衍生物质充当主要的晶体成核剂。由于建议在源自脱细胞瓣膜支架的瓣膜生物替代品中去除核酸以防止钙化,因此在这里在三个不同的背景下探讨了核糖体 RNA (rRNA) 和核染色质 (NC) 的参与:(i) 牛 AVIC 原钙化培养物;(ii) 异种皮下植入后加速钙化的猪主动脉瓣叶;和 (iii) 受钙化狭窄影响的人主动脉瓣叶。超微结构上,共有的 AVIC 退行性模式包括:(i) 核糖体与 PPM/PPLs 一起融化,NC 也是如此;(ii) 经改良的 von Kossa 反应后,所有三种成分上均选择性沉淀银颗粒;和 (iii) 用抗 rRNA 免疫胶体金颗粒标记。平行光显微镜也提供了共同的特征。总之,本研究结果表明 rRNA 和 NC 有助于体外和体内 AVIC 的矿化,其阴离子电荷增强了 PPM/PPL 基质发挥的 HA 成核能力,支持了在植入前处理瓣膜时需要去除核酸的概念,除了更好地阐明原钙化细胞死亡的方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f561/9916520/18f762195e2a/ijms-24-02667-g001a.jpg

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