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新抗钙化处理的牛心包瓣的体内评估。

In vivo evaluation of Vivere bovine pericardium valvular bioprosthesis with a new anti-calcifying treatment.

机构信息

Braile Biomédica Ind. Com. e Repres. Ltda., São Paulo, Brazil.

Braile Cardio, São José do Rio Preto, Brazil.

出版信息

Artif Organs. 2020 Nov;44(11):E482-E493. doi: 10.1111/aor.13718. Epub 2020 Jul 1.

DOI:10.1111/aor.13718
PMID:32364253
Abstract

The objective of this study was to evaluate the effect of chemical treatment with glutamic acid to avoid calcification of biological cardiac valves. The bovine pericardium (BP) tissues were fixed with 0.5% glutaraldehyde (BP/GA), followed by treatment with glutamic acid (BP/GA + Glu) for neutralization of the free aldehyde groups. Microscopic analysis showed that the wavy structure of collagen fibrils was preserved, but changes in elastin's integrity occurred. However, the treatment did not promote undesirable changes in the thermal and mechanical properties of the modified BPs. These samples were systematically studied in rat subcutaneous tissue: control (BP/GA) and anticalcificant (BP/GA + Glu). After 60 days, both groups induced similar inflammatory reactions. In terms of calcification, BP/GA + Glu remained more stable with a lower index (3.1 ± 0.2 μg Ca /mg dry tissue), whereas for BP/GA it was 5.7 ± 1.3 μg Ca /mg dry tissue. Bioprostheses made from BP/GA + Glu were implanted in the pulmonary position in sheep, and in vivo echocardiographic analyses revealed maintenance of valvar function after 180 days, with low gradients and minimal valve insufficiency. The explanted tissues of the BP/GA + Glu group had a lower average calcium content 3.8 ± 3.0 μg Ca /mg dry tissue. The results indicated high anticalcification efficiency of BP/GA + Glu in both subcutaneous implant in rats and in the experimental sheep model, which is an advantage that should encourage the industrial application of these materials for the manufacture of bioprostheses.

摘要

本研究旨在评估用谷氨酸进行化学处理以避免生物心脏瓣膜钙化的效果。牛心包 (BP) 组织用 0.5%戊二醛 (BP/GA) 固定,然后用谷氨酸 (BP/GA + Glu) 处理以中和游离醛基。显微镜分析显示胶原纤维的波浪状结构得以保留,但弹性蛋白的完整性发生变化。然而,该处理并未促进改性 BPs 热学和力学性能的不良变化。这些样品在大鼠皮下组织中进行了系统研究:对照组 (BP/GA) 和抗钙化组 (BP/GA + Glu)。60 天后,两组均引起类似的炎症反应。在钙化方面,BP/GA + Glu 保持更稳定,钙化指数较低 (3.1±0.2μg Ca/mg 干组织),而 BP/GA 为 5.7±1.3μg Ca/mg 干组织。用 BP/GA + Glu 制成的生物假体植入绵羊的肺动脉位置,体内超声心动图分析显示瓣膜功能在 180 天后得以维持,梯度较低,瓣膜功能不全最小。BP/GA + Glu 组的组织样本的平均钙含量较低,为 3.8±3.0μg Ca/mg 干组织。结果表明,BP/GA + Glu 在大鼠皮下植入和实验绵羊模型中均具有较高的抗钙化效率,这一优势应鼓励将这些材料工业应用于生物假体的制造。

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