等离子沉积聚恶唑啉纳米表面指示骨免疫调节,以改善成骨

Zetao Chen, R. Visalakshan, Jia Guo, Fei Wei, Linjun Zhang, Lingling Chen, Zhengmei Lin, K. Vasilev, Yin Xiao
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引用次数: 27

摘要

开发“骨免疫智能”骨替代材料已成为骨再生研究的前沿。生物相容性高分子涂层在提高骨替代材料的生物活性方面有着广泛的应用。在这种情况下,聚恶唑啉(Pox)由于其生物相容性、稳定性和低生物污染等特性,最近引起了人们的广泛关注。鉴于这些有用的特性,探索痘作为骨免疫调节剂为成骨创造有利的骨免疫环境的能力是很有趣的。我们应用等离子体聚合技术,成功制备了类pox涂层(Ppox),并在纳米尺度上设计了其纳米形貌。我们发现Ppox将巨噬细胞转向M2极端,从而抑制炎症细胞因子的释放。其潜在机制可能与TLR通路的抑制有关。生成的骨免疫环境促进骨生成,抑制破骨细胞生成。这可能与巨噬细胞释放成骨因子,尤其是Wnt10b有关。添加纳米形貌(16nm, 38nm, 68nm)可以调节痘痘介导的炎症和破骨活性抑制,而在测试的纳米尺寸范围内,对痘痘介导的成骨作用没有明显影响。这些结果表明,Ppox可以作为一种有效的骨调节剂,赋予骨替代材料良好的骨免疫调节性能。意义声明:在这项研究中,我们成功地通过等离子体聚合制备了等离子沉积的类痘纳米涂层(Ppox),并发现Ppox纳米形貌是有用的骨免疫调节工具。揭示了它们的骨免疫调节作用及其机制。这是首次研究了聚恶唑啉作为骨免疫调节剂的可行性。这将聚恶唑啉的应用扩展到骨再生领域的前沿,用于开发先进的“骨免疫智能”骨替代材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasma Deposited Poly-Oxazoline Nanotextured Surfaces Dictate Osteoimmunomodulation Towards Ameliorative Osteogenesis
Developing "osteoimmune-smart" bone substitute materials have become the forefront of research in bone regeneration. Biocompatible polymer coatings are applied widely to improve the bioactivity of bone substitute materials. In this context, polyoxazolines (Pox) have attracted substantial attention recently due to properties such as biocompatibility, stability, and low biofouling.In view of these useful properties, it is interesting to explore the capacity of Pox as an osteoimmunomodulatory agent to generate a favorable osteoimmune environment for osteogenesis. We applied a technique called plasma polymerization and succeeded in preparing Pox-like coatings (Ppox) and engineered their nanotopography at the nanoscale. We found that Ppox switched macrophages towards M2 extreme, thus inhibiting the release of inflammatory cytokines. The underlying mechanism may be related to the suppression of TLR pathway. The generated osteoimmune environment improved osteogenesis while inhibited osteoclastogenesis. This may be related to the release of osteogenic factors, especially Wnt10b from macrophages. The addition of nanotopography (16nm, 38nm, 68nm) can tune the Ppox-mediated inhibition on inflammation and osteoclastic activities, while no significant effects were observed within the tested nano sizes on the Ppox-mediated osteogenesis. These results collectively suggest that Ppox can be useful as an effective osteoiumunomodulatory agent to endow bone substitute materials with favourable osteoimmunomodulatory property. STATEMENT OF SIGNIFICANCE: In this study, we succeeded in preparing plasma deposited Pox-like nano-coatings (Ppox) via plasma polymerization and found that Ppox nanotopographies are useful osteoimmunomodulatory tools. Their osteoimmunodolatory effects and underlying mechanisms are unveiled. It is the first investigation into the feasibility of applying poly-oxazoline as an osteoimmunomodulatory agent. This expand the application of poly-oxazoline into the forefront in bone regeneration area for the development of advanced "osteoimmune-smart" bone substitute materials.
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