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树突状细胞对临床用钛表面特性的反应。

Dendritic cell responses to surface properties of clinical titanium surfaces.

机构信息

Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Acta Biomater. 2011 Mar;7(3):1354-63. doi: 10.1016/j.actbio.2010.10.020. Epub 2010 Oct 25.

Abstract

Dendritic cells (DCs) play pivotal roles in responding to foreign entities during the innate immune response and in initiating effective adaptive immunity as well as maintaining immune tolerance. The sensitivity of DCs to foreign stimuli also makes them useful cells to assess the inflammatory response to biomaterials. Elucidating material property-DC phenotype relationships using a well-defined biomaterial system is expected to provide criteria for immunomodulatory biomaterial design. Clinical titanium (Ti) substrates, including pretreatment (PT), sand blasted and acid etched (SLA), and modified SLA (modSLA), with different roughnesses and surface energies were used to treat DCs and resulted in differential DC responses. PT and SLA induced a mature DC (mDC) phenotype, while modSLA promoted a non-inflammatory environment by supporting an immature DC (iDC) phenotype, based on surface marker expression, cytokine production profiles and cell morphology. Principal component analysis (PCA) confirmed these experimental results, and also indicated that the non-stimulating property of modSLA covaried with certain surface properties, such as high surface hydrophilicity, percent oxygen and percent Ti of the substrates. In addition to previous research that demonstrated superior osteogenic properties of modSLA compared with PT and SLA, the results reported herein indicates that modSLA may further benefit implant osteointegration by reducing local inflammation and its associated osteoclastogenesis.

摘要

树突状细胞 (DCs) 在固有免疫反应中对外来实体做出反应,并启动有效的适应性免疫以及维持免疫耐受方面发挥着关键作用。DCs 对外来刺激的敏感性也使它们成为评估生物材料炎症反应的有用细胞。使用定义明确的生物材料系统阐明材料特性-DC 表型关系,有望为免疫调节生物材料设计提供标准。临床用钛 (Ti) 基底,包括预处理 (PT)、喷砂酸蚀 (SLA) 和改良 SLA (modSLA),具有不同的粗糙度和表面能,用于处理 DCs 并导致不同的 DC 反应。PT 和 SLA 诱导成熟 DC (mDC) 表型,而 modSLA 通过支持未成熟 DC (iDC) 表型促进非炎症环境,基于表面标记表达、细胞因子产生谱和细胞形态。主成分分析 (PCA) 证实了这些实验结果,还表明 modSLA 的非刺激性与某些表面特性相关,例如高表面亲水性、基底的氧百分比和 Ti 百分比。除了先前的研究表明 modSLA 与 PT 和 SLA 相比具有更好的成骨性能外,本文的研究结果表明,modSLA 通过减少局部炎症及其相关的破骨细胞生成,可能进一步有益于植入物的骨整合。

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Dendritic cell responses to surface properties of clinical titanium surfaces.树突状细胞对临床用钛表面特性的反应。
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