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钙掺杂磺化聚醚醚酮对鼠源性骨髓细胞的生物活性、血液相容性和炎症反应。

Bioactivity, hemocompatibility, and inflammatory response of calcium incorporated sulfonated polyether ether ketone on mouse-derived bone marrow cells.

机构信息

Department of Laboratory Medicine and Pathology, University of Alberta, Edmonton, AB, Canada.

Department of Biotechnology, Aarupadai Veedu Institute of Technology, VMRF (DU), Paiyanoor, Tamil Nadu, India.

出版信息

Biosci Rep. 2024 Jun 26;44(6). doi: 10.1042/BSR20232162.

Abstract

Natural and synthetic polymeric materials, particularly soft and hard tissue replacements, are paramount in medicine. We prepared calcium-incorporated sulfonated polyether-ether ketone (SPEEK) polymer membranes for bone applications. The bioactivity was higher after 21 days of immersion in simulated body fluid (SBF) due to calcium concentration in the membrane. We present a new biomaterial healing system composed of calcium and sulfonated polyether ether ketone (Ca-SPEEK) that can function as a successful biomaterial without causing inflammation when tested on bone marrow cells. The Ca-SPEEK exhibited 13 ± 0.5% clot with low fibrin mesh formation compared to 21 ± 0.5% in SPEEK. In addition, the Ca-SPEEK showed higher protein adsorption than SPEEK membranes. As an inflammatory response, IL-1 and TNF-α in the case of Ca-SPEEK were lower than those for SPEEK. We found an early regulation of IL-10 in the case of Ca-SPEEK at 6 h, which may be attributed to the down-regulation of the inflammatory markers IL-1 and TNF-α. These results evidence the innovative bioactivity of Ca-SPEEK with low inflammatory response, opening venues for bone applications.

摘要

天然和合成聚合物材料,特别是软组织和硬组织替代品,在医学中至关重要。我们制备了用于骨应用的钙掺入磺化聚醚醚酮(SPEEK)聚合物膜。由于膜中的钙浓度,在模拟体液(SBF)中浸泡 21 天后,生物活性更高。我们提出了一种由钙和磺化聚醚醚酮(Ca-SPEEK)组成的新型生物材料愈合系统,该系统可以作为一种成功的生物材料,在骨髓细胞上测试时不会引起炎症。与 SPEEK 中的 21 ± 0.5%相比,Ca-SPEEK 的凝块形成率为 13 ± 0.5%,纤维蛋白网形成较少。此外,与 SPEEK 膜相比,Ca-SPEEK 显示出更高的蛋白质吸附能力。作为炎症反应,Ca-SPEEK 中的 IL-1 和 TNF-α低于 SPEEK。我们发现 Ca-SPEEK 在 6 h 时早期调节了 IL-10,这可能归因于炎症标志物 IL-1 和 TNF-α的下调。这些结果证明了 Ca-SPEEK 具有低炎症反应的创新性生物活性,为骨应用开辟了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96a0/11208130/c620084f2ef3/bsr-44-bsr20232162-g1.jpg

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