骨整合
植入
骨愈合
骨髓
促炎细胞因子
材料科学
牙科
生物医学工程
炎症
医学
内科学
病理
外科
作者
Heithem Ben Amara,Diana C. Martinez,Kamila Iskhakova,Lena Emanuelsson,Birgitta Norlindh,Anna Johansson Loo,D.C. Florian Wieland,Berit Zeller‐Plumhoff,Regine Willumeit–Römer,Tomasz Płociński,Wojciech Święszkowski,Furqan A. Shah,Anders Palmquist,Omar Omar,Peter Thomsen
出处
期刊:Biomaterials
[Elsevier BV]
日期:2024-08-30
卷期号:314: 122779-122779
被引量:3
标识
DOI:10.1016/j.biomaterials.2024.122779
摘要
Orthopedic implants made of biodegradable magnesium (Mg) provide an alternative to nondegradable implants for fracture repair. Widely reported to be pro-osteogenic, Mg implants are also believed to be anti-inflammatory and anti-osteoclastic, but this is difficult to reconcile with the early clinical inflammation observed around these implants. Here, by surveying implant healing in a rat bone model, we determined the cellular responses and structural assembly of bone correlated with the surface changes of Mg implants inherent in degradation. We show that, compared to titanium, both high-purity (99.998%) and clinical-grade, rare earth-alloyed (MgYREZr) Mg implants create an initial, transient proinflammatory environment that facilitates inducible nitric oxide synthase-mediated macrophage polarization, osteoclastogenesis, and neoangiogenesis programs. While this immunomodulation subsequently reinforces reparative osteogenesis at the surface of both Mg implants, the faster degradation of high-purity Mg implants, but not MgYREZr implants, elicits a compositional alteration in the interfacial bone and a previously unknown proadipogenic response with persistent low-grade inflammation in the surrounding bone marrow. Beyond the need for rigorous tailoring of Mg implants, these data highlight the need to closely monitor osseointegration not only at the immediate implant surface but also in the peri-implant bone and adjacent bone marrow.
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