日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Establishing clinically meaningful ranges of metal hypersensitivity in orthopaedic patients using COVID-19 vaccine-induced adaptive immune responses from fully vaccinated adults

利用已完全接种疫苗的成年人的 COVID-19 疫苗诱导的适应性免疫反应,确定骨科患者金属过敏的临床意义范围

Caicedo, Marco S; Flores, Vianey; Siapno, Rochelle; Crosby, Michael; Samelko, Lauryn A; Jacobs, Joshua J; Hallab, Nadim J

Translational Characterization of Macrophage Responses to Stable and Non-Stable CoCrMo Wear and Corrosion Debris Generated In-Situ for Total Hip Replacement

全髋关节置换术中原位产生的稳定和不稳定CoCrMo磨损和腐蚀碎屑对巨噬细胞反应的转化表征

Ebinger, Kathrin; Samelko, Lauryn; Radice, Simona; Hallab, Nadim J; Wimmer, Markus A

Do Battlefield Injury-acquired Indwelling Metal Fragments Induce Metal Immunogenicity?

战场伤病中遗留的金属碎片是否会诱发金属免疫原性?

Samelko, Lauryn; Petfield, Joseph; McAllister, Kyron; Hsu, Joseph; Hawkinson, Michael; Jacobs, Joshua J; Hallab, Nadim J

The Inflammatory Effects of Breast Implant Particulate Shedding: Comparison With Orthopedic Implants

乳房植入物颗粒脱落的炎症效应:与骨科植入物的比较

Hallab, Nadim James; Samelko, Lauryn; Hammond, Dennis

CoCrMo alloy vs. UHMWPE Particulate Implant Debris Induces Sex Dependent Aseptic Osteolysis Responses In Vivo using a Murine Model

CoCrMo合金与UHMWPE颗粒状植入物碎片在小鼠模型中诱导性别依赖性无菌性骨溶解反应

Landgraeber, Stefan; Samelko, Lauryn; McAllister, Kyron; Putz, Sebastian; Jacobs, Joshua J; Hallab, Nadim James

Implant debris particle size affects serum protein adsorption which may contribute to particle size-based bioreactivity differences

植入物碎片颗粒大小会影响血清蛋白吸附,这可能导致基于颗粒大小的生物反应性差异。

Reddy, Anand; Caicedo, Marco S; Samelko, Lauryn; Jacobs, Joshua J; Hallab, Nadim James

Cobalt-alloy implant debris induce HIF-1α hypoxia associated responses: a mechanism for metal-specific orthopedic implant failure

钴合金植入物碎片诱导HIF-1α缺氧相关反应:金属特异性骨科植入物失效的机制

Samelko, Lauryn; Caicedo, Marco S; Lim, Seung-Jae; Della-Valle, Craig; Jacobs, Joshua; Hallab, Nadim J

Increasing both CoCrMo-alloy particle size and surface irregularity induces increased macrophage inflammasome activation in vitro potentially through lysosomal destabilization mechanisms

增加CoCrMo合金颗粒尺寸和表面不规则性均可诱导体外巨噬细胞炎症小体活化增强,这可能是通过溶酶体不稳定机制实现的。

Caicedo, Marco S; Samelko, Lauryn; McAllister, Kyron; Jacobs, Joshua J; Hallab, Nadim J

Osteoclasts lose innate inflammatory reactivity to metal and polymer implant debris compared to monocytes/macrophages.

与单核细胞/巨噬细胞相比,破骨细胞对金属和聚合物植入物碎片的固有炎症反应性降低

Yadav Jessica, Samelko Lauryn, Gilvar Phil, McAllister Kyron, Hallab Nadim James