Ferric carboxymaltose increases fracture risk in patients and reduces bone formation in mice with iron deficiency anemia

骨软化症 内科学 缺铁性贫血 医学 低磷血症 贫血 内分泌学 胃肠病学 骨量减少 骨重建 转铁蛋白 骨折 缺铁 外科 骨密度 化学 骨形成 骨矿物 骨病 髋部骨折 苯丙氨酸 基质(化学分析) 骨细胞 铁蛋白
作者
Sonja A. Wagner,Marlene Panzer,Elke Pertler,Stefan Redl,Martina Saretto,Benedikt Schaefer,Lorenz M. Pammer,Laura Obholzer,Maria Rosina Troppmair,Michael W. Hess,Willi Salvenmoser,Gerald Degenhart,M Grossgut,Heribert Talasz,Klaus Faserl,Bettina Sarg,Roland Haubner,Markus A. Hartmann,Stéphane Blouin,Verena Petzer
出处
期刊:Blood [Elsevier BV]
卷期号:148 (1): 15-30 被引量:5
标识
DOI:10.1182/blood.2025031806
摘要

ABSTRACT: Modern IV iron formulations allow treatment of iron deficiency anemia (IDA) with 1 or 2 infusions. Ferric carboxymaltose (FCM) is a widely used IV iron, which causes hypophosphatemia in most of the patients. Osteomalacia and fractures are increasingly recognized after repeated infusions of FCM. It is unknown why ferric derisomaltose (FDI) rarely causes hypophosphatemia. In this study, we compare the effects of FCM and FDI on fracture risk and investigate potential underlying mechanisms explaining the different effects on bone and mineral metabolism. For this aim, fracture rate and osteomalacia were assessed in a cohort of 357 patients treated with either drug, who reported a significantly higher rate of incident osteomalacia or fracture after FCM. These findings were validated in >20 000 patients from the TriNetX database, where FCM treatment was independently associated with a higher fracture risk compared with FDI. The underlying mechanisms were investigated in a mouse model of IDA treated with FCM or FDI, an osteocyte model, and biochemically. FCM caused lower expression of collagen and ossification genes, associated with significantly higher bone iron concentrations than FDI. Electron microscopy showed iron-loaded vesicles in osteoblasts and early osteocytes. FCM but not FDI inhibited the binding of dentin matrix protein 1 to αVβ3-integrin on osteocytes. This is a potential mechanism for reduced bone formation and higher levels of intact fibroblast growth factor 23 after FCM. Our data report that IDA and FCM treatment can directly impair bone formation and increase fracture risk.
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