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Advances in strontium-releasing biomaterials for bone repair

材料科学 生物医学工程 骨愈合 生物相容性材料 植入 骨形成 成骨细胞 临床前试验 人骨 转化研究 组织工程 药物输送 骨细胞 骨重建 骨组织 生物相容性 输送系统 人体研究 材料试验 临床前研究 骨移植 牙科 医学
作者
Daksh Mehta,Eileen Gentleman
出处
期刊:Biomaterials [Elsevier BV]
卷期号:326: 123718-123718 被引量:14
标识
DOI:10.1016/j.biomaterials.2025.123718
摘要

Strontium-containing biomaterials offer promising avenues for enhancing bone repair by leveraging the ion's reported dual anabolic and anti-catabolic effects on bone cells. These biomaterials aim to encourage site-specific bone growth, heal fractures, and improve metallic implant fixation through controlled release of strontium ions. Here, we provide an overview of strontium's use as a treatment for osteoporosis, and report current advances in biomaterials designed to deliver strontium locally to the skeleton from bioactive glasses, calcium phosphates, bone cements, polymers, and implant coatings. Strontium's putative mechanisms of action on bone, including by directly stimulating osteoblasts and osteoclasts and through physicochemical interactions with the bone mineral are discussed. We also appraise dosing, noting discrepancies between in vitro stimulatory ranges and concentrations likely to be achieved in vivo. Strontium-releasing materials are widely reported to be efficacious in preclinical models, but there is very limited human experience. Thus, we also focus on translational issues, including dose and release quantification, safety and systemic exposure monitoring, regulatory pathways, and manufacturing constraints. The review concludes with recommendations for future studies to elucidate strontium's biological and physicochemical mechanisms of action, guidance to refine delivery strategies, and a call to standardise the reporting of dosing. Together, these changes should advance these promising materials toward early clinical testing and improved outcomes in bone repair applications.
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