铁酸盐
胃肠道
失调
缺铁性贫血
缺铁
铁蛋白
贫血
海西定
化学
肠道菌群
铁补充剂
医学
微生物群
铁转运蛋白
肠道微生物群
补铁
生理学
零价铁
微生物学
生物利用度
毒性
膳食铁
消胆胺
免疫学
内科学
生物化学
药理学
生物
炎症
血红蛋白
作者
Yingchun Yang,Luqiu Yang,Rong Yang,Fangqing Deng,Qing Tian,Zhaoxiang Yu,Lianbing Zhang
标识
DOI:10.1186/s12951-025-03814-z
摘要
Traditional iron supplements for iron deficiency anemia (IDA) have several limitations, including suboptimal absorption, gastrointestinal discomfort, and concerns regarding long-term safety. In this study, we synthesized monodisperse 6-line ferrihydrite as an innovative iron supplement, featuring a structure analogous to the natural "iron core" present in ferritin. Notably, 6-line ferrihydrite (6-Fh) was internalized by Caco-2 cells via a process independent of divalent metal transporter 1 (DMT1). Additionally, its stability as nanoparticles within the gastrointestinal tract prevents the irritation typically associated with metal ions, thereby significantly enhancing iron utilization efficiency. Consequently, compared to FeSO₄ (a traditional oral iron supplement), 6-Fh effectively stabilized cellular free iron with low ROS toxicity and high biosafety, thereby effectively maintaining intestinal barrier integrity and avoiding liver injury. Furthermore, it restored intestinal dysbiosis caused by IDA and increased the proportion of beneficial bacterial strains, which was superior to FeSO₄. Characterized by low toxicity, efficient cellular absorption, intestinal stability, and superior iron supplementation efficacy compared with conventional iron supplements, 6-Fh demonstrates compelling therapeutic advantages and holds great promise for medical applications.
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