骨质疏松症
脂肪生成
间充质干细胞
胶束
药理学
化学
不利影响
骨形成
医学
内科学
病理
物理化学
水溶液
作者
Xiaoduan Sun,Yan Lin,Xingyue Zhong,Chao Fan,Zhen Liu,Xin Chen,Zaiyi Luo,Jili Wu,Singkome Tima,Zhirong Zhang,Jun Jiang,Xingjie Du,Xiangyu Zhou,Zhirong Zhong
标识
DOI:10.1016/j.jconrel.2024.10.002
摘要
Formulating drugs into nanoparticles that target sites of disease can lead to strong therapeutic effects with lower doses of drugs and lower rates of off-target adverse effects. Few ways to target drugs to bone have been described, hampering the treatment of osteoporosis. Here we exploit the ability of alendronate to bind tightly to hydroxyapatite in bone as a tactic to target polymeric micelles loaded with the plant flavonoid icaritin to osteoporotic lesions. The traditional Chinese medicine icaritin, from Herba Epimedii, has previously been shown to inhibit adipogenesis and enhance osteogenesis by bone mesenchymal stem cells, but the compound on its own persists only briefly in the bloodstream. Our delivery system led to stronger inhibition of adipogenesis and activation of osteogenesis in a rat model of osteoporosis than when the icaritin-loaded micelles lacked alendronate. These results establish the feasibility of using alendronate to target osteogenic phytomolecules to sites of bone injury, which may guide the development of effective therapies against osteoporosis and, by extension, other bone disorders.
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