Wang Yingjie, Mei Xuan, Bian Yanyan, Hu Tingting, Weng Xisheng, Liang Ruizheng, Wei Min
Department of Orthopedics, Peking Union Medical College Hospital, Peking Union Medical College & Chinese Academy of Medical Sciences, Beijing 100730, P. R. China.
State Key Laboratory of Chemical Resource Engineering, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.
Nanoscale. 2020 Oct 1;12(37):19075-19082. doi: 10.1039/d0nr03387a.
Osteonecrosis of femoral head (ONFH) has been one of the most common diseases, and thus the development of novel biomaterials with superior osteogenic ability is the key issue. In this work, Yb-containing MgAl-layered double hydroxide (LDH) monolayer nanosheets (MgAlYb-LDHs) were designed and synthesized and were used as a new biomaterial with outstanding osteogenic differentiation ability. The LDH monolayer nanosheets gave a high loading content (LC) of 197% for alendronate (AL) with an encapsulation efficiency (EE) of 98.6%. Notably, outstanding in vitro osteogenic differentiation performance of MgAlYb-LDHs was demonstrated in the transcriptional level of Collagen I, with a 3000-fold enhancement compared with the blank control. For in vivo tests with rabbits, the total volume of bone regeneration after treatment with the LDH group was 2.77 and 1.41 times larger than that with the negative control group and positive control group (autologous bone graft, clinical gold standard) at 8 weeks postoperatively. In addition, with the degradation of AL/LDHs, the bone mass density (BMD) of the femoral head increased by 1.52 times compared with that for the positive control group at 8 weeks postoperatively. Therefore, this work provides a new perspective for the design and preparation of 2D monolayer MgAlYb-LDHs and their drug formulation (AL/LDHs), which show great promise in ONFH accompanied by osteoporosis.
股骨头坏死(ONFH)一直是最常见的疾病之一,因此开发具有优异成骨能力的新型生物材料是关键问题。在这项工作中,设计并合成了含镱的MgAl层状双氢氧化物(LDH)单层纳米片(MgAlYb-LDHs),并将其用作具有出色成骨分化能力的新型生物材料。LDH单层纳米片对阿仑膦酸盐(AL)的负载量高达197%,包封率(EE)为98.6%。值得注意的是,MgAlYb-LDHs在转录水平上表现出出色的体外成骨分化性能,与空白对照组相比提高了3000倍。在兔体内试验中,术后8周时,LDH组治疗后的骨再生总体积分别比阴性对照组和阳性对照组(自体骨移植,临床金标准)大2.77倍和1.41倍。此外,随着AL/LDHs的降解,术后8周时股骨头的骨密度(BMD)比阳性对照组增加了1.52倍。因此,这项工作为二维单层MgAlYb-LDHs及其药物制剂(AL/LDHs)的设计和制备提供了新的视角,它们在伴有骨质疏松症的ONFH中显示出巨大的潜力。