骨质疏松症
药效学
遗传毒性
药理学
大豆黄酮
医学
骨量减少
化学
药代动力学
内科学
骨矿物
毒性
染料木素
作者
Namrata Gautam,Prashant Sharma,Antra Chaudhary,Surajita Sahu,Divya Vohora,Monalisa Mishra,Debopriya Dutta,Manish Kumar Singh,Sushama Talegaonkar
标识
DOI:10.1080/1061186x.2025.2503499
摘要
Bisphosphonates and Hormone Replacement Therapy are the primary therapeutic interventions for Postmenopausal Osteoporosis (PMO), however, associated repercussions limit their usage. To address this challenge, we hypothesized the codelivery of hydroxyapatite (HAP) with daidzein (DZ) for synergistic treatment of PMO. Propounding this bimodal approach, daidzein-loaded hydroxyapatite nanoparticles (DZHAPNPs) were prepared leveraging the estrogenic properties of DZ while utilizing HAP to facilitate biomineralization. The osteogenic potential of developed nanoparticles was validated through in vitro experiments on MG-63 cells and in vivo studies employing a "4-vinyl cyclohexene diepoxide-induced menopausal-mice model". DZHAPNPs exhibited pronounced pro-osteogenic activity, evidenced by enhanced (155.49%) alkaline phosphatase (ALP) activity in MG-63 cells. Additionally, cellular uptake studies confirmed their internalization and targeted delivery. Following menopause induction and treatment, the mice underwent radiography, histology, micro-computed tomography (micro-CT) analysis, and biochemical evaluations. A significant reduction (p < 0.001) in biomarkers i.e. β-CTx, BALP, and TRAP-5b, post-treatment showed a substantial influence of DZ and DZHAPNPs. Better bone architectural parameters and bone mineral density in micro-CT analysis served as proof of the hypothesis. Also, cellular biocompatibility of nanoparticles was confirmed through genotoxicity tests performed on the Drosophila melanogaster. The noteworthy results of the research substantiated the synergistic influence of DZ and HAPNPs in resilience and bone strength maintenance.
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