Bone proliferation in osteoporotic experimental animals using alginate-pullulan-bioactive glass‑gold nanoparticles composite

IF 3.6 2区 医学 Q2 ENDOCRINOLOGY & METABOLISM Bone Pub Date : 2025-05-01 Epub Date: 2025-02-28 DOI:10.1016/j.bone.2025.117439
Andreea Niculina Aștilean (Pertea) , Alexandra Dreancă , Sidonia Gog-Bogdan , Bogdan Sevastre , Andrei Ungur , Andrada Negoescu , Marian Taulescu , Oana Rotar , Maximilian Dindelegan , Luciana-Mădălina Gherman , Klara Magyari , Liviu Oana
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Abstract

In the present study, scaffold composites based on alginate-pullulan-bioactive glass‑gold nanoparticles were orthotopically implanted in an experimental model of delayed bone union, in rats, given by a metabolic pathology, namely osteoporosis. Differences between treated and untreated groups were observed and the efficacy of our biomaterial was evaluated by applying micro-CT imaging, together with histological evaluation of the osteoporotic animals with sub-critical bone defects, at 30 and 60 days. Osteoporosis was successfully induced by ovariectomy in 9-month-old rats, confirmed by micro-CT and histopathological analysis. A secondary complication from a cortical bone defect was further induced to study bone proliferation in such a delayed environment. The studied composite presents osteointegration and angiogenesis properties at 60 days post-implantation in the osteoporotic animals. These results are given by the micro-CT analysis in which higher bone mineral density and bone volume fraction were observed, alongside histopathology, stating a lack of tissue necrosis and inflammatory reaction and the presence of new woven islands within and around the implanted biomaterial. This is the first endeavor to treat cortical bone defects in osteoporotic animals using scaffold biopolymers containing bioactive glass‑gold nanoparticles instead of cement.

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海藻酸盐-普鲁兰-生物活性玻璃金纳米颗粒复合材料对骨质疏松实验动物骨增殖的影响
在本研究中,基于海藻酸-普鲁兰-生物活性玻璃金纳米颗粒的支架复合材料被原位植入到代谢病理,即骨质疏松症的大鼠骨愈合延迟的实验模型中。观察治疗组与未治疗组的差异,并通过显微ct成像评估我们的生物材料的疗效,并在30天和60天对骨质疏松的亚临界骨缺损动物进行组织学评估。9月龄大鼠卵巢切除术成功诱导骨质疏松,显微ct及组织病理证实。皮质骨缺损的继发性并发症被进一步诱导来研究这种延迟环境下的骨增殖。所研究的复合材料在骨质疏松症动物植入后60天表现出骨整合和血管生成的特性。这些结果是通过显微ct分析得出的,在显微ct分析中,观察到较高的骨矿物质密度和骨体积分数,以及组织病理学,表明缺乏组织坏死和炎症反应,并且植入生物材料内部和周围存在新的编织岛。这是首次尝试使用含有生物活性玻璃金纳米颗粒的支架生物聚合物代替水泥来治疗骨质疏松动物的皮质骨缺损。
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来源期刊
Bone
Bone 医学-内分泌学与代谢
CiteScore
8.90
自引率
4.90%
发文量
264
审稿时长
30 days
期刊介绍: BONE is an interdisciplinary forum for the rapid publication of original articles and reviews on basic, translational, and clinical aspects of bone and mineral metabolism. The Journal also encourages submissions related to interactions of bone with other organ systems, including cartilage, endocrine, muscle, fat, neural, vascular, gastrointestinal, hematopoietic, and immune systems. Particular attention is placed on the application of experimental studies to clinical practice.
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