Kamal Nermeen H, Heikal Lamia A, Ali Mai M, Aly Rania G, Abdallah Ossama Y
Department of Pharmaceutics, Division of Pharmaceutical Sciences, College of Pharmacy, Arab Academy for Science, Technology and Maritime Transport, Egypt.
Department of Pharmaceutics, Faculty of Pharmacy, Alexandria University, Alexandria, Egypt.
Biomater Adv. 2023 Feb;145:213249. doi: 10.1016/j.bioadv.2022.213249. Epub 2022 Dec 16.
The prevalence of bone injuries is greatly increasing each year and the proper healing of fractures without any complications is very challenging. Self-setting calcium phosphate cements (CPCs) have attracted great attention as bioactive synthetic bone substitutes. Quercetin (QT) is a multipurposed drug with reported bone-conserving properties. The loading of QT and QT-phospholipid complex within nanostructured lipid carriers (NLC) was proposed to overcome the poor physical properties of the drug and to introduce the use of bioactive excipients as phospholipids and olive oil. The aim of this work was to formulate a regenerative scaffold loaded with nano-formulated QT for local treatment of orthopedic fractures. For the first time, scaffolds composed of brushite CPC were prepared and loaded with quercetin lipid nano-systems. In vitro tests proved that the addition of lipid nano-systems did not deteriorate the properties of CPC where QT-NLC/CPC showed an adequate setting time, appropriate compressive strength, and porosity. The scanning electron microscope confirmed maintenance of nanoparticles integrity within the cement. Using a rat femur bone defect animal model, the histological results showed that the QT-NLC/CPC had a superior bone healing potential compared to crude unformulated QT/CPC. In conclusion, QT-NLC /CPC are promising lipid nano-composite materials that could enhance bone regeneration.
每年骨损伤的患病率都在大幅上升,实现骨折无并发症的妥善愈合极具挑战性。自固化磷酸钙骨水泥(CPCs)作为具有生物活性的合成骨替代物已引起广泛关注。槲皮素(QT)是一种具有多种用途的药物,据报道具有保护骨骼的特性。将QT和QT - 磷脂复合物负载于纳米结构脂质载体(NLC)中,旨在克服该药物较差的物理性质,并引入磷脂和橄榄油等生物活性辅料。本研究的目的是制备一种负载纳米制剂QT的再生支架,用于骨科骨折的局部治疗。首次制备了由透钙磷石CPC组成的支架,并负载槲皮素脂质纳米体系。体外试验证明,脂质纳米体系的加入并未降低CPC的性能,其中QT - NLC/CPC表现出合适的凝固时间、适当的抗压强度和孔隙率。扫描电子显微镜证实了水泥中纳米颗粒的完整性得以维持。使用大鼠股骨骨缺损动物模型,组织学结果表明,与未配制的粗制QT/CPC相比,QT - NLC/CPC具有更强的骨愈合潜力。总之,QT - NLC/CPC是有前景的脂质纳米复合材料,可促进骨再生。