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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Multifunctional gelatin-tricalcium phosphate porous nanocomposite scaffolds for tissue engineering and local drug delivery: In vitro and in vivo studies
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Multifunctional gelatin-tricalcium phosphate porous nanocomposite scaffolds for tissue engineering and local drug delivery: In vitro and in vivo studies

机译:用于组织工程和局部药物递送的多功能明胶 - 磷酸盐多孔纳米复合材料支架:体外和体内研究

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摘要

Bone is known as the most prevalent, metastatic site of breast cancer; however, it's mechanism details are unknown, so developing a suitable scaffold for bone defect regeneration and sustain drug release after tumor resection can considerably inhibit the tumor recurrence after a while. Here, synthesized gelatin/beta-tricalcium phosphate (beta-TCP) nanocomposite scaffold loaded with zoledronic acid (ZA) drug with different beta-TCP concentrations, crosslinker and varying drug doses were investigated to highlight their effect on biological properties of the scaffold contained bone cells. The scanning electron microscopy (SEM) illustrated porous structure (50-200 mu m) of gelatin reinforced with beta-TCP spherical nanoparticles (around 90 nm diameter) that could be a proper matrix for bone cells proliferation. In vitro biological analysis by cytotoxicity assay (MTT test) as well as osteoblast cell line (G292) attachment test showed that the scaffolds were biocompatible and non-toxic. Also, higher beta-TCP nanoparticle concentration enhanced the rate of cell proliferation on the scaffold. Further investigations indicated that the type of cell seeding into porous scaffolds should be considered as a significant parameter in cell behavior on the scaffold. The better cell attachment was observed in agarose gel wells in comparison with the petri dish one. Nanocomposite samples were loaded with ZA drug and its effects on the cell proliferation were investigated in vitro and in vivo as well. Histopathological results showed that the new bone formation was established more than 75% in the whole area of the defect after 3 and 4 months. For the first time, nanoscaled beta-TCP/gelatin composite was proposed as a potential for controlled drug release and local resected tumor treatment. All findings besides in vitro and in vivo analyses, recommend gelatin/nano beta-tricalcium phosphate/drug scaffolds as a promising three-dimensional environment for repairing the resected bone tissue
机译:骨被称为最普遍的乳腺癌转移性部位;然而,它的机制细节是未知的,因此在肿瘤切除术后,在肿瘤切除术后,在肿瘤切除术后,在肿瘤切除术后,就会为骨缺损再生进行合适的支架和维持药物释放。这里,研究了用不同β-TCP浓度,交联剂和不同药物剂量的磷酸盐酸(β-TCP)纳米复合二钙(β-TCP)纳米复合支架纳米复合材料支架,分交联剂和不同的药物剂量,突出了它们对含有骨的支架生物学性质的影响细胞。用β-TCP球形纳米颗粒(约90nm直径约为90nm)增强明胶的扫描电子显微镜(SEM)所示的多孔结构(50-200μm),其可以是骨细胞增殖的适当基质。通过细胞毒性测定(MTT试验)以及成骨细胞系(G292)附着试验的体外生物分析表明支架是生物相容性和无毒的。此外,较高的β-TCP纳米颗粒浓度提高了支架上的细胞增殖速率。进一步的研究表明,在多孔支架中的细胞播种的类型应被认为是支架上的细胞行为中的重要参数。与培养皿一体相比,在琼脂糖凝胶孔中观察到更好的细胞附着。纳米复合样品用Za药物加载,其对体外和体内的细胞增殖的影响也是如此。组织病理学结果表明,在3至4个月后,新的骨形成在缺陷的整个领域建立了超过75%。首次,提出了纳米级β-TCP /明胶复合材料作为受控药物释放和局部切除的肿瘤处理的潜力。除了体外和体内分析外,所有结果推荐明胶/纳米β-三钙/药物支架作为修复切除的骨组织的有希望的三维环境

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