Zoledronate loaded polylactic acid/polycaprolactone/hydroxyapatite scaffold accelerates regeneration and led to enhance structural performance and functional ability of the radial bone defect in rat.

IF 0.8 4区 农林科学 Q3 VETERINARY SCIENCES
A Oryan, S Hassanajili, S Sahvieh
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引用次数: 0

Abstract

Abstract.

Background: One of the most common concerns in the regeneration of massive bone defects necessitating surgery and bone grafts is the application of tissue engineering using drug delivery. Zoledronate is a well-known effective drug for the healing bone fractures in osteoporotic patients.

Aims: An attempt was made to design a more efficient bone scaffold with polycaprolactone, polylactic acid, and hydroxyapatite.

Methods: The scaffold was fabricated by freeze-drying and indirect 3D printing approaches. X-ray diffraction, Fourier transform infrared spectroscopy, rheometry, scanning electron microscopy, and neutral red tests were performed to characterize the scaffold. qRT-PCR was also done to define the osteoinductivity and angiogenic induction capacity of this scaffold. Forty rats were selected and randomly divided into four groups: the control group, which received no treatment, the autograft group, scaffold group, and Zol-loaded scaffold group (n=10 in each group). The injured area was studied by radiology, biomechanical analysis, histopathology, histomorphometry, immunohistochemistry, and CT scan analyses.

Results: The qRT-PCR results demonstrated significantly higher expression levels of OPN, OCN, and CD31 markers in the scaffold group when compared to the control group (P<0.05). Histopathologically, the newly formed bone tissue was significantly detected in the Zol-loaded scaffold and autograft groups in comparison with the non-treated group (P<0.001). The immunohistochemistry (OC marker), biomechanical, and histomorphometric results indicated a significant improvement in the regeneration of the injured area in the groups treated with autologous bone and Zol-loaded scaffold compared to the non-treated group (P<0.05). Conclusion: The Zol-loaded scaffold accelerated bone regeneration, and led to enhanced structural performance and functional ability of the injured radial bone in rats.

Abstract Image

Abstract Image

Abstract Image

唑来膦酸酯负载聚乳酸/聚己内酯/羟基磷灰石支架加速大鼠桡骨缺损的再生,提高其结构性能和功能。
摘要:背景:在需要手术和骨移植的巨大骨缺损的再生中,最常见的问题之一是使用药物递送的组织工程的应用。唑来膦酸盐是治疗骨质疏松患者骨折的有效药物。目的:尝试用聚己内酯、聚乳酸和羟基磷灰石设计一种更有效的骨支架。方法:采用冷冻干燥法和间接3D打印法制作支架。通过X射线衍射、傅立叶变换红外光谱、流变学、扫描电子显微镜和中性红测试对支架进行了表征。还进行了qRT-PCR以确定该支架的骨诱导性和血管生成诱导能力。选择40只大鼠,随机分为四组:对照组,不接受治疗,自体移植物组,支架组和左旋多巴负载支架组(每组n=10)。通过放射学、生物力学分析、组织病理学、组织形态计量学、免疫组织化学和CT扫描分析对损伤区域进行研究。结果:qRT-PCR结果显示,与对照组相比,支架组中OPN、OCN和CD31标记物的表达水平显著升高(P结论:Zol负载支架加速了大鼠桡骨损伤后的骨再生,并增强了大鼠桡骨头的结构性能和功能。
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来源期刊
CiteScore
1.70
自引率
8.30%
发文量
10
期刊介绍: The Iranian Journal of Veterinary Research(IJVR) is published quarterly in 4 issues. The aims of this journal are to improve and expand knowledge in all veterinary fields. It is an international journal indexed by the Thomson Institute for Scientific Information (ISI), Elsevier, Scopus, CAB International, Veterinary Bulletin and several other international databases. Research papers and reports on a wide range of veterinary topics are published in the journal after being evaluated by expert reviewers.The Editor-in-Chief is responsible for the editorial content of the journal—including peer-reviewed manuscripts—and the timing of its publication.
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