Ultrasonographic and Radiographic Evaluation of Zeolite/Collagen Nanocomposite Scaffolds Compared With Nanohydroxyapatite on Experimental Bone Defect Healing in Rabbit Femur

IF 0.2 Q4 MEDICINE, GENERAL & INTERNAL
Negar Javadian, A. Veshkini, A. Jahandideh, A. Akbarzadeh, A. Asghari
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Abstract

Objectives: The use of a biomaterial scaffold can improve the healing process of bone defects. Using radiologic and ultrasonographic methods, this study aimed to evaluate the effects of zeolite/collagen nanocomposite and nanohydroxyapatite (nHA) bone scaffolds on the healing process of bone defect in rabbit femur. Materials and Methods: Twenty-eight mature male New Zealand white rabbits were classified into four equal groups (n=7 in each). In the first group, the defect was made, and the wound was closed with no treatment; in the second group, the nHA was implanted into the defect; in the third group, the nanocomposite of zeolite/collagen was implanted; and in the fourth group, the defect was filled using autograft. Radiologic (Sedecal Veterinary X-Ray System, Model No. A6544-2) and ultrasonographic (Mindray Z5 Veterinary Ultrasound Scanner) examinations were done on days 0, 15, 30, 45, and 60 postoperatively. Results: There were no healing effects on days 0 and 7 in any of the studied groups in the radiologic examination. The highest and lowest healing effects were related to treatment with zeolite/collagen nanocomposite and control group on day 60 after operation, respectively. There was no angiogenesis on day 0 in any group in the ultrasonographic examination. The highest and lowest levels of angiogenesis were related to rabbits treated with zeolite/collagen nanocomposite and the control group on day 30 after operation, respectively. Also, bone filling and angiogenesis in rabbits treated with zeolite/collagen nanocomposite were higher than other groups. Conclusions: Zeolite/collagen nanocomposite scaffolds bear a crucial capability in the reconstruction of bone defects and can be used in bone fractures.
沸石/胶原纳米复合支架与纳米羟基磷灰石在兔股骨实验性骨缺损修复中的超声及影像学评价
目的:应用生物材料支架改善骨缺损的愈合过程。本研究采用影像学和超声影像学方法,探讨沸石/胶原纳米复合材料和纳米羟基磷灰石(nHA)骨支架对兔股骨骨缺损愈合过程的影响。材料与方法:雄性成年新西兰大白兔28只,随机分为4组,每组7只。第一组创面缺损,不做任何处理,直接闭合创面;第二组将nHA植入缺损;第三组植入沸石/胶原纳米复合材料;在第四组中,用自体移植物填充缺损。放射学专用兽医x光系统,型号:术后第0、15、30、45、60天分别行A6544-2)和超声检查(迈瑞Z5兽用超声扫描仪)。结果:两组患者放射学检查0、7 d均无愈合效果。沸石/胶原纳米复合材料组和对照组在术后第60天愈合效果最高,对照组愈合效果最低。超声检查各组第0天均未见血管新生。沸石/胶原纳米复合材料组和对照组血管新生水平分别在术后第30天达到最高和最低。沸石/胶原纳米复合材料处理家兔的骨填充和血管生成能力均高于其他各组。结论:沸石/胶原纳米复合支架具有重要的骨缺损重建能力,可用于骨折修复。
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来源期刊
自引率
25.00%
发文量
15
审稿时长
8 weeks
期刊介绍: All kind of knowledge contributing to the development of science by its content, value, level and originality will be covered by CJMB. Problems of public health and their solutions are at the head of the windows opening us to the world. The "Crescent Journal of Medical and Biological Sciences" is a modern forum for scientific communication,coveringall aspects medical sciences and biological sciences, in basic and clinical sciences, mainly including: • Anatomy • Antioxidant Therapy in Reproduction Medicine • Biochemistry • Biophysics • Breast Cancer • Cardiology and Cardiovascular Medicine • Cell Biology • Dentistry sciences • Diabetes • Embryology • Endocrinology • Genetics • Hematology • Herbal Medicine • Histology • Internal Medicine • Internal Medicine, surgery • Medical Education • Medical Laboratory Sciences • Medical Microbiology • Microbiology • Mycology, Neurosciences • Nerosciences • Nutrition • Oncology • Parasitology • Pathology • Pharmacognosy • Pharmacology • Psychiatry • Sex-Based Biology • Sports Medicine • Urogynecology • Virology
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