Preparation and Administration of a Controlled-Release Delivery System of Chitosan Hydrogel loaded with Methadone and Piroxicam in Experimental Defect of Tibial in Rats; Histopathological Evaluation

Q3 Health Professions Frontiers in Biomedical Technologies Pub Date : 2023-07-11 DOI:10.18502/fbt.v10i3.13163
Pegah Khosravian, M. Javdani, Melika Masoudi, A. Mohebi, A. B. Sadegh, A. Barzegar
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Abstract

Purpose: In this study, a controlled-release drug delivery system loaded with piroxicam and methadone was synthesized and used subcutaneously in rats with experimental tibial defect, and healing were assessed histopathologically. Materials and Methods: For this purpose, 100 adult female rats were randomly divided into five equal groups; control group, chitosan group, piroxicam group, methadone group, and piroxicam-methadone group. The morphological structure of the synthesized drug systems was studied by scanning electron microscope. In addition, the structure of the hydrogels was investigated by Fourier transform infrared spectroscopy and while releasing the hydrogels' gelation time, the release of piroxicam and methadone from the hydrogels was evaluated in vitro. Results: Histological results of the 3rd day of the study showed the lowest extent and severity of inflammation in the chitosan, piroxicam, and piroxicam-methadone groups, while on the 7th day, tissue inflammation and the extent of bleeding were lower in the piroxicam, methadone, and piroxicam-methadone groups than in the other groups. Evaluation of new bone formation on day 21 showed that the chitosan, piroxicam, and methadone groups had better repair than the other groups. Conclusion: It seems that in the control group that did not receive any treatment intervention, following the experimental bone defect, the highest inflammatory response was observed in histological examination and finally the weakest bone repair. On the other hand, the presence of piroxicam, methadone, and chitosan in the piroxicam-methadone group (all of which have anti-inflammatory effects) also seems to have a negative effect on the repair.
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壳聚糖水凝胶美沙酮-吡罗康控释大鼠胫骨缺损的制备及应用组织病理学评价
目的:合成吡罗西康和美沙酮缓释给药系统,并将其应用于实验性胫骨缺损大鼠皮下,观察其组织病理学愈合情况。材料与方法:将100只成年雌性大鼠随机分为5组;对照组、壳聚糖组、吡罗西康组、美沙酮组、吡罗西康-美沙酮组。用扫描电镜研究了合成药物体系的形态结构。利用傅里叶变换红外光谱研究了水凝胶的结构,并在释放凝胶凝胶时间的同时,对吡罗西康和美沙酮的体外释放进行了评价。结果:研究第3天的组织学结果显示,壳聚糖组、吡罗西康组、吡罗西康-美沙酮组的炎症程度和严重程度最低,而第7天,吡罗西康组、美沙酮组、吡罗西康-美沙酮组的组织炎症和出血程度均低于其他组。第21天的新骨形成评价显示,壳聚糖、吡罗西康和美沙酮组修复效果较好。结论:在未接受任何治疗干预的对照组中,实验组骨缺损发生后,组织学检查炎症反应最高,最终骨修复最弱。另一方面,在吡罗西康-美沙酮组中,吡罗西康、美沙酮和壳聚糖的存在(它们都有抗炎作用)似乎也对修复有负面影响。
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来源期刊
Frontiers in Biomedical Technologies
Frontiers in Biomedical Technologies Health Professions-Medical Laboratory Technology
CiteScore
0.80
自引率
0.00%
发文量
34
审稿时长
12 weeks
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