The Analysis of Osteoblast Cell Number on Femur Fractures Provided Red Spinach Extract (Amaranthus tricolor L.)

Ferdian Nugroho, Aris Prasetyo, Muhammad Hasan
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Abstract

Bone fracture is a musculoskeletal injury with a high incidence rate. The healing process of the fracture can be inhibited by oxidative stress, which occurs due to Reactive Oxygen Species (ROS) that exceeds the antioxidant capacity in the body that neutralizes it. Antioxidants that have red spinach have the potential to suppress the level of oxidative stress. This study aims to determine the effect of red spinach ethanol extract on the healing process of fracture in male Wistar rats through osteoblast cell count. A sample of 30 male Wistar rats was divided into five groups; negative control group, positive control group, and three groups of red spinach ethanol treatment with doses of 35.4 mg / 150 g body weight (BW), 70.8 mg / 150 gBW, and 141.6 mg / 150gBW induced fracture, splinted, then treated for one week. One Way Anova test results showed a significance of 0.000 (p <0.05) in which there was a significant difference in the osteoblast level between the treatment group and the control group. The result of LSD test between P1 group and P3 group showed significantly different result where the increase of osteoblast cell number was in line with the increase of the dose of red spinach ethanol extract. The conclusion is that red spinach ethanol extract has a positive impact during the fracture healing process with osteoblast cell number parameters. Keywords: Red spinach ethanolic extract, fracture healing process, osteoblast, oxidative stress
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红菠菜提取物对股骨骨折成骨细胞数量的影响
骨折是一种发病率较高的肌肉骨骼损伤。骨折的愈合过程可以被氧化应激所抑制,氧化应激是由于活性氧(ROS)超过了体内的抗氧化能力而产生的。红菠菜中的抗氧化剂有抑制氧化应激水平的潜力。本研究旨在通过成骨细胞计数研究红菠菜乙醇提取物对雄性Wistar大鼠骨折愈合过程的影响。选取30只雄性Wistar大鼠分为5组;阴性对照组、阳性对照组和三组红菠菜乙醇分别以35.4 mg / 150g体重(BW)、70.8 mg / 150gBW、141.6 mg / 150gBW剂量诱导骨折,夹板固定后治疗一周。单因素方差分析(One Way Anova)结果显示,治疗组与对照组成骨细胞水平差异有统计学意义,p <0.05。P1组与P3组的LSD检测结果有显著差异,成骨细胞数量的增加与红菠菜乙醇提取物剂量的增加一致。结论:红菠菜乙醇提取物对骨折愈合过程中成骨细胞数量参数有积极影响。关键词:红菠菜乙醇提取物,骨折愈合过程,成骨细胞,氧化应激
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