糖皮质激素性骨质疏松合并高血压症斑马鱼模型的构建与评价
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上海中医药大学附属龙华医院科技中心实验室

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国家自然科学基金项目(81873318,82374474);上海中医药大学医养结合科创项目(YYKC-2021-01-010);上海中医药大学附属龙华医院教育教学改革项目(2023lhjx043)。


Construction and evaluation of a zebrafish model of glucocorticoid-induced osteoporosis combined with hypertension
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Laboratory of Science and Technology Center,Longhua Hospital Shanghai University of Traditional Chinese Medicine

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the National Natural Science Foundation of China (81873318, 82374474), the Medical and Nursing Combination Scientific Innovative Project of Shanghai University of Traditional Chinese Medicine (YYKC-2021-01-010), the Education and Teaching Reform Project of Longhua Hospital Shanghai University of Traditional Chinese Medicine (2023lhjx043).

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    摘要:

    目的 本研究旨在构建地塞米松(dexamethasone,Dex)诱导的糖皮质激素性骨质疏松与高血压症双重表型斑马鱼模型,并系统评估其表型特征验证其有效性。方法 选用3受精后天数(days post fertilization,dpf)或4 dpf斑马鱼幼鱼,随机分为对照组(0.1% DMSO)和实验组(10 μmol/L Dex),分别于给药0、48、96 h时对斑马鱼进行脊柱茜素红染色与背主动脉血流检测,以分别反映骨矿化指标与血管直径(n = 10)。在确认最佳给药时间后用Western Blot检测骨形成相关蛋白(Akt、GSK-3β、β-Catenin)及血管生成相关蛋白(AMPK、NF-κB)的表达,确认模型分子层面的有效性。结果 Dex处理96 h后斑马鱼骨矿化量及骨密度均明显低于对照组,经统计学分析,4 dpf给药96 h为GIOP模型的最佳造模时间。Dex处理后的斑马鱼血管直径较对照组显著减小(P < 0.05),且处理时间越长模型组与对照组之间的差异越显著,各给药时间段中以4 dpf给药96 h后两组的差异最明显。将4 dpf斑马鱼给药96 h后检测蛋白表达,可见Dex显著降低Akt、β-Catenin、NF-κB的蛋白表达(P < 0.05),显著升高GSK-3β、AMPK的蛋白表达(P < 0.05),提示Dex有效抑制骨形成、抑制血管生成。结论 用10 μmol/L Dex作用于4 dpf斑马鱼96 h可有效建立快速、可靠的糖皮质激素性骨质疏松与高血压双重表型斑马鱼模型,该模型在造模周期与实验成本方面具有明显优势,是深入探讨两病共同机制及筛选新药的理想动物模型。

    Abstract:

    Objective To establish a dexamethasone (Dex)-induced zebrafish model of glucocorticoid-induced osteoporosis(GIOP) combined with glucocorticoid-induced hypertension(GIHT),and to validate the model through systematical evaluation of both phenotypic manifestations and molecular mechanisms. Methods Zebrafish larvae at 3 or 4 days post-fertilization(dpf)were randomly divided into control group (0.1%DMSO)and model group(10 μmol/L Dex). Osteogenic parameters and vessel diameter were assessed at 0 h,48 h,and 96 h post-administration(Sample size:n = 10). Bone mineralization and density were determined by the total area and sum brightness from alizarin red staining. Vessel diameter was measured by detecting blood flow in the zebrafish dorsal aorta(DA). After confirming the optimal administration time,Western blot was used to detect the expression of bone formation-related proteins(Akt,GSK-3β,β-Catenin) and angiogenesis-related proteins(AMPK,NF-κB) to verify the molecular effectiveness of the model. Results After 96 h of Dex exposure,bone mineralization and density in zebrafish larvae were obviously lower than those in the control group,and the statistical analysis indicated that 4 dpf zebrafish at 96 h of administration was identified as the optimal modeling time for the GIOP model. Zebrafish vessel diameter decreased significantly in the model group compared to the control group(P < 0.05),and the difference became more pronounced with longer administration time,particularly evident at 4 dpf treating 96 h. Western blot analysis showed that Dex significantly decreased the protein expression of Akt,β-Catenin,and NF-κB(P < 0.05),while significantly increasing the expression of GSK-3β and AMPK(P < 0.05),suggesting that Dex effectively inhibited bone formation and angiogenesis after 96 h treatment in 4 dpf zebrafish. Conclusions Using 10 μmol/L Dex to treat 4 dpf zebrafish for 96 h can effectively establish a rapid and reliable zebrafish model of GIOP combined with GIHT,providing an ideal animal model for further exploring the common mechanisms of the two diseases and screening new drugs.

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  • 收稿日期:2024-12-04
  • 最后修改日期:2025-05-12
  • 录用日期:2025-05-21
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