奥利多宁对支气管肺发育不良实验动物模型的影响

IF 3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of cellular biochemistry Pub Date : 2024-07-16 DOI:10.1002/jcb.30632
Shanshan Zhang, Junfu Wang, Zhihong Xin, Chao Sun, Zhiye Ju, Xia Xue, Wen Jiang, Qian Xin, Jue Wang, Zhaohua Zhang, Yun Luan
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引用次数: 0

摘要

支气管肺发育不良(BPD)是早产儿和低体重儿的一种严重疾病。近年来,支气管肺发育不良的发病率并未降低,且没有有效的治疗方法。奥利多宁(Ori)是一种传统中药,具有广泛的生物活性,尤其是药理作用和抗炎作用。众所周知,炎症在 BPD 中起着关键作用。然而,豨莶草对 BPD 的治疗效果尚未得到研究。因此,在本研究中,我们将观察 Ori 在 BPD 实验动物模型中的抗炎活性。实验结果表明,Ori 能显著降低高氧诱导的肺泡损伤,抑制中性粒细胞的招募、髓过氧化物酶的浓度以及 BPD 新生儿大鼠炎症因子的释放。综上所述,实验结果表明,Ori 可通过抑制炎症反应显著改善新生大鼠的 BPD。
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Effect of Oridonin on Experimental Animal Model of Bronchopulmonary Dysplasia

Bronchopulmonary dysplasia (BPD) is a serious disease that occurs in premature and low-birth-weight infants. In recent years, the incidence of BPD has not decreased, and there is no effective treatment for it. Oridonin (Ori) is a traditional Chinese medicine with a wide range of biological activities, especially pharmacological and anti-inflammatory. It is well known that inflammation plays a key role in BPD. However, the therapeutic effect of Ori on BPD has not been studied. Therefore, in the present study, we will observe the anti-inflammatory activity of Ori in an experimental animal model of BPD. Here, we showed that Ori could significantly decrease hyperoxia-induced alveolar injury, inhibit neutrophil recruitment, myeloperoxidase concentrations, and release inflammatory factors in BPD neonatal rats. Taken together, the experimental results suggested that Ori can significantly improve BPD in neonatal rats by inhibiting inflammatory response.

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来源期刊
Journal of cellular biochemistry
Journal of cellular biochemistry 生物-生化与分子生物学
CiteScore
9.90
自引率
0.00%
发文量
164
审稿时长
1 months
期刊介绍: The Journal of Cellular Biochemistry publishes descriptions of original research in which complex cellular, pathogenic, clinical, or animal model systems are studied by biochemical, molecular, genetic, epigenetic or quantitative ultrastructural approaches. Submission of papers reporting genomic, proteomic, bioinformatics and systems biology approaches to identify and characterize parameters of biological control in a cellular context are encouraged. The areas covered include, but are not restricted to, conditions, agents, regulatory networks, or differentiation states that influence structure, cell cycle & growth control, structure-function relationships.
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