柴胡皂苷 A 可通过诱导铁变态反应减少破骨细胞生成和骨质流失

IF 3.9 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Frontiers in Molecular Biosciences Pub Date : 2024-07-24 DOI:10.3389/fmolb.2024.1390257
Tian-Qi Li, Yan Liu, Chong Feng, Jin Bai, Zi-Rou Wang, Xiang-Yu Zhang, Xin-Xing Wang
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引用次数: 0

摘要

为缓解骨质流失,目前大多数药物都以破骨细胞为靶标。Saikosaponin A(Ssa)是从柴胡(又称柴胡)中提取的一种三萜皂甙,具有免疫调节、神经调节、抗病毒、抗癌、抗惊厥、抗炎和抗增殖作用。最近的研究表明,骨稳态的调节涉及到铁蛋白沉积。在此,我们旨在确定 Ssa 对破骨细胞生成和分化的抑制作用、是否涉及铁蛋白沉积以及其潜在机制。通过耐酒石酸磷酸酶(TRAP)染色、F-肌动蛋白染色和凹坑形成试验,证实了Ssa介导的体外抑制RANKL诱导的破骨细胞生成的作用。通过铁定量、FerroOrange染色、二氯二氢荧光素二乙酸酯、MitoSOX、丙二醛、谷胱甘肽和硼-二吡咯美辛581/591 C11测定,Ssa可促进破骨细胞铁变态反应,并通过促进脂质过氧化增加线粒体损伤。通路分析表明,Ssa 可通过抑制 Nrf2/SCL7A11/GPX4 轴来促进破骨细胞的铁凋亡。值得注意的是,我们发现铁突变抑制剂 ferrostatin-1 和 Nrf2 激活剂叔丁基对苯二酚逆转了 Ssa 对 RANKL 诱导的破骨细胞生成的抑制作用。在体内,显微计算机断层扫描、苏木精和伊红染色、TRAP 染色、酶联免疫吸附试验和免疫荧光证实,在脂多糖诱导的牙周炎大鼠中,Ssa 可剂量依赖性地减少牙槽骨吸收。研究结果表明,Ssa 是一种治疗溶骨性疾病的有效药物。
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Saikosaponin A attenuates osteoclastogenesis and bone loss by inducing ferroptosis
To alleviate bone loss, most current drugs target osteoclasts. Saikosaponin A (Ssa), a triterpene saponin derived from Bupleurum falcatum (also known as Radix bupleuri), has immunoregulatory, neuromodulatory, antiviral, anticancer, anti-convulsant, anti-inflammatory, and anti-proliferative effects. Recently, modulation of bone homeostasis was shown to involve ferroptosis. Herein, we aimed to determine Ssa’s inhibitory effects on osteoclastogenesis and differentiation, whether ferroptosis is involved, and the underlying mechanisms. Tartrate‐resistant acid phosphatase (TRAP) staining, F‐actin staining, and pit formation assays were conducted to confirm Ssa-mediated inhibition of RANKL-induced osteoclastogenesis in vitro. Ssa could promote osteoclast ferroptosis and increase mitochondrial damage by promoting lipid peroxidation, as measured by iron quantification, FerroOrange staining, Dichloro-dihydro-fluorescein diacetate, MitoSOX, malondialdehyde, glutathione, and boron-dipyrromethene 581/591 C11 assays. Pathway analysis showed that Ssa can promote osteoclasts ferroptosis by inhibiting the Nrf2/SCL7A11/GPX4 axis. Notably, we found that the ferroptosis inhibitor ferrostatin-1 and the Nrf2 activator tert-Butylhydroquinone reversed the inhibitory effects of Ssa on RANKL-induced osteoclastogenesis. In vivo, micro-computed tomography, hematoxylin and eosin staining, TRAP staining, enzyme-linked immunosorbent assays, and immunofluorescence confirmed that in rats with periodontitis induced by lipopolysaccharide, treatment with Ssa reduced alveolar bone resorption dose-dependently. The results suggested Ssa as a promising drug to treat osteolytic diseases.
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来源期刊
Frontiers in Molecular Biosciences
Frontiers in Molecular Biosciences Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.20
自引率
4.00%
发文量
1361
审稿时长
14 weeks
期刊介绍: Much of contemporary investigation in the life sciences is devoted to the molecular-scale understanding of the relationships between genes and the environment — in particular, dynamic alterations in the levels, modifications, and interactions of cellular effectors, including proteins. Frontiers in Molecular Biosciences offers an international publication platform for basic as well as applied research; we encourage contributions spanning both established and emerging areas of biology. To this end, the journal draws from empirical disciplines such as structural biology, enzymology, biochemistry, and biophysics, capitalizing as well on the technological advancements that have enabled metabolomics and proteomics measurements in massively parallel throughput, and the development of robust and innovative computational biology strategies. We also recognize influences from medicine and technology, welcoming studies in molecular genetics, molecular diagnostics and therapeutics, and nanotechnology. Our ultimate objective is the comprehensive illustration of the molecular mechanisms regulating proteins, nucleic acids, carbohydrates, lipids, and small metabolites in organisms across all branches of life. In addition to interesting new findings, techniques, and applications, Frontiers in Molecular Biosciences will consider new testable hypotheses to inspire different perspectives and stimulate scientific dialogue. The integration of in silico, in vitro, and in vivo approaches will benefit endeavors across all domains of the life sciences.
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