锶、镁和锌离子对上颌窦膜干细胞体外成骨的影响

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biological Trace Element Research Pub Date : 2024-08-16 DOI:10.1007/s12011-024-04303-4
Zhihao Zhang, Ning Gong, Ying Wang, Lei Xu, Sinan Zhao, Yanshan Liu, Fei Tan
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引用次数: 0

摘要

人上颌窦膜干细胞(hMSMSCs)对上颌窦底增量术(MSFA)后的骨形成有重要贡献。间充质干细胞的生物学行为明显受到不同浓度的镁(Mg2+)、锶(Sr2+)和锌(Zn2+)离子的影响;然而,这些离子对间充质干细胞的具体影响尚未得到全面研究。我们分离了 hMSMSCs,并通过流式细胞术和多线分化实验确定了它们的间充质干细胞特征。随后,在含有不同浓度金属离子的培养基中培养 hMSMSCs。使用 CCK-8 和钙黄绿素 AM/PI 染色法评估 hMSMSCs 的增殖和活力。诱导成骨后,对细胞进行碱性磷酸酶(ALP)活性、ALP 染色和茜素红染色评估。此外,还使用 qRT-PCR 检测成骨基因表达的差异,并使用免疫荧光染色观察 OCN 蛋白水平的变化。结果表明,1 mM Mg2+、0.01 mM Sr2+ 和 0.001 mM Zn2+ 能显著提高 hMSMSCs 的增殖和活性。这些浓度还能明显促进 ALP 的分泌、骨相关基因的表达、骨钙素的表达和细胞外钙结节的形成,从而改善成骨分化。然而,较高浓度的 Mg2+、Sr2+ 和 Zn2+ 会降低细胞活力和成骨分化。Mg2+、Sr2+和Zn2+能以浓度依赖的方式促进hMSMSCs的成骨分化和增殖,这表明细胞外环境中离子的类型和浓度能显著改变hMSMSCs的行为,这也是上颌窦提升应用中材料设计的一个重要考虑因素。
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Impact of Strontium, Magnesium, and Zinc Ions on the In Vitro Osteogenesis of Maxillary Sinus Membrane Stem Cells.

Human Maxillary Sinus Membrane Stem Cells (hMSMSCs) contribute significantly to bone formation following maxillary sinus floor augmentation (MSFA). The biological behavior of mesenchymal stem cells is notably influenced by varying concentrations of magnesium (Mg2+), strontium (Sr2+), and zinc (Zn2+) ions; however, their specific effects on hMSMSCs have not been comprehensively studied. We isolated hMSMSCs and identified their mesenchymal stem cell characteristics by flow cytometry and multilineage differentiation experiments. Subsequently, the hMSMSCs were cultured in media containing different concentrations of these metal ions. The proliferation and viability of hMSMSCs were assessed using CCK-8 and Calcein AM/PI staining. After osteogenic induction, cells were evaluated for alkaline phosphatase (ALP) activity, ALP staining, and Alizarin Red staining. Additionally, qRT-PCR was used to detect differences in osteogenic gene expression, and immunofluorescence staining was used to observe variations in OCN protein levels. The results indicated that 1 mM Mg2+, 0.01 mM Sr2+, and 0.001 mM Zn2+ significantly improved the proliferation and activity of hMSMSCs. These concentrations also notably enhanced ALP secretion, increased bone-related gene expression, and augmented osteocalcin expression and formation of extracellular calcium nodules, thereby improving osteogenic differentiation. However, higher concentrations of Mg2+, Sr2+, and Zn2+ decreased cell viability and osteogenic differentiation. Mg2+, Sr2+, and Zn2+ promote osteogenic differentiation and proliferation of hMSMSCs in a concentration-dependent manner, indicating that the type and concentration of ions in the extracellular environment can significantly alter hMSMSCs behavior, which is a crucial consideration for material design in maxillary sinus elevation applications.

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来源期刊
Biological Trace Element Research
Biological Trace Element Research 生物-内分泌学与代谢
CiteScore
8.70
自引率
10.30%
发文量
459
审稿时长
2 months
期刊介绍: Biological Trace Element Research provides a much-needed central forum for the emergent, interdisciplinary field of research on the biological, environmental, and biomedical roles of trace elements. Rather than confine itself to biochemistry, the journal emphasizes the integrative aspects of trace metal research in all appropriate fields, publishing human and animal nutritional studies devoted to the fundamental chemistry and biochemistry at issue as well as to the elucidation of the relevant aspects of preventive medicine, epidemiology, clinical chemistry, agriculture, endocrinology, animal science, pharmacology, microbiology, toxicology, virology, marine biology, sensory physiology, developmental biology, and related fields.
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