黄芩苷激活自噬抑制炎症促进牙髓干细胞成牙/骨分化
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1.南京医科⼤学附属口腔医院综合诊疗科,口腔疾病研究与防治国家级重点实验室培育建设点,江苏省口腔转化医学⼯程研究中⼼;2.南京医科⼤学附属口腔医院牙体牙髓病科,口腔疾病研究与防治国家级重点实验室培育建设点,江苏省口腔转化医学⼯程研究中⼼

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Baicalin activates autophagy, inhibits inflammation and promotes odontogenic/osteogenic differentiation of dental pulp stem cells
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Department of General Dentistry,The Affiliated Stomatological Hospital of Nanjing Medical University, State Key Laboratory Cultivation Base of Research, Prevention and Treatment for Oral Diseases , Jiangsu Province Engineering Research Center of Stomatological Translational Medicine

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    摘要:

    目的:本研究通过验证黄芩苷在炎症环境下的抗炎效果并探究其对人牙髓干细胞(hDPSCs)成骨/成牙分化的影响。为牙髓炎的活髓保存治疗提供参考。 方法: 选取人早期炎症牙髓组织制作冰冻切片并进行HE染色及IL-1β免疫组化染色。将人单核细胞白血病细胞(THP-1)分化的巨噬细胞在脂多糖(LPS)及干扰素-γ(IFN-γ)的诱导下极化为M1亚群,然后用50μM的黄芩苷处理。利用免疫荧光、实时定量聚合酶链反应(RT-PCR)和Western blot分析INOS、IL-1β及IL-8的表达变化,并利用Western blot检测LC3B、Beclin-1及P62的表达变化以观察巨噬细胞自噬通量变化。为进一步验证炎症抑制与自噬的关系,使用自噬抑制剂3-MA阻断自噬并重新检测了IL-1β及IL-8的表达变化。然后,提取不同条件处理的巨噬细胞上清液制备条件培养基作用于人牙髓干细胞,采用碱性磷酸酶(ALP)染色、茜素红(ARS)染色、RT-PCR及Western blot分析炎症环境下黄芩苷对牙髓干细胞成牙/成骨分化能力的影响。 结果:早期牙髓炎组织炎症区周围IL-1β的表达明显升高。LPS和IFN-γ诱导THP-1后,THP-1巨噬细胞由M0向M1向极化,INOS、IL-1β及IL-8表达明显增加。当加入50μM的黄芩苷共同孵育24h后,巨噬细胞M1向极化程度明显降低,IL-1β、IL-8的mRNA水平明显下降,而IL-6的表达水平较M1组无统计学差异。提取M1巨噬细胞的上清液加入hDPSCs并进行矿化诱导7~21d后,hDPSCs的碱性磷酸酶活性减低,钙盐沉积明显减少,ALP、DSPP、RUNX2、OPN及COL-1的表达明显降低。当加入BA处理后的M1巨噬细胞上清液时,hDPSCs碱性磷酸酶活性显著增加,钙盐沉积明显增多,ALP、DSPP、RUNX2、OPN及COL-1的表达明显升高。 结论:在炎症微环境下,BA可能是通过激活细胞自噬抑制牙髓炎症反应,促进hDPSCs的成牙/骨能力,为牙髓炎的活髓保存治疗提供参考。

    Abstract:

    Objective: This study aims to verify the anti-inflammatory effect of baicalin in an inflammatory environment and explore its influence on the odontogenic/osteogenic differentiation of human dental pulp stem cells (hDPSCs), providing a reference for the treatment of pulpitis. Methods: Select early inflammatory dental pulp tissue from humans to make frozen sections and perform HE staining and IL-1β immunohistochemical staining. Human monocyte leukemia cells (THP-1) were differentiated into macrophages and polarized to the M1 subtype under the induction of lipopolysaccharide (LPS) and interferon-γ (IFN-γ). Then, baicalin (50 μM) was used for treatment. The expression levels of INOS, IL-1β, and IL-8 were analyzed using immunofluorescence, real-time quantitative PCR (RT-qPCR), and Western blot. Additionally, the expression changes of LC3B, Beclin-1, and P62 were assessed by Western blot to monitor autophagic flux alterations in macrophages. To further investigate the relationship between inflammation inhibition and autophagy, we employed the autophagy inhibitor 3-MA to block autophagic flux and re-evaluated the expression changes of IL-1β and IL-8. Supernatants from macrophages treated under various conditions were collected, and the conditioned medium was prepared to act on human dental pulp stem cells. The odontogenic/osteogenic differentiation ability of hDPSCs in an inflammatory environment was analyzed by ALP staining, alizarin red (ARS) staining, RT-PCR, and Western blot. Results: The expression of IL-1β around the inflamed area of early pulpitis tissue was significantly increased. After LPS and IFN-γ induced THP-1, THP-1 macrophages polarized from M0 to M1, and the expressions of INOS, IL-1β and IL-8 significantly increased. After co-incubation with 50μM BA for 24 hours, the polarization degree of M1 macrophages significantly decreased, the mRNA levels of IL-1β and IL-8 significantly decreased, while the expression level of IL-6 showed no statistical difference compared with the M1 group. After adding the supernatant of M1 macrophages to hDPSCs and inducing mineralization for 7~21 days, the alkaline phosphatase activity of hDPSCs decreased, the calcium salt deposition significantly reduced, and the expressions of ALP, DSPP, RUNX2, OPN and COL-1 significantly decreased. When adding the supernatant of M1 macrophages treated with BA, the alkaline phosphatase activity of hDPSCs significantly increased, the calcium salt deposition significantly increased, and the expressions of ALP, DSPP, RUNX2, OPN and COL-1 significantly increased. Conclusion: Baicalin can inhibit inflammatory responses by activating autophagy, thereby enabling hDPSCs to function in an inflammatory microenvironment.

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  • 收稿日期:2025-03-03
  • 最后修改日期:2025-04-27
  • 录用日期:2025-06-05
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