莫诺苷通过mTOR/P70S6K通路抑制慢性结肠炎中的上皮-间质转化

Monotropein inhibits epithelial-mesenchymal transition in chronic colitis via the mTOR/P70S6K pathway.

作者信息Yuanfan Chen, Jiaying Liu, Shaowen Zhong, Tianwu Zhang, Jin Yuan, Jing Zhang, Ying Chen, Jian Liang, Yonger Chen, Shaozhen Hou, Haiyang Huang, Jie Gao
PMID40041493
发布时间2025-02-18
DOI10.3389/fphar.2025.1536091

实验完整度

高

包含体内DSS诱导慢性结肠炎小鼠模型和体外TGF-β1诱导IEC-6细胞模型,并进行了分子对接、MD模拟、CETSA、DARTS等靶点验证及功能实验。

主要模型

DSS诱导的慢性结肠炎小鼠模型 TGF-β1诱导的IEC-6细胞模型

重点核对

DSS浓度及给药周期:2%DSS,分三个周期(10天/5天/4天) 莫诺苷给药剂量:0.125 mg/kg、0.5 mg/kg、2 mg/kg,灌胃给药 TGF-β1诱导浓度及时间:10 ng/mL,72小时 莫诺苷体外给药浓度:5、10、20 µM 细胞活力检测浓度范围:最高200 µmol/L

摘要

Introduction: Patients with chronic colitis are at risk of developing intestinal fibrosis through epithelial-mesenchymal transition (EMT). Monotropein (MON) is the main active ingredient in the traditional Chinese medicine Morinda officinalis How. It has been reported that monotropein can improve ulcerative colitis, but the mechanism remains unclear. However, whether monotropein can improve chronic colitis-associated intestinal fibrosis remains unknown. The study aimed to investigate the effect of monotropein on EMT in chronic colitis and its underlying mechanism.Methods: The mice chronic colitis model was induced by dextran sodium sulfate (DSS). Cytokines were detected by ELISA. Concentrations of fluorescein isothiocyanate dextran (FITC-Dextran) in serum were detected using a fluorescein microplate analyzer. Intestinal tight junction proteins were detected by immunofluorescence. EMT marker proteins were detected by immunohistochemistry. Transforming growth factor-β1 (TGF-β1) was used to induce EMT in IEC-6 cells. Western blot, real-time quantitative PCR, and immunofluorescence were used to test the inhibitory effect of monotropein on the development of EMT and explore its mechanism.Results: Results showed that monotropein significantly improved colonic injury and inhibited the expression of colonic tissue EMT marker protein. In addition, molecular docking and molecular dynamics (MD) simulation, cellular thermal shift assay (CETSA), and drug affinity responsive target stability (DARTS) assay validated monotropein targeting of mTOR. Monotropein inhibited TGF-β1-induced EMT in IEC-6 cells, inhibited the phosphorylation of mTOR and its downstream proteins, and increased the autophagy activity in chronic colitis mice and IEC-6 cells.Discussion: The study indicates that monotropein inhibits the development of EMT in DSS-induced chronic colitis mice and TGF-β1-induced IEC-6 cells. Its inhibitory effect on EMT is associated with the mTOR/P70S6K pathway.

实验结论

提炼研究问题、关键发现与证据,快速把握文章的核心贡献。

研究问题
莫诺苷是否能抑制慢性结肠炎中的上皮-间质转化及其潜在机制。
核心机制
莫诺苷通过抑制mTOR/P70S6K信号通路的磷酸化,增强自噬活性,从而抑制上皮-间质转化。
主要证据
莫诺苷在DSS诱导的慢性结肠炎小鼠和TGF-β1诱导的IEC-6细胞中均抑制EMT标志物表达,分子 docking和MD模拟显示其与mTOR强结合,CETSA和DARTS验证了直接结合,并降低p-mTOR/mTOR和p-P70S6K/P70S6K比值。
研究意义
莫诺苷可能成为治疗慢性结肠炎和预防肠道纤维化的潜在药物,为IBD的治疗和预防提供参考。

研究路径

按研究推进顺序梳理实验设计、验证步骤与关键观察。

1

建立慢性结肠炎小鼠模型并给予药物处理

评估莫诺苷对慢性结肠炎小鼠结肠损伤的治疗作用。

使用2%DSS分三周期诱导慢性结肠炎模型,从第二周期开始每日灌胃给予莫诺苷(0.125、0.5、2 mg/kg)或5-ASA(80 mg/kg),共18天。

2

评估结肠炎症和肠道通透性

检测莫诺苷对慢性结肠炎炎症和屏障功能的影响。

检测血清细胞因子TNF-α、IL-6、IL-10水平和FITC-dextran通透性,通过免疫荧光检测紧密连接蛋白occludin和ZO-1表达。

3

评估结肠纤维化和EMT标志物

研究莫诺苷对慢性结肠炎肠道纤维化和EMT的影响。

通过Sirius red和Masson染色评估纤维沉积,免疫组化检测α-SMA蛋白表达。

4

体外建立EMT模型并验证莫诺苷作用

验证莫诺苷在体外对TGF-β1诱导的EMT是否具有抑制作用。

使用TGF-β1诱导IEC-6细胞产生EMT,检测细胞形态、EMT标志物蛋白及mRNA表达,并评估细胞活力。

5

验证莫诺苷与mTOR直接结合

验证莫诺苷是否直接靶向mTOR蛋白。

通过分子对接和MD模拟预测结合模式,并使用CETSA和DARTS实验验证结合稳定性。

6

检测mTOR/P70S6K通路和自噬相关蛋白

探究莫诺苷抑制EMT的分子机制是否涉及mTOR/P70S6K通路和自噬调节。

通过Western blot检测mTOR、p-mTOR、P70S6K、p-P70S6K、4EBP1、p-4EBP1、Beclin1、LC3等蛋白表达,免疫荧光检测E-cadherin和Beclin1共定位。

研究方法

按研究目的归类文中使用的方法,便于定位所需技术。

产品清单

实验环节名称品牌货号
莫诺苷Baoji Herbest Bio-Tech Co., Ltd.5945-50-6
葡聚糖硫酸钠HuicH--
5-氨基水杨酸----
DMEM培养基Gibco--
胎牛血清Gibco--
链霉素和青霉素Gibco--
转化生长因子-β1PeproTech--
细胞计数试剂盒-8GLPBIO--
TNF-α、IL-6、IL-10 ELISA试剂盒Meimian Biotechnology--
FITC-葡聚糖MedChemExpress--
聚偏二氟乙烯膜----
增强化学发光液Millipore--
RNA提取试剂Accurate Biotechnology--
Evo M-MLV逆转录试剂盒Accurate Biotechnology--
SYBR Green qPCR试剂盒Accurate Biotechnology--
CFX96 Touch实时荧光定量PCR仪Bio-Rad--
GAPDH引物Sangon Biotech--
BX53显微镜Olympus--
蔡司共聚焦显微镜Carl Zeiss--
occludin抗体AffinityDF7504
ZO-1抗体AffinityAF5145
E-钙黏蛋白抗体AffinityAF0131
波形蛋白抗体Signalway Antibody33541
α-平滑肌肌动蛋白抗体Proteintech55135-1-AP
mTOR抗体Signalway Antibody41187
磷酸化mTOR抗体Cell Signaling Technology2974P
p70S6K抗体AffinityAF6226
磷酸化p70S6K抗体AffinityAF3228
4EBP1抗体Signalway Antibody33127
磷酸化4EBP1抗体Signalway Antibody11222
Beclin1抗体AffinityAF5128
LC3抗体AffinityAF5402
GAPDH抗体AffinityAF7021
山羊抗兔IgG (H+L) HRP二抗AffinityS0001

关键环节

汇总复现实验时建议重点确认的条件及原文阅读提示。

环节核对要点
慢性结肠炎小鼠模型建立与给药
DSS浓度、给药周期、莫诺苷剂量、给药方式、对照组设置
阅读提示:Methods 2.3 Establishment and treatment of experimental chronic colitis及Figure 1B
细胞EMT模型建立
IEC-6细胞培养条件、TGF-β1浓度和处理时间、莫诺苷浓度、血清浓度
阅读提示:Methods 2.11 Cell culture and treatment
Western blot分析
抗体稀释比例、蛋白上样量、封闭条件、孵育条件
阅读提示:Methods 2.13 Western blot及Table 1
靶点验证实验
分子对接软件及参数、MD模拟时间、pronase比例、温度条件
阅读提示:Methods 2.15-2.17 和Figure 6
统计方法
统计检验方法、显著性水平
阅读提示:Methods 2.18 Statistical analysis