结直肠癌中肠道上皮细胞的胞葬作用调节

Modulating efferocytosis in the intestinal epithelial cells during colorectal cancer.

作者信息Laura Boeckaerts, Tania Løve Aaes, Evi Scheirlinckx, Sze Men Choi, Yunus Incik, Amanda Gonçalves, Tino Hochepied, Lars Vereecke, Kodi S Ravichandran
PMID41878537
发布时间2026-03-09
DOI10.3389/fonc.2026.1740918

实验完整度

包含三种基因工程小鼠模型(BELMOIEC-Tg、Slc12a2IEC-cKO、Slc12a4IEC-cKO)及AOM/DSS和Zeb2自发肿瘤模型,并通过TUNEL、细胞因子检测、内镜和生存分析进行功能与表型验证。

主要模型

AOM/DSS诱导的结肠炎相关结直肠癌小鼠模型 Zeb2驱动的自发性结直肠癌小鼠模型 小鼠肠道上皮细胞系(IncuCyte吞噬实验) Jurkat T细胞(凋亡靶细胞)

重点核对

BELMOIEC-Tg和Cre-negative小鼠在AOM/DSS处理61天后,TUNEL阳性细胞数无显著差异 Slc12a2IEC-cKO小鼠与对照组相比,TUNEL阳性细胞数显著减少 Slc12a4IEC-cKO小鼠与对照组相比,TUNEL阳性细胞数有增加趋势但未达显著 三种转基因小鼠在体重、生存率、粪便评分、内镜评分等疾病参数上均无显著差异 AOM/DSS处理包括单次AOM注射(10 mg/kg)和三轮1.5% DSS饮水处理

摘要

Introduction: Colorectal cancer (CRC) is the thirdmost common cancer and a leading cause of cancer deaths worldwide, with over 1.9 million cases diagnosed in 2022. Due to poor response to classical cancer treatments, CRC is associated with low survival rates. This creates an urgent need for better understanding of CRC pathology. Cell death occurs continuously in solid tumors, and is also induced acutely, during chemotherapy. Dead cells are cleared by phagocytes via 'efferocytosis', an anti-inflammatory process that can lead to immune escape and reduced therapeutic efficacy. We hypothesized that efferocytosis might contribute to tumor development and that manipulating this process could be beneficial for CRC therapy.Materials and Methods: Here, we asked whether known approaches to enhance efferocytosis may alter disease parameters in experimental and genetic CRC mouse models. In the first approach, we chose transgenic expression of a chimeric efferocytosis receptor (BELMOTg) that removes dying cells in an anti-inflammatory manner, and in the second, we chose deleting a chloride transporter (Slc12a2KO) that increases efferocytosis but in a pro-inflammatory fashion.Results: Despite detectable expression of the transgenic proteins, many parameters of CRC including CRC pathogenesis were not significantly altered in mice with BELMO overexpression or Slc12a2 knockout in the intestinal epithelial cells.Discussion: This suggests that these two approaches to clearing apoptotic cells is not sufficient to alter CRC progression. Targeting other phagocytic cell types or using other models of CRC might reveal a role (or otherwise) for efferocytosis in mitigating CRC in the future.

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
调节肠道上皮细胞的胞葬作用是否会影响结直肠癌的发生和进展?
核心机制
增强抗炎性胞葬作用(BELMO表达)或促炎性胞葬作用(Slc12a2缺失)以及抑制胞葬作用(Slc12a4缺失)均不足以改变结直肠癌的疾病进程。
主要证据
在AOM/DSS诱导的结直肠癌模型中,BELMOIEC-Tg、Slc12a2IEC-cKO和Slc12a4IEC-cKO小鼠与各自对照相比,生存率、体重、粪便评分、内镜评分、结肠长度和重量等参数均无显著差异;仅在Zeb2自发模型中观察到BELMO/Zeb2IEC-Tg小鼠结肠重量低于Zeb2IEC-Tg,但内镜评分无差异。
研究意义
研究表明,单独靶向上皮细胞胞葬作用可能不足以改变结直肠癌进展,未来需考虑组合治疗或靶向其他吞噬细胞类型。

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

构建肠道上皮细胞特异性转基因/敲除小鼠模型

评估BELMO过表达、Slc12a2敲除和Slc12a4敲除对肠上皮细胞胞葬作用的影响

通过Villin1-Cre与条件性转基因或敲除小鼠杂交,生成BELMOIEC-Tg、Slc12a2IEC-cKO和Slc12a4IEC-cKO小鼠,并验证转基因表达或基因敲除效率。

2

AOM/DSS诱导结直肠癌模型处理

模拟炎症相关结直肠癌的发生和发展

对8-10周龄小鼠进行单次AOM注射(10 mg/kg),一周后开始三轮1.5% DSS饮水处理,中间间隔2周恢复期,全程61天。

3

检测组织凋亡细胞数量(TUNEL染色)

间接评估体内胞葬作用的效率

对结肠组织切片进行TUNEL染色,计数阳性细胞数,比较不同基因型小鼠的差异。

4

检测炎症细胞因子表达

评估不同基因型小鼠在肿瘤微环境下的炎症状态

通过RT-qPCR和ELISA(或Bio-Plex)检测结肠组织中促炎(Il6、Il1α、Il1β、Infγ、Tnf)和抗炎(Il10、Tgfβ)细胞因子的表达。

5

评估疾病进展(生存、体重、粪便评分、内镜、结肠长度和重量)

比较不同基因型小鼠在结直肠癌模型中的疾病严重程度和进展

监测生存率、体重变化、临床粪便评分(出血和稠度),并进行高分辨率内镜评估MEICS评分,以及测量结肠长度和重量。

6

组织病理学分析(H&E染色)

评估结肠组织的形态学变化和肿瘤发生

对结肠组织切片进行H&E染色,观察组织学特征,如结肠壁增厚、上皮异型增生和隐窝结构丢失。

7

体外吞噬实验验证

验证Slc12a2和Slc12a4敲除对吞噬功能的影响

使用IncuCyte系统监测吞噬细胞对pHrodo标记的凋亡Jurkat T细胞的吞噬效率。

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
氧化偶氮甲烷Santa Cruz BiotechnologySC-358746
葡聚糖硫酸钠MP Biomedical0216011080
Hemocare粪便潜血检测--T3061
Image 1S系统Karl Storz--
一步法TUNEL原位凋亡试剂盒(红色)ElabscienceE-CK-A322
靶标修复液AgilentS169984-2
RNA保存液----
TRIzol----
RNeasy微型试剂盒Qiagen74104
NanoDrop分光光度计Thermo Scientific--
SensiFAST cDNA合成试剂盒--BIO-65054
LightCycler 480系统----
TaqMan探针Applied Biosystems--
Bio-Plex 200系统----
组织研磨机----
pHrodo iFL Red染料----
细胞松弛素D----
IncuCyte ZOOM系统Sartorius--
IncuCyte S3系统Sartorius--

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
转基因/敲除小鼠构建
基因型(BELMOIEC-Tg、Slc12a2IEC-cKO、Slc12a4IEC-cKO)及Cre重组酶表达
阅读提示:Materials and Methods - Animal experiments
AOM/DSS处理
AOM剂量(10 mg/kg)、DSS浓度(1.5%)、处理周期(3轮)和时长(61天)
阅读提示:Materials and Methods - AOM/DSS treatment
TUNEL染色
试剂盒品牌和货号、抗原修复液、孵育时间和温度
阅读提示:Materials and Methods - Histology
细胞因子检测
基因列表(Il6, Il1α, Il1β, Infγ, Tnf, Il10, Tgfβ)、ELISA或Bio-Plex试剂盒
阅读提示:Materials and Methods - RT-qPCR, Cytokine production by colon explants
内镜评分
MEICS评分标准(五个参数,评分0-3)
阅读提示:Materials and Methods - Endoscopic analysis
体外吞噬实验
靶细胞(Jurkat T细胞)凋亡诱导条件(UV-C 150mJ/cm2)、pHrodo浓度(2 μM)、靶/吞噬细胞比例(5:1)
阅读提示:Materials and Methods - Efferocytosis measurements by IncuCyte