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中国癌症防治杂志 ›› 2025, Vol. 17 ›› Issue (2): 150-156.doi: 10.3969/j.issn.1674-5671.2025.02.04

• 论著 • 上一篇    下一篇

小鼠输卵管上皮类器官的培养与基因编辑

  

  1. 四川大学华西第二医院妇产科,出生缺陷与相关妇儿疾病教育部重点实验室;发育与妇儿疾病四川省重点实验室;四川大学华西第二医院,西部妇幼研究院;4.四川大学华西医院精准药物研究室
  • 出版日期:2025-04-25 发布日期:2025-05-15
  • 通讯作者: 陈婧瑶 E-mail: jingyaochen@163.com; 周圣涛 E-mail:shengtaozhou@scu.edu.cn
  • 基金资助:
    国家重点研发计划(2022YFA1106600)

Cultivation and gene editing of mouse oviductal epithelial organoids

  • Online:2025-04-25 Published:2025-05-15

摘要: 目的 构建Cas9⁃EGFP小鼠来源的输卵管上皮类器官,并进行基因编辑。方法 利用酶消化法获得Cas9⁃EGFP小鼠输卵管上皮细胞,配制类器官专用培养基进行培养;连续拍照观察类器官生长速度和生长大小;荧光显微镜观察Cas9⁃EGFP的表达;免疫荧光染色鉴定该类器官是否为生殖系统来源以及检测其纤毛细胞标志物的表达情况;携带Trp53慢病毒感染Cas9⁃EGFP小鼠输卵管上皮类器官,并利用T7E1酶切检测编辑效率。结果 通过小鼠腹中线切口暴露腹腔,盘曲的输卵管位于子宫末端与卵巢之间。Cas9⁃EGFP小鼠输卵管上皮类器官在培养第2天即可组装为囊性类器官,第7天直径可达400 μm,且稳定表达Cas9蛋白。通过免疫荧光检测,该类器官来源于雌性小鼠生殖系统,并且表达纤毛细胞标志物。用携带sgTrp53的慢病毒感染该类器官后,Trp53在编辑后类器官中mRNA表达量较未编辑类器官显著降低(P=0.021)。结论 利用Cas9⁃EGFP小鼠的输卵管上皮细胞成功构建了输卵管上皮类器官,并通过CRISPR⁃Cas9系统实现了基因编辑。

关键词:  , 输卵管;类器官;基因编辑 ,

Abstract: Objective To establish oviductal epithelial organoids derived from Cas9⁃EGFP mice and perform gene editing. Methods Oviductal epithelial cells were isolated from Cas9⁃EGFP mice via enzymatic digestion and cultured in organoid⁃specific medium. The proliferation rates and size progression of organoids were monitored via continuous imaging. Cas9⁃EGFP expression was observed using fluorescence microscopy. Immunofluorescence staining was performed to confirm the origin of reproductive system and assess the expression of ciliated cell markers. Lentivirus carrying sgTrp53 was used to infect Cas9⁃EGFP mice oviductal epithelial organoids, with editing efficiency was validated by T7E1 assay. Results The abdominal cavity of mice was accessed through a midline incision, revealing coiled oviducts located between the uterine horns and ovaries. Oviductal epithelial organoids derived from Cas9⁃EGFP mice assembled into cystic structures by day 2 of culture, reaching diameters of 400 μm by day 7, with stable Cas9 protein expression. Immunofluorescence confirmed their origin from the female murine reproductive system, and expression of ciliated cell markers. Following lentiviral transduction with sgTrp53, Trp53 mRNA expression was significantly reduced in edited organoids compared to unedited controls (P=0.021). Conclusions Oviductal epithelial organoids are successfully established from Cas9⁃EGFP mice, and CRISPR⁃Cas9⁃mediated gene editing was achieved in this model system.

Key words: Oviducts, Organoids, Gene editing

中图分类号: 

  • R73?35+1