TP53 缺失通过上调 NF-κB-IFN-β-MHC-Ia 信号促进骨肉瘤对 NK 细胞的抵抗
TP53 Loss Elevates NF-κB-IFN-β-MHC-Ia Signaling to Promote NK Cell Resistance in Osteosarcoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Stem Cell Growth and Differentiation in Organ Culture: New Insights for Uterine Fibroid Treatment.
Stem Cell Growth and Differentiation in Organ Culture: New Insights for Uterine Fibroid Treatment.
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器官培养有助于理解正常和肿瘤细胞生物学,组织通常可保持活力5-7天。引人注目的是,我们确定子宫肌层和MED12突变型平滑肌瘤细胞在培养20天后可重新填充细胞耗竭的组织切片。使用干细胞和未分化细胞标志物的免疫荧光和定量PCR,我们观察到肿瘤切片中CD49b +细胞簇。
然而,CD49b +细胞在子宫肌层切片中稀疏检测到。几乎所有LM细胞强烈表达Ki67,而只有少数子宫肌层细胞被这种增殖标志物染色。CD73标志物仅在肿瘤细胞中表达,而间充质干细胞受体KIT仅在正常细胞中检测到。HMGA2和CD24在平滑肌瘤中显示出比子宫肌层细胞更广泛的表达模式和更高的信号强度。
在本研究中,我们提出激活子宫肌层中的CD49b +干细胞导致不对称分裂,产生转导扩增的KIT +细胞,这些细胞分化为平滑肌细胞。相反,激活的平滑肌瘤CD49b +细胞对称分裂形成干细胞簇,这些干细胞分裂并分化为平滑肌细胞而不失去增殖能力。
总之,正常和突变干细胞可以在长期器官培养中增殖和分化,构成一个有助于新治疗发现的有用平台。
Organ culture allows for the understanding of normal and tumor cell biology, and tissues generally remain viable for 5-7 days. Strikingly, we determined that myometrial and MED12 mutant leiomyoma cells repopulated cell-depleted tissue slices after 20 days of culture. Using immunofluorescence and quantitative PCR of stem cell and undifferentiated cell markers, we observed clusters of CD49b + cells in tumor slices. CD49b + cells, however, were sparsely detected in the myometrial slices. Almost all LM cells strongly expressed Ki67, while only a few myometrial cells were stained for this proliferation marker.
The CD73 marker was expressed only in tumor cells, whereas the mesenchymal stem cell receptor KIT was detected only in normal cells. HMGA2 and CD24 showed broader expression patterns and higher signal intensity in leiomyoma than in myometrial cells.
In this study, we propose that activating CD49b + stem cells in myometrium leads to asymmetrical division, giving rise to transit-amplifying KIT + cells that differentiate to smooth muscle cells. On the contrary, activated leiomyoma CD49b + cells symmetrically divide to form clusters of stem cells that divide and differentiate to smooth muscle cells without losing proliferation ability.
In conclusion, normal and mutant stem cells can proliferate and differentiate in long-term organ culture, constituting a helpful platform for novel therapeutic discovery.
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