淋巴管栓塞引发肿瘤休眠

Q2 Medicine Oncotarget Pub Date : 2024-10-11 DOI:10.18632/oncotarget.28658
Yin Ye, Justin Wang, Michael G Izban, Billy R Ballard, Sanford H Barsky
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引用次数: 0

摘要

癌症休眠后复发仍然是癌症生物学中的一个谜。由于局部和全身性复发都被认为源于休眠微转移,而休眠微转移起源于淋巴管肿瘤栓子,因此我们想知道休眠过程是否可能在淋巴管栓子中开始。本研究将利用炎症性乳腺癌(Mary-X)患者衍生异种移植物(PDX)进行的实验研究与利用人类乳腺癌组织微阵列(TMA)进行的观察研究相结合,前者可在体外自发形成球体,后者可在体内形成出芽的淋巴管肿瘤栓子。在实验研究中,Mary-X 在体内形成淋巴管瘤栓和体外形成球状体的过程中都表现出增殖减少、G0/G1 细胞周期停滞和 mTOR 信号转导减少。这种休眠诱导需要钙蛋白酶介导的E-cadherin蛋白水解,并由P13K信号的减少介导,导致mTOR活性降低。在对人类乳腺癌的观察研究中,由于 E-cad/NTF-1 增加,E-cadherin 免疫反应性增加,但 Ki-67 和 mTOR 活性均降低,这在淋巴管肿瘤栓子中是有选择性和差异性的。我们的实验和观察研究都表明,体内淋巴管瘤栓及其体外球状体等同物通过这些途径启动休眠。
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Initiation of tumor dormancy by the lymphovascular embolus.

Cancer dormancy followed by recurrence remains an enigma in cancer biology. Since both local and systemic recurrences are thought to emanate from dormant micrometastasis which take origin from lymphovascular tumor emboli we wondered whether the process of dormancy might initiate within lymphovascular emboli. This study combines experimental studies with a patient-derived xenograft (PDX) of inflammatory breast cancer (Mary-X) that spontaneously forms spheroids in vitro and budding lymphovascular tumor emboli in vivo with observational studies utilizing tissue microarrays (TMAs) of human breast cancers. In the experimental studies, Mary-X during both lymphovascular emboli formation in vivo and spheroidgenesis in vitro exhibited decreased proliferation, a G0/G1 cell cycle arrest and decreased mTOR signaling. This induction of dormancy required calpain-mediated E-cadherin proteolysis and was mediated by decreased P13K signaling, resulting in decreased mTOR activity. In observational human breast cancer studies, increased E-cadherin immunoreactivity due to increased E-cad/NTF-1 but both decreased Ki-67 and mTOR activity was observed selectively and differentially within the lymphovascular tumor emboli. Both our experimental as well as observational studies indicate that in vivo lymphovascular tumor emboli and their in vitro spheroid equivalent initiate dormancy through these pathways.

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来源期刊
Oncotarget
Oncotarget Oncogenes-CELL BIOLOGY
CiteScore
6.60
自引率
0.00%
发文量
129
审稿时长
1.5 months
期刊介绍: Information not localized
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