首页> 美国卫生研究院文献>Molecular Pain >Seeding of breast cancer cell line (MDA-MB-231LUC+) to the mandible induces overexpression of substance P and CGRP throughout the trigeminal ganglion and widespread peripheral sensory neuropathy throughout all three of its divisions
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Seeding of breast cancer cell line (MDA-MB-231LUC+) to the mandible induces overexpression of substance P and CGRP throughout the trigeminal ganglion and widespread peripheral sensory neuropathy throughout all three of its divisions

机译:将乳腺癌细胞系(MDA-MB-231Luc +)播种到下颌骨诱导物质P和CGRP的过表达在整个三叉神经节中的整个三际神经节和广泛的外周感觉神经病变

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摘要

Some types of cancer are commonly associated with intense pain even at the early stages of the disease. The mandible is particularly vulnerable to metastasis from breast cancer, and this process has been studied using a bioluminescent human breast cancer cell line (MDA-MB-231LUC+). Using this cell line and anatomic and neurophysiologic methods in the trigeminal ganglion (TG), we examined the impact of cancer seeding in the mandible on behavioral evidence of hypersensitivity and on trigeminal sensory neurons. Growth of cancer cells seeded to the mandible after arterial injection of the breast cancer cell line in Foxn1 animals (allogeneic model) induced behavioral hypersensitivity to mechanical stimulation of the whisker pad and desensitization of tactile and sensitization of nociceptive mechanically sensitive afferents. These changes were not restricted to the site of metastasis but extended to sensory afferents in all three divisions of the TG, accompanied by widespread overexpression of substance P and CGRP in neurons through the ganglion. Subcutaneous injection of supernatant from the MDA-MB-231LUC+ cell culture in normal animals mimicked some of the changes in mechanically responsive afferents observed with mandibular metastasis. We conclude that released products from these cancer cells in the mandible are critical for the development of cancer-induced pain and that the overall response of the system greatly surpasses these local effects, consistent with the widespread distribution of pain in patients. The mechanisms of neuronal plasticity likely occur in the TG itself and are not restricted to afferents exposed to the metastatic cancer microenvironment.
机译:即使在疾病的早期阶段,某些类型的癌症也与强烈疼痛有关。下颌骨特别容易受到乳腺癌转移的影响,并使用生物发光人乳腺癌细胞系(MDA-MB-231LUC +)研究了该方法。使用这种细胞系和解剖学和神经生理方法在三叉神经节(TG)中,我们检查了癌症种子在短敏感性和三叉子感觉神经元的行为证据中的影响。癌细胞的生长在毛细血管注射乳腺癌细胞(同种异体模型)诱导的行为超敏反应后,癌细胞的生长诱导刺激晶须垫的机械刺激和触觉的抗敏感和抗触发机械敏感性传统的敏化。这些变化不限于转移部位,但在TG的所有三个分裂中延伸到感觉传入,伴随着通过神经节的神经元的物质P和CGRP广泛表达。从MDA-MB-231Luc +细胞培养物中的皮下注射正常动物的细胞培养物模仿了用下颌转移观察到的机械响应交感器的一些变化。我们得出结论,从这些癌细胞中释放出颌骨中的产品对于癌症诱导的疼痛的发展至关重要,并且系统的整体反应极大地超越了这些局部效应,与患者疼痛的广泛分布一致。神经元塑性的机制可能在TG本身中发生,并且不限于暴露于转移性癌细胞的传入。

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