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首页> 外文期刊>Future oncology >Biomechanical effects of microbubbles: from radiosensitization to cell death
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Biomechanical effects of microbubbles: from radiosensitization to cell death

机译:微泡的生物力学效应:从放射致敏到细胞死亡

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摘要

Ultrasound-stimulated microbubbles have been demonstrated to mechanically perturb cell membranes, resulting in the activation of biological signaling pathways that significantly enhance the effects of radiation. The underlying mechanism involves augmented ceramide production following both microbubble stimulation and irradiation, leading to rapid and extensive endothelial apoptosis and tumor cell death as a result of vascular collapse. Endothelial cells are particularly sensitive to ceramide-induced cell death due to an enriched presence of sphingomyelinase in their membranes. In tumors, this consequent rapid vascular shutdown translates to an overall increase in tumor responses to radiation treatments. This review summarizes the groundwork behind endothelial-based radiation enhancement with ultrasound-stimulated microbubbles, and presents ongoing research on the use of microbubbles as therapeutic agents in cancer therapy.
机译:超声刺激的微泡已被证明会机械扰动细胞膜,从而激活生物信号通路,从而显着增强辐射作用。潜在的机制涉及在微泡刺激和照射后神经酰胺的产生增加,由于血管萎陷而导致快速和广泛的内皮细胞凋亡和肿瘤细胞死亡。内皮细胞对神经酰胺诱导的细胞死亡特别敏感,因为它们的膜中富含鞘磷脂酶。在肿瘤中,随之而来的快速血管关闭转化为肿瘤对放射治疗的整体反应的增加。这篇综述总结了超声刺激的微泡增强基于内皮的辐射的基础,并提出了将微泡用作癌症治疗中治疗剂的正在进行的研究。

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