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首页> 外文期刊>Expert opinion on therapeutic targets >Targeting sphingolipid metabolism in head and neck cancer: rational therapeutic potentials.
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Targeting sphingolipid metabolism in head and neck cancer: rational therapeutic potentials.

机译:针对头颈部癌症中的鞘脂代谢:合理的治疗潜力。

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摘要

IMPORTANCE OF THE FIELD: Ceramide accumulation has been shown to be a conserved mechanism of apoptosis initiation in normal physiological processes as well as in response to cancer treatments. Therefore, it is unsurprising that many cancers develop aberrations of sphingolipid metabolism that prevent the accumulation of ceramide, whether by reduction of ceramide generation or by enhanced ceramide catabolism, particularly dangerous when catabolism leads to generation of pro-tumor sphingosine-1-phosphate and ceramide-1-phosphate. Numerous studies have now implicated dysregulation of sphingolipid metabolism in head and neck cancers. AREAS COVERED IN THIS REVIEW: This review highlights the importance of sphingolipid metabolism and brings sphingolipid metabolism to the forefront in the investigation of novel therapies for head and neck cancer. It reviews sphingolipid-centric therapies under investigation in preclinical and clinical trials of cancers of the head and neck. WHAT THE READER WILL GAIN: The roles of sphingolipids and sphingolipid metabolism in cancer are reviewed and the reader will be brought up to date with discoveries in the field of sphingolipid metabolism in head and neck cancer. TAKE HOME MESSAGE: As treatments for head and neck cancers are currently limited, the potential of targeting sphingolipid metabolism should be taken into consideration as we seek novel ways to combat this group of tumors.
机译:领域的重要性:神经酰胺的积累已被证明是正常生理过程以及对癌症治疗的反应中凋亡启动的保守机制。因此,不足为奇的是,许多癌症会产生鞘脂代谢异常,从而阻止神经酰胺的积累,无论是通过减少神经酰胺的产生,还是通过增强神经酰胺的分解代谢,特别是当分解代谢导致肿瘤前体-1磷酸鞘氨醇和神经酰胺的生成时,这特别危险。 -1-磷酸。现在,许多研究都暗示头颈癌中鞘脂代谢的失调。这篇综述涵盖的领域:这篇综述强调了鞘脂代谢的重要性,并将鞘脂代谢带入了头颈癌新疗法的研究前沿。它审查了以鞘脂为中心的疗法,这些疗法正在头颈癌的临床前和临床试验中进行研究。读者的收获:鞘脂和鞘脂代谢在癌症中的作用得到了综述,读者将了解到头颈癌鞘脂代谢领域的最新知识。温馨提示:由于目前头颈癌的治疗方法很有限,因此在我们寻找新方法来对抗这类肿瘤时,应考虑靶向鞘脂代谢的潜力。

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