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在光动力治疗/诊断中,经氨基酮戊酸给药后导致癌细胞中特定原卟啉 IX 积聚的关键转运体。

Key transporters leading to specific protoporphyrin IX accumulation in cancer cell following administration of aminolevulinic acid in photodynamic therapy/diagnosis.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, 4259 B47, Nagatsuta-cho, Midori-ku, Yokohama, 226-8501, Japan.

Center for Photodynamic Medicine, Kochi Medical School, Kohasu, Oko-cho, Nankoku-shi, Kochi, 783-8505, Japan.

出版信息

Int J Clin Oncol. 2021 Jan;26(1):26-33. doi: 10.1007/s10147-020-01766-y. Epub 2020 Sep 1.

Abstract

The administration of aminolevulinic acid allow the formation and accumulation of protoporphyrin IX specifically in cancer cells, which then lead to photocytotoxicity following light irradiation. This compound, when accumulated at high levels, could also be used in cancer diagnosis as it would emit red fluorescence when being light irradiated. The concentration of protoporphyrin IX is pivotal in ensuring the effectiveness of the therapy. Studies have been carried out and showed the importance of various transporters in regulating the amount of these substrates by controlling the transport of various related metabolites in and out of the cell. There are many transporters involved and their expression levels are dependent on various factors, such as oxygen availability and iron ions. It is also important to note that these transporters may also have different expression levels depending on their organ. Understanding the mechanisms and the roles of these transporters are essential to ensure maximum accumulation of protoporphyrin IX, leading to higher efficiency in photodynamic therapy/diagnosis. In this review, we would like to discuss the roles of various transporters in protoporphyrin IX accumulation and how their involvement directly affect cancerous microenvironment.

摘要

氨基酮戊酸的给药使原卟啉 IX 能够在癌细胞中特异性地形成和积累,随后在光照射下导致光细胞毒性。当这种化合物积累到高水平时,也可用于癌症诊断,因为它在受到光照射时会发出红色荧光。原卟啉 IX 的浓度对确保治疗效果至关重要。已经进行了研究,并表明各种转运蛋白在通过控制各种相关代谢物进出细胞的运输来调节这些底物的量方面的重要性。涉及许多转运蛋白,其表达水平取决于多种因素,例如氧气供应和铁离子。还需要注意的是,这些转运蛋白的表达水平也可能因器官而异。了解这些转运蛋白的机制和作用对于确保原卟啉 IX 的最大积累、提高光动力治疗/诊断的效率至关重要。在这篇综述中,我们将讨论各种转运蛋白在原卟啉 IX 积累中的作用,以及它们的参与如何直接影响癌性微环境。

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