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A Novel Class of Antitumor Prodrug 1‐(2′‐Oxopropyl)‐5‐fluorouracil (OFU001) That Releases 5‐Fluorouracil upon Hypoxic Irradiation

机译:一类新型的抗肿瘤前药1-(2-氧丙基)-5-氟尿嘧啶(OFU001)在低氧照射后会释放出5-氟尿嘧啶

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摘要

We have been developing prodrugs of anticancer agents such as 5‐fluorouracil (5‐FU) that are activated by irradiation under hypoxic conditions via one‐electron reduction. Among them, OFU001 [1‐(2′‐oxopropyl)‐5‐fluorouracil] is a prototype radiation‐activated prodrug. In this study, we investigated the radiation chemical reactivity and the biological effects of OFU001. This prodrug is presumed to release 5‐FU through incorporation of hydrated electrons into the antibonding σ* orbital of the C(1′)‐N(1) bond. Hydrated electrons are active species derived from radiolysis of water, but are readily deactivated by O2 into superoxide anion radicals () under conditions of aerobic irradiation. Therefore, 5‐FU release occurs highly specifically upon irradiation under hypoxic conditions. OFU001 dissolved in phosphate buffer released 5‐FU with a G‐value (mol number of molecules that are decomposed or produced by 1 J of absorbed radiation energy) of 1.9×10−7 mol/ J following hypoxic irradiation, while the G‐value for 5‐FU release was 1.0×10−8 mol/J following aerobic irradiation. However, the G‐values for decomposition of OFU001 were almost the same, i.e., 3.4×10−7 mol/J following hypoxic irradiation and 2.5×10−7 mol/J following aerobic irradiation. When hypoxically irradiated (7.5–30 Gy) OFU001 was added to murine SCCVII cells for 1–24 h, a significant cell‐killing effect was observed. The degree of this cytotoxicity was consistent with that of authentic 5‐FU at the corresponding concentrations. On the other hand, cytotoxicity was minimal when the cells were treated with aerobically irradiated or unirradiated OFU001. This compound had no radiosensitizing effect against SCCVII cells under either aerobic or hypoxic conditions when the drug was removed immediately after irradiation. Since hypoxia is generally most marked in tumors and irradiation is applied at the tumor site, this concept of prodrug design appears to be potentially useful for selective tumor treatment with minimal adverse effects of anticancer agents.
机译:我们一直在开发抗癌药的前药,例如5-氟尿嘧啶(5-FU),这些药物在缺氧条件下通过单电子还原被辐射激活。其中,OFU001 [1-(2'-氧丙基)-5-氟尿嘧啶]是辐射激活的前药原型。在这项研究中,我们研究了OFU001的辐射化学反应性和生物学效应。据推测,该前药通过将水合电子结合到C(1')-N(1)键的反键σ*轨道中而释放5-FU。水合电子是源自水辐射分解的活性物质,但在好氧辐照条件下,很容易被O2钝化为超氧阴离子自由基()。因此,5-FU的释放在低氧条件下的辐射下特别发生。溶解于磷酸盐缓冲液中的OFU001在低氧后释放的G-值(由1 J的吸收辐射能分解或产生的分子的摩尔数)释放为1.9×10 −7 mol / J的5-FU有氧照射后5-FU释放的G值是1.0×10 -8 mol / J。但是,OFU001分解的G值几乎相同,即低氧照射后为3.4×10 −7 mol / J和2.5×10 −7 mol / J J有氧照射后。当向小鼠SCCVII细胞中添加低氧辐照(7.5–30 Gy)OFU001 1–24小时时,观察到了显着的细胞杀伤作用。在相应浓度下,这种细胞毒性的程度与真实的5-FU一致。另一方面,当用需氧辐照或未辐照的OFU001处理细胞时,细胞毒性最小。当有氧或低氧条件下照射后立即移出药物时,该化合物对SCCVII细胞没有放射增敏作用。由于缺氧通常在肿瘤中最明显,并且在肿瘤部位施加辐射,因此前药设计的这一概念似乎对选择性肿瘤治疗具有潜在的实用性,而抗癌药的不良反应则最小。

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