The Impact of Sunitinib N-oxide as a Photodegradation Product of Sunitinib

M. Takenaka, Yuta Takahashi, H. Yashima, T. Araki, Koujirou Yamamoto
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引用次数: 1

Abstract

During treatment with sunitinib, dosage adjustment according to the monitored blood concentration of sunitinib and SU12662 is considered useful. On the other hand, the appearance of hand-foot skin reaction (HFSR) cannot be explained by blood sunitinib concentration alone. Although light exposure greatly affects skin disorders associated with medication use, the photodegradation of sunitinib has not been studied in detail. Here, we investigated the photodegradation products of sunitinib using LC-MS and examined cytotoxic activities using an MTT assay. N-desethyl sunitinib and sunitinib N-oxide were identified as photodegradation products, and their concentrations increased under irradiation in a time-dependent manner. Although the IC50 value of N-desethyl sunitinib in the HEK 293 cell line (11.6 µmol/L) was similar to that of sunitinib (8.6 µmol/L), the IC50 value of sunitinib N-oxide (121.9 µmol/L) was over 10 times higher than that of sunitinib. In addition, N-desethyl sunitinib and sunitinib N-oxide were found in blood obtained from a patient taking sunitinib (24.7 and 2.3 ng/mL, respectively). Because the appearance of adverse drug reactions associated with sunitinib can be reduced by using α-tocopherol nicotinate, which has a strong antioxidant effect, we believe that sunitinib N-oxide might strongly promote the development of HFSR.Keyword : sunitinib, sunitinib N-oxide, photodegradation product, light
舒尼替尼n -氧化物作为舒尼替尼光降解产物的影响
在舒尼替尼治疗期间,根据监测的舒尼替尼和SU12662血药浓度调整剂量被认为是有用的。另一方面,手足皮肤反应(HFSR)的出现不能仅用血液舒尼替尼浓度来解释。虽然光照对与用药相关的皮肤疾病有很大影响,但舒尼替尼的光降解尚未得到详细研究。在这里,我们使用LC-MS研究了舒尼替尼的光降解产物,并使用MTT检测了细胞毒性活性。n -去乙基舒尼替尼和n -氧化物舒尼替尼被确定为光降解产物,其浓度在照射下呈时间依赖性增加。虽然n -去乙基舒尼替尼在HEK 293细胞系中的IC50值(11.6µmol/L)与舒尼替尼的IC50值(8.6µmol/L)相似,但舒尼替尼n -氧化物的IC50值(121.9µmol/L)比舒尼替尼高10倍以上。此外,在服用舒尼替尼患者的血液中发现n -去乙基舒尼替尼和舒尼替尼n -氧化物(分别为24.7和2.3 ng/mL)。由于使用具有较强抗氧化作用的α-生育酚烟酸盐可以减少舒尼替尼相关药物不良反应的出现,我们认为舒尼替尼n -氧化物可能强烈促进HFSR的发展。关键词:舒尼替尼,舒尼替尼n -氧化物,光降解产物,光
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