Lee Yeonhong, Jang Eun Jeong, Yoon Ha-Young, Yee Jeong, Gwak Hye-Sun
College of Pharmacy and Graduate School of Pharmaceutical Sciences, Ewha Womans University, Seoul 03760, Korea.
Department of Pharmacy, National Cancer Center, Goyang-si 10408, Korea.
Pharmaceuticals (Basel). 2022 Mar 29;15(4):416. doi: 10.3390/ph15040416.
6-Mercaptopurine (6-MP) is a cornerstone of the maintenance regimen for pediatric acute lymphoblastic leukemia (ALL). Inosine triphosphate pyrophosphatase (ITPA) is considered a candidate pharmacogenetic marker that may affect metabolism and 6-MP-induced toxicities; however, the findings are inconsistent. Therefore, we attempted to evaluate the effect of ITPA 94C>A polymorphism on 6-MP-induced hematological toxicity and hepatotoxicity through a systematic review and meta-analysis. A literature search for qualifying studies was conducted using the PubMed, Web of Science, and Embase databases until October 2021. Overall, 10 eligible studies with 1072 pediatric ALL patients were included in this meta-analysis. The results indicated that ITPA 94C>A was significantly associated with 6-MP-induced neutropenia (OR 2.38, 95% CI: 1.56−3.62; p = 0.005) and hepatotoxicity (OR 1.98, 95% CI: 1.32−2.95; p = 0.0009); however, no significant association was found between the ITPA 94C>A variant and 6-MP-induced leukopenia (OR 1.75, 95% CI: 0.74−4.12; p = 0.20). This meta-analysis demonstrated that ITPA 94C>A polymorphism could affect 6-MP-induced toxicities. Our findings suggested that ITPA genotyping might help predict 6-MP-induced myelosuppression and hepatotoxicity.
6-巯基嘌呤(6-MP)是儿童急性淋巴细胞白血病(ALL)维持治疗方案的基石。肌苷三磷酸焦磷酸酶(ITPA)被认为是一种可能影响6-MP代谢及毒性的药物遗传学标志物;然而,研究结果并不一致。因此,我们试图通过系统评价和荟萃分析来评估ITPA 94C>A多态性对6-MP所致血液学毒性和肝毒性的影响。使用PubMed、Web of Science和Embase数据库对符合条件的研究进行文献检索,检索截至2021年10月。总体而言,本荟萃分析纳入了10项符合条件的研究,共1072例儿童ALL患者。结果表明,ITPA 94C>A与6-MP所致中性粒细胞减少(OR 2.38,95%CI:1.56−3.62;p = 0.005)和肝毒性(OR 1.98,95%CI:1.32−2.95;p = 0.0009)显著相关;然而,未发现ITPA 94C>A变异与6-MP所致白细胞减少之间存在显著关联(OR 1.75,95%CI:0.74−4.12;p = 0.20)。本荟萃分析表明,ITPA 94C>A多态性可能影响6-MP所致毒性。我们的研究结果提示,ITPA基因分型可能有助于预测6-MP所致的骨髓抑制和肝毒性。