Key Laboratory of Beijing for Identification and Safety Evaluation of Chinese Medicine, Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing 100700, China.
Int J Mol Sci. 2019 Oct 9;20(20):4988. doi: 10.3390/ijms20204988.
A high incidence of hypersensitivity reactions (HSRs) largely limits the use of paclitaxel injection. Currently, these reactions are considered to be mediated by histamine release and complement activation. However, the evidence is insufficient and the molecular mechanism involved in paclitaxel injection-induced HSRs is still incompletely understood. In this study, a mice model mimicking vascular hyperpermeability was applied. The vascular leakage induced merely by excipients (polyoxyl 35 castor oil) was equivalent to the reactions evoked by paclitaxel injection under the same conditions. Treatment with paclitaxel injection could cause rapid histamine release. The vascular exudation was dramatically inhibited by pretreatment with a histamine antagonist. No significant change in paclitaxel injection-induced HSRs was observed in complement-deficient and complement-depleted mice. The RhoA/ROCK signaling pathway was activated by paclitaxel injection. Moreover, the ROCK inhibitor showed a protective effect on vascular leakage in the ears and on inflammation in the lungs. In conclusion, this study provided a suitable mice model for investigating the HSRs characterized by vascular hyperpermeability and confirmed the main sensitization of excipients in paclitaxel injection. Histamine release and RhoA/ROCK pathway activation, rather than complement activation, played an important role in paclitaxel injection-induced HSRs. Furthermore, the ROCK inhibitor may provide a potential preventive approach for paclitaxel injection side effects.
紫杉醇注射液过敏反应(HSR)发生率高,在很大程度上限制了其应用。目前认为这些反应是由组胺释放和补体激活介导的。然而,证据并不充分,紫杉醇注射液引起的 HSRs 的分子机制仍不完全清楚。在本研究中,应用了一种模拟血管高通透性的小鼠模型。在相同条件下,辅料(聚氧乙烯 35 蓖麻油)引起的血管渗漏与紫杉醇注射液引起的反应相当。紫杉醇注射液治疗可引起组胺迅速释放。组胺拮抗剂预处理可显著抑制血管渗出。在补体缺陷和补体耗尽的小鼠中,紫杉醇注射液引起的 HSRs 没有明显变化。RhoA/ROCK 信号通路被紫杉醇注射液激活。此外,ROCK 抑制剂对耳部血管渗漏和肺部炎症具有保护作用。综上所述,本研究提供了一种合适的小鼠模型,用于研究以血管通透性增加为特征的 HSRs,并证实了辅料在紫杉醇注射液中的主要致敏作用。组胺释放和 RhoA/ROCK 通路激活,而不是补体激活,在紫杉醇注射液引起的 HSRs 中起重要作用。此外,ROCK 抑制剂可能为预防紫杉醇注射液的副作用提供一种潜在的方法。