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Optimized Animal Model of Cyclophosphamide-induced Bone Marrow Suppression

机译:环磷酰胺诱导的骨髓抑制的优化动物模型

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摘要

Myelosuppression is one of the serious side effects of anticancer chemotherapeutic drugs that deteriorate the bodily functions of patients, thereby affecting the quality of life considerably. Prevention of myelosuppression in anticancer chemotherapy is an important research topic. A stabilized chemotherapy-induced myelosuppression animal model is necessary in experimental research. This study aimed to establish an optimized animal model of chemotherapy-induced bone marrow suppression. After C57BL/6 mice were treated with intermediate- and high-dose (25/50 mg/kg) cyclophosphamide (CTX) for 10 days, the body-weight, changes in thymus and spleen, number of white blood cells (WBCs), red blood cells (RBCs), and platelets (PLTs) and changes in bone marrow in the mice were systematically evaluated at the next 2, 7 and 14 days. Our results demonstrated that CTX treatments could significantly decrease the body-weight of mice, as well as the ratios of the weights of thymus and spleen to body-weight. The physiological structures of thymus and spleen were destroyed by CTX treatments. The number of WBCs and RBCs significantly declined after CTX treatments; however, the number of PLTs increased. Moreover, the expression of Sca1 in bone marrow cells decreased on Day 2 but increased on Day 14. The expression of CD34 decreased in bone marrow cells after CTX treatments. In conclusion, mice models, with high-dose CTX treatments for 10 days, can be an optimized animal model for chemotherapy-induced bone marrow suppression.
机译:骨髓抑制是抗癌化学治疗药物的严重副作用之一,它会恶化患者的身体功能,从而极大地影响生活质量。在抗癌化疗中预防骨髓抑制是一个重要的研究课题。在实验研究中,需要稳定的化疗诱导的骨髓抑制动物模型。这项研究旨在建立优化的化学疗法诱导的骨髓抑制动物模型。用中剂量和高剂量(25/50 mg / kg)环磷酰胺(CTX)处理C57BL / 6小鼠10天后,体重,胸腺和脾脏变化,白细胞(WBC)数量,在接下来的第2、7和14天系统地评估了小鼠的红细胞(RBC)和血小板(PLT)以及骨髓的变化。我们的结果表明,CTX处理可以显着降低小鼠的体重,以及胸腺和脾脏的重量与体重的比率。 CTX处理破坏了胸腺和脾脏的生理结构。 CTX治疗后,白细胞和红细胞的数量明显减少;但是,PLT的数量有所增加。此外,Sca1在骨髓细胞中的表达在第2天下降但在第14天上升。CTX处理后,CD34在骨髓细胞中的表达下降。总之,高剂量CTX治疗10天的小鼠模型可以成为化学疗法诱导的骨髓抑制的优化动物模型。

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