[Animal Model Establishment and Its Mechanism of Cytarabine-Iduced Myelosuppression].

Ya-Ling Li, Wei Chu, Jun-Jie Li, Juan-Juan Dong, Gao-Qin Li, Xiao-Jie Jin, Juan Yao, Yong-Qi Liu
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Abstract

Objective: To establish an optimized model of bone marrow suppression induced by cytarabine (Ara-C) in C57BL/6 mice and preliminarily explore the mechanism of myelosuppression based on the cycle and apoptosis of BMNC.

Methods: C57BL/6 mice were intraperitoneally injected with Ara-C 50, 100 and 200 mg/kg for 7 days, respectively. The survival rate and body weight of C57BL/6 mice were monitored. The number of peripheral blood cells and bone marrow nucleated cells (BMNC) was detected, and the morphology of bone marrow, thymus and spleen were measured on the 7th, 14th and 21st day of the experiment. The cycle and apoptosis of BMNC were also detected by flow cytometry.

Results: Ara-C 200 mg/kg caused 46.7% mortality in mice, and other doses had no significant effect on mortality. All doses of Ara-C induced bone marrow suppression in mice, as shown by a decrease in the number of peripheral blood cells (WBC, Neu, RBC, PLT) and BMNC (P<0.05), decrease in bone marrow hyperplasia, accompanied by immunosuppression and compensatory hematopoiesis of the spleen, and the above manifestations and duration were dose-dependent. Among them, the myelosuppression caused by Ara-C 50 mg/kg recovered quickly, and caused by Ara-C 200 mg/kg was too severe. The result of flow cytometry showed that Ara-C could cause S and G2/m arrest and increased apoptosis in BMNC.

Conclusion: Ara-C can induce myelosuppression in mice with a dose-dependent severity and duration, and the model of myelosuppression with Ara-C 100 mg/kg is more optimized. The mechanism is related to the inhibition of BMNC proliferation and the promotion of apoptosis.

[阿糖胞苷诱导骨髓抑制的动物模型建立及其机制]。
目的:建立阿糖胞苷(Ara-C)诱导C57BL/6小鼠骨髓抑制的优化模型,初步探讨基于BMNC周期和凋亡的骨髓抑制机制。方法:C57BL/6小鼠腹腔注射Ara-C 50、100、200 mg/kg,持续7 d。监测C57BL/6小鼠的存活率和体重。实验第7、14、21天检测大鼠外周血细胞和骨髓有核细胞(BMNC)数量,测定骨髓、胸腺和脾脏形态。流式细胞术检测细胞周期及凋亡情况。结果:Ara-C 200 mg/kg小鼠死亡率为46.7%,其他剂量对小鼠死亡率无显著影响。所有剂量的Ara-C均诱导小鼠骨髓抑制,表现为外周血细胞(WBC、Neu、RBC、PLT)和BMNC (P2/m阻滞)数量减少,BMNC细胞凋亡增加。结论:Ara-C可诱导小鼠骨髓抑制,且抑制程度和持续时间呈剂量依赖性,以100 mg/kg Ara-C的骨髓抑制模型为最佳。其机制与抑制BMNC增殖、促进细胞凋亡有关。
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