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Effects of the in vivo Administration of Recombinant Human Granulocyte Colony‐stimulating Factor Following Cytotoxic Chemotherapy on Granulocytic Precursors in Patients with Malignant Lymphoma

机译:细胞毒性化疗后体内重组人粒细胞集落刺激因子的给药对恶性淋巴瘤患者粒细胞前体的影响

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摘要

We examined the effects of the in vivo administration of recombinant granulocytc colony‐stimulating factor (rhG‐CSF) on granulocytic precursors in the bone marrow of 4 patients with malignant lymphoma who received chemotherapy. Patients were treated with rhG‐CSF at doses of 100–800 μg/ m2/day intravenously for 14 days only in the first course of chemotherapy (G‐CSF course) followed by the second course of chemotherapy without rhG‐CSF which was used as a control course. In the G‐CSF course, white blood cell counts (WBCs) demonstrated a biphasic response consisting of a first peak observed within a few days after the initiation of rhG‐CSF administration, and a second peak observed on the last day of rhG‐CSF injection or the day after. In the second peak, the incidence of granulocyte‐macrophage colony‐forming units (CFU‐GM) in mononucleated bone marrow cells did not change significantly after treatment with rhG‐CSF as compared with a control. However, since the number of nucleated cells in the bone marrow increased, the absolute number of CFU‐GM in the bone marrow increased. The number of mature and immature granulocytes in the bone marrow increased. These findings suggest that G‐CSF stimulates the proliferation and differentiation of granulocytic precursors in the bone marrow in granulocytopenic patients who received cytotoxic drugs and causes mature granulocytes to be released from the bone marrow.
机译:我们检查了体内给予重组粒细胞集落刺激因子(rhG-CSF)对4例接受化疗的恶性淋巴瘤患者骨髓中粒细胞前体的影响。仅在化疗的第一疗程(G-CSF疗程)和随后的第二疗程的化疗中,以100-800μg/ m 2 /天的剂量对rhG‐CSF的患者进行静脉内治疗14天没有用作对照课程的rhG-CSF。在G‐CSF过程中,白细胞计数(WBC)显示出双相反应,包括在开始rhG‐CSF给药后几天内观察到的第一个峰,以及在rhG‐CSF给药的最后一天观察到的第二个峰注射或第二天。在第二个高峰期,与对照组相比,rhG-CSF治疗后单核骨髓细胞中粒细胞-巨噬细胞集落形成单位(CFU-GM)的发生率没有显着变化。但是,由于骨髓中有核细胞的数量增加,因此骨髓中CFU-GM的绝对数量增加了。骨髓中成熟和不成熟的粒细胞数量增加。这些发现表明,G‐CSF刺激接受细胞毒性药物并导致成熟粒细胞从骨髓释放的粒细胞减少患者的骨髓中粒细胞前体的增殖和分化。

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