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首页> 外文期刊>Cell Proliferation >Caspase‐3‐mediated GSDME activation contributes to cisplatin‐ and doxorubicin‐induced secondary necrosis in mouse macrophages
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Caspase‐3‐mediated GSDME activation contributes to cisplatin‐ and doxorubicin‐induced secondary necrosis in mouse macrophages

机译:Caspase-3介导的GSDME活化有助于小鼠巨噬细胞中的顺铂和多柔比星引起的二次坏死

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摘要

Abstract Objective Induction of secondary necrosis/pyroptosis contributes to the toxicity of chemotherapeutic drugs , in which gasdermin E (GSDME) plays critical roles. This study aimed to explore whether GSDME is involved in mediating the cytotoxic effects of cisplatin and doxorubicin on mouse macrophages. Methods RAW 264.7 cells and bone marrow‐derived macrophages (BMDMs) were treated with cisplatin or doxorubicin. Propidium iodide staining was used to assay necrosis, and immunoblotting was performed to detect protein expression. GSDME was knocked down by using small interfering RNA. Mice were injected intraperitoneally to evaluate toxicity to macrophages in vivo. Flow cytometry and immunofluorescence microscopy were adopted to analyse phenotypes of peritoneal cells . Cytokine levels were assayed by cytometric bead array. Results Both cisplatin and doxorubicin dose‐dependently induced necrosis in mouse RAW 264.7 macrophages and BMDMs. Accompanying this, multiple caspases were activated, concomitant with the cleavage of poly (ADP‐ribose) polymerase. Consistent with caspase‐3 activation, GSDME was cleaved to generate its N‐terminal fragment (GSDME‐NT), thus leading to secondary necrosis/pyroptosis. Inhibition of caspase‐3 significantly attenuated the generation of GSDME‐NT concurrently with decreased necrosis in macrophages. GSDME knockdown also evidently decreased the necrosis in RAW 264.7 and BMDMs. Besides, cisplatin administration depleted peritoneal macrophages in mice, which was associated with caspase‐3 activation and GSDME‐NT generation. Consistent with the macrophage depletion, cisplatin administration significantly decreased survival of mice with bacterial infection. Conclusion Chemotherapeutic cisplatin and doxorubicin exerted their cytotoxicity on macrophages partly by inducing caspase‐3/GSDME‐mediated secondary necrosis.
机译:摘要次要坏死/糊死炎的目的诱导有助于化学治疗药物的毒性,其中汽笛E(GSDME)起到关键作用。本研究旨在探讨GSDME是否参与介导顺铂和多柔比蛋白在小鼠巨噬细胞上的细胞毒性作用。方法用顺铂或多柔比星处理原料264.7细胞和骨髓衍生的巨噬细胞(BMDMS)。碘化丙锭染色用于测定坏死,进行免疫印迹以检测蛋白质表达。通过使用小干扰RNA被击倒GSDME。将小鼠腹膜内注射以评估对体内巨噬细胞的毒性。采用流式细胞术和免疫荧光显微镜分析腹膜细胞的表型。通过细胞计数珠阵列测定细胞因子水平。结果顺铂和多柔比星剂量依赖于小鼠未加工264.7巨噬细胞和BMDMS中的坏死。随之而来,激活多个胱天膜,伴随聚(ADP-核糖)聚合酶的切割。与Caspase-3活化一致,GSDME被切割以产生其N-末端片段(GSDME-NT),从而导致二次坏死/糊化酶。 Caspase-3对Caspase-3的抑制性显着减弱了GSDME-NT的产生,随着巨噬细胞的降低而减少。 GSDME敲低也显然降低了原始264.7和BMDMS中的坏死。此外,顺铂给药耗尽小鼠的腹膜巨噬细胞,其与Caspase-3活化和GSDME-NT产生相关。与巨噬细胞耗竭一致,顺铂给药显着降低了细菌感染的小鼠的存活。结论化学治疗性顺铂和多柔比蛋白部分通过诱导Caspase-3 / GSDME介导的中坏死部分对巨噬细胞进行细胞毒性。

著录项

  • 来源
    《Cell Proliferation》 |2019年第5期|共11页
  • 作者单位

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    School of MedicineSun Yat‐Sen UniversityShenzhen China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Cell Biology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Immunobiology College of Life Science and TechnologyJinan UniversityGuangzhou China;

    Department of Nephrologythe First Affiliated Hospital of Jinan UniversityGuangzhou China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

    caspase‐3; chemotherapeutic drugs; gasdermin E; macrophages; secondary necrosis;

    机译:Caspase-3;化学治疗药物;胃蛋白E;巨噬细胞;继发性坏死;

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