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1-[(4-Nitrophenyl)sulfonyl]-4-phenylpiperazine treatment after brain irradiation preserves cognitive function in mice

机译:1 - [(4-硝基苯基)磺酰基] -4-苯基哌嗪治疗脑照射后保留小鼠的认知功能

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摘要

Background. Normal tissue toxicity is an inevitable consequence of primary or secondary brain tumor radiotherapy. Cranial irradiation commonly leads to neurocognitive deficits that manifest months or years after treatment. Mechanistically, radiation-induced loss of neural stem/progenitor cells, neuroinflammation, and demyelination are contributing factors that lead to progressive cognitive decline.Methods. The effects of 1-[(4-nitrophenyl)sulfonyl]-4-phenylpiperazine (NSPP) on irradiated murine neurospheres, microglia cells, and patient-derived gliomaspheres were assessed by sphere-formation assays, flow cytometry, and interleukin (IL)-6 enzyme-linked immunosorbent assay. Activation of the hedgehog pathway was studied by quantitative reverse transcription PCR. The in vivo effects of NSPP were analyzed using flow cytometry, sphere-formation assays, immunohistochemistry, behavioral testing, and an intracranial mouse model of glioblastoma.Results. We report that NSPP mitigates radiation-induced normal tissue toxicity in the brains of mice. NSPP treatment significantly increased the number of neural stem/progenitor cells after brain irradiation in female animals, and inhibited radiation-induced microglia activation and expression of the pro-inflammatory cytokine IL-6. Behavioral testing revealed that treatment with NSPP after radiotherapy was able to successfully mitigate radiation-induced decline in memory function of the brain. In mouse models of glioblastoma, NSPP showed no toxicity and did not interfere with the growth-delaying effects of radiation.Conclusions. We conclude that NSPP has the potential to mitigate cognitive decline in patients undergoing partial or whole brain irradiation without promoting tumor growth and that the use of this compound as a radiation mitigator of radiation late effects on the central nervous system warrants further investigation.
机译:背景。正常组织毒性是初级或继发性脑肿瘤放射治疗的必然结果。颅辐射通常导致神经认知缺陷,在治疗后明显的数月或数年。机械地,辐射诱导的神经茎/祖细胞,神经炎症和脱髓鞘的丧失是有助于导致进步认知衰退的因素。方法。通过球形测定,流式细胞术和白细胞介素(INL)评估1- [(4-硝基苯基)磺酰基哌嗪(NSPP)对辐照鼠神经球,小胶质细胞和患者衍生的肺丸的影响 - 6酶联免疫吸附测定。通过定量逆转录PCR研究了刺猬途径的活化。使用流式细胞术,球形测定,免疫组织化学,行为检测和胶质细胞瘤的颅脑模型分析NSPP的体内效应。结果。我们认为NSPP减轻小鼠脑中的辐射诱导的正常组织毒性。 NSPP治疗显着增加了女性动物脑照射后神经茎/祖细胞的数量,并抑制辐射诱导的微胶质细胞激活和促炎细胞因子IL-6的表达。行为测试显示,放射治疗后NSPP的治疗能够成功减轻辐射诱导的大脑记忆功能下降。在胶质母细胞瘤的小鼠模型中,NSPP没有毒性,并且不会干扰辐射的生长延迟效应。结论。我们得出结论,NSPP在不促进肿瘤生长的情况下减轻患者或全脑照射的患者的认知下降,并且使用该化合物作为辐射缓解剂对中枢神经系统的辐射后期效应进行进一步调查。

著录项

  • 来源
    《Neuro-Oncology》 |2020年第10期|1484-1494|共11页
  • 作者单位

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA;

    Dept Pathol & Lab Med Translat Pathol Core Lab Image Anal Virtual Microscopy Los Angeles CA USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Neurosurg Los Angeles CA 90095 USA|Univ Calif Los Angeles Jonsson Comprehens Canc Ctr Los Angeles CA 90095 USA;

    Univ Calif Los Angeles NPI Semel Inst Neurosci & Human Behav Los Angeles CA 90095 USA|Univ Calif Los Angeles Jonsson Comprehens Canc Ctr Los Angeles CA 90095 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Radiat Oncol 10833 Conte Ave Los Angeles CA 90095 USA|Univ Calif Los Angeles Jonsson Comprehens Canc Ctr Los Angeles CA 90095 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cognitive function; neural stem cells; radiation; radiation mitigation;

    机译:认知功能;神经干细胞;辐射;辐射缓解;

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