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首页> 外文期刊>Acta oncologica. >Calcitriol enhances 5-aminolevulinic acid-induced fluorescence and the effect of photodynamic therapy in human glioma
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Calcitriol enhances 5-aminolevulinic acid-induced fluorescence and the effect of photodynamic therapy in human glioma

机译:骨化三醇增强5-氨基乙酰丙酸诱导的荧光和光动力疗法对人脑胶质瘤的作用

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摘要

Background. Glioma recurrence frequently occurs close to the marginal area of the surgical cavity as a result of residual infiltrating glioma cells. Fluorescence-guided surgery with 5-aminolevulinic acid (ALA) for resection of gliomas has been used as an effective therapeutic approach to discriminate malignant tissue from brain tissue and to facilitate patient prognosis. ALA-based photodynamic therapy is an effective adjuvant treatment modality for gliomas. However, insufficient protoporphyrin IX (PpIX) accumulation may limit the applicability of fluorescence-guided resection and photodynamic therapy in the marginal areas of gliomas. Methods. To be able to understand how to overcome these issues, human glioma cells and normal astrocytes were used as the model system. Glioma cells and astrocytes were preconditioned with calcitriol for 48 hours and then incubated with ALA. Changes in ALA-induced PpIX fluorescence and cell survival after light exposure were assessed. Furthermore, expression of porphyrin synthetic enzymes in pretreated glioma cells was analyzed. Results. Calcitriol can be administered prior to ALA as a non-toxic preconditioning regimen to significantly enhance ALA-induced PpIX levels and fluorescence. This increase in PpIX level was detected preferentially in glioma versus normal cells. Also, calcitriol pretreated glioma cells exhibited increased cell death following ALA-based photodynamic therapy. Furthermore, mechanistic studies documented that expression of the porphyrin synthesis enzymes coproporphyrinogen oxidase was increased by calcitriol at the mRNA level. Conclusion. We demonstrated for the first time a simple, non-toxic and highly effective preconditioning regimen to selectively enhance PpIX fluorescence and the response of ALA-PDT in glioma cells. This finding suggests that the combined treatment of glioma cells with calcitriol plus ALA may provide an effective and selective therapeutic modality to enhance ALA-induced PpIX fluorescent quality for improving discrimination of tumor tissue and PDT efficacy.
机译:背景。由于残留的浸润性神经胶质瘤细胞,胶质瘤复发经常发生在靠近手术腔的边缘区域。用5-氨基乙酰丙酸(ALA)进行的荧光引导手术切除神经胶质瘤已被用作区分脑组织恶性组织和促进患者预后的有效治疗方法。基于ALA的光动力疗法是神经胶质瘤的有效辅助治疗方式。但是,原卟啉IX(PpIX)的积累不足可能会限制荧光引导的切除和光动力疗法在神经胶质瘤边缘地区的适用性。方法。为了能够理解如何克服这些问题,人类神经胶质瘤细胞和正常星形胶质细胞被用作模型系统。胶质瘤细胞和星形胶质细胞用骨化三醇预处理48小时,然后与ALA一起孵育。评估曝光后ALA诱导的PpIX荧光和细胞存活率的变化。此外,分析了在预处理的神经胶质瘤细胞中卟啉合成酶的表达。结果。骨化三醇可以在ALA之前作为一种无毒的预处理方案进行给药,以显着增强ALA诱导的PpIX水平和荧光。与神经胶质瘤相比,在神经胶质瘤中优先检测到PpIX水平的升高。同样,骨化三醇预处理的神经胶质瘤细胞在基于ALA的光动力疗法后表现出增加的细胞死亡。此外,机理研究表明钙三醇在mRNA水平上增加了卟啉合成酶共原卟啉原氧化酶的表达。结论。我们首次展示了一种简单,无毒且高效的预处理方案,可选择性增强胶质瘤细胞中的PpIX荧光和ALA-PDT的应答。这一发现表明,骨化三醇加ALA联合治疗胶质瘤细胞可提供有效和选择性的治疗方式,以增强ALA诱导的PpIX荧光质量,从而改善对肿瘤组织和PDT功效的辨别力。

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