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首页> 外文期刊>International Journal of Medical Sciences >Confocal Raman Spectral Imaging Study of DAPT, a γ-secretase Inhibitor, Induced Physiological and Biochemical Reponses in Osteosarcoma Cells
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Confocal Raman Spectral Imaging Study of DAPT, a γ-secretase Inhibitor, Induced Physiological and Biochemical Reponses in Osteosarcoma Cells

机译:骨肉瘤细胞中DAPT,γ-分泌酶抑制剂,诱导生理和生物化学常态诱导的生理和生物化学常态的共焦拉曼光谱成像研究

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Confocal Raman microspectral imaging was adopted to elucidate the cellular drug responses of osteosarcoma cells (OC) to N-[N-(3, 5-difluorophenyl acetyl)-L-alanyl]-sphenylglycine butyl ester (DAPT), a γ-secretase inhibitor, by identifying the drug induced subcellular compositional and structural changes. Methods: Spectral information were acquired from cultured osteosarcoma cells treated with 0 (Untreated Group, UT), 10 (10 μM DAPT treated, 10T), 20 μM (20 μM DAPT treated, 20T) DAPT for 24 hours. A one-way ANOVA and Tukey's honest significant difference (HSD) post hoc multiple test were sequentially applied to address spectral features among three groups. Multivariate algorithms such as K-means clustering analysis (KCA) and Principal component analysis (PCA) were used to highlight the structural and compositional differences, while, univariate imaging was applied to illustrate the distribution pattern of certain cellular components after drug treatment. Results: Major biochemical changes in DAPT-induced apoptosis came from changes in the content and structure of proteins, lipids, and nucleic acids. By adopted multivariate algorithms, the drug induced cellular changes was identified by the morphology and spectral characteristics between untreated cells and treated cells, testified that DAPT mainly acted in the nuclear region. With the increase of the drug concentration, the content of main subcellular compositions, such nucleic acid, protein, and lipid decreased. In an addition, DAPT-induced nuclear fragmentation and apoptosis was depicted by the univariate Raman image of major cellular components (nucleic acids, proteins and lipids). Conclusions: The achieved Raman spectral and imaging results illustrated detailed DAPT-induced subcellular compositional and structural variations as a function of drug dose. Such observations can not only explain drug therapeutic mechanisms of OC DAPT treatment, and also provide new insights for accessing the medicine curative efficacy and predicting prognosis.? The author(s).
机译:采用共焦拉曼微衍射成像来阐明骨肉瘤细胞(OC)至N- [N-(3,5-二氟苯基)-L-丙酰基] - 苯基甘氨酸丁酯(DAPT),γ-分泌酶抑制剂的细胞药物反应,通过鉴定药物诱导的亚细胞组成和结构变化。方法:从用0(未处理的基团,UT),10(10μMPAPT处理,10t),20μm(20μmPAPT处理,20t)DAPT 24小时,从培养的骨肉瘤细胞中获得光谱信息。单向ANOVA和TUKEY的诚实显着差异(HSD)依次应用于HOC多次测试,以解决三组中的频谱特征。使用多变量算法,例如K-Means聚类分析(KCA)和主成分分析(PCA)来突出结构和组成差异,而施加单变量成像以说明药物治疗后某些细胞成分的分布模式。结果:DAPT诱导的细胞凋亡的主要生化变化来自蛋白质,脂质和核酸的内容和结构的变化。通过采用多元算法,通过未处理的细胞和处理细胞之间的形态和光谱特性来鉴定药物诱导的细胞变化,作证为DAPT主要在核区域中致力于核区域。随着药物浓度的增加,主要亚细胞组合物的含量,这种核酸,蛋白质和脂质降低。另外,通过双细胞组分(核酸,蛋白质和脂质)的单变量拉曼图像描绘了DAPT诱导的核碎裂和细胞凋亡。结论:达到的拉曼光谱和成像结果表明了作为药物剂量的函数的详细的DAPT诱导的亚细胞组成和结构变化。这种观察结果不仅可以解释OC DAPT治疗的药物治疗机制,还可以提供用于访问药物治疗疗效和预测预后的新见解。作者。

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