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纳米白杨素诱导 HeLa 细胞凋亡的红外光谱和流式细胞术研究。

Infrared spectroscopy and flow cytometry studies on the apoptotic effect of nano-chrysin in HeLa cells.

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.

Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2022 Dec 5;282:121666. doi: 10.1016/j.saa.2022.121666. Epub 2022 Jul 25.

Abstract

Mapping the structural changes in membrane lipids, proteins, polysaccharides and nucleic acids has opened new channels for understanding the mode of action of anticancer natural products. Earlier, we synthesized chrysin nanoparticles (NChr) with good bioavailability, and characterized its size, surface charge, entrapment efficiency, and drug release pattern using PLGA polymer. NChr induced concentration dependent cytotoxicity in HeLa cells with an IC of 61.54 ± 1.2 µM in comparison with free chrysin with IC of 86.51 ± 2.9 µM. Since nanoparticles interact dynamically with cell membranes, organelles, proteins and DNA, it is necessary to understand the interplay of nanodrug induced macromolecular changes in cancer cells. In this work, we obtained signatures of NChr-induced biochemical changes in HeLa cells by Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy technique coupled with flow cytometry. NChr induced cell membrane disruption, G1 phase cell cycle arrest, and increased externalization of phosphatidylserine leading to apoptosis indicating the biochemical perturbations in membrane lipids and DNA of HeLa cells in comparison with untreated cells. The 1300-1000 cm spectral region indicated NChr interaction with the ribose sugar backbone and DNA denaturation. Spectral range 1800-1400 cm indicated a concentration dependent decrease in α helical and β sheet structures which may lead to protein degradation during apoptosis. The spectral range 3000-2800 cm indicated the lipid peroxidation in response to NChr treatment. This is the first study describing the bio-macromolecular changes induced by a nano encapsulated drug and can pave the way to investigate unconventional modes of action for bioactive formulations.

摘要

绘制膜脂、蛋白质、多糖和核酸的结构变化图谱,为理解抗癌天然产物的作用模式开辟了新的途径。我们之前用 PLGA 聚合物合成了具有良好生物利用度的白杨素纳米粒子(NChr),并对其粒径、表面电荷、包封效率和药物释放模式进行了表征。与游离白杨素的 IC(86.51±2.9μM)相比,NChr 在 HeLa 细胞中诱导浓度依赖性细胞毒性,IC 为 61.54±1.2μM。由于纳米颗粒与细胞膜、细胞器、蛋白质和 DNA 动态相互作用,因此有必要了解纳米药物诱导的癌细胞中大分子变化的相互作用。在这项工作中,我们通过衰减全反射傅里叶变换红外光谱技术结合流式细胞术获得了 NChr 诱导的 HeLa 细胞生化变化特征。NChr 诱导细胞膜破裂、G1 期细胞周期停滞和磷脂酰丝氨酸外排增加,导致细胞凋亡,表明与未处理细胞相比,HeLa 细胞的膜脂和 DNA 发生了生化扰动。1300-1000cm 光谱区表明 NChr 与核糖糖骨架和 DNA 变性相互作用。1800-1400cm 光谱区表明,在浓度依赖的情况下,α 螺旋和β 折叠结构减少,这可能导致细胞凋亡过程中的蛋白质降解。3000-2800cm 光谱区表明 NChr 处理后发生了脂质过氧化。这是第一项描述纳米封装药物诱导的生物大分子变化的研究,可以为生物活性制剂探索非常规作用模式铺平道路。

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