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鬼臼毒素及其新型荧光衍生物对 HaCaT 细胞的细胞分布和超微结构的影响:分子对接研究的支持。

Cellular Distribution and Ultrastructural Changes in HaCaT Cells, Induced by Podophyllotoxin and Its Novel Fluorescent Derivative, Supported by the Molecular Docking Studies.

机构信息

Department of Histology and Embryology, Medical University of Warsaw, Chałubińskiego 5, 02-004 Warsaw, Poland.

Students Scientific Group HESA, Department of Histology and Embryology, Medical University of Warsaw, Chałubinskiego 5, 02-004 Warsaw, Poland.

出版信息

Int J Mol Sci. 2024 May 29;25(11):5948. doi: 10.3390/ijms25115948.

Abstract

Podophyllotoxin (PPT) is an active pharmaceutical ingredient (API) with established antitumor potential. However, due to its systemic toxicity, its use is restricted to topical treatment of anogenital warts. Less toxic PPT derivatives (e.g., etoposide and teniposide) are used intravenously as anticancer agents. PPT has been exploited as a scaffold of new potential therapeutic agents; however, fewer studies have been conducted on the parent molecule than on its derivatives. We have undertaken a study of ultrastructural changes induced by PPT on HaCaT keratinocytes. We have also tracked the intracellular localization of PPT using its fluorescent derivative (PPT-FL). Moreover, we performed molecular docking of both PPT and PPT-FL to compare their affinity to various binding sites of tubulin. Using the Presto blue viability assay, we established working concentrations of PPT in HaCaT cells. Subsequently, we have used selected concentrations to determine PPT effects at the ultrastructural level. Dynamics of PPT distribution by confocal microscopy was performed using PPT-FL. Molecular docking calculations were conducted using Glide. PPT induces a time-dependent cytotoxic effect on HaCaT cells. Within 24 h, we observed the elongation of cytoplasmic processes, formation of cytoplasmic vacuoles, progressive ER stress, and shortening of the mitochondrial long axis. After 48 h, we noticed disintegration of the cell membrane, progressive vacuolization, apoptotic/necrotic vesicles, and a change in the cell nucleus's appearance. PPT-FL was detected within HaCaT cells after ~10 min of incubation and remained within cells in the following measurements. Molecular docking confirmed the formation of a stable complex between tubulin and both PPT and PPT-FL. However, it was formed at different binding sites. PPT is highly toxic to normal human keratinocytes, even at low concentrations. It promptly enters the cells, probably via endocytosis. At lower concentrations, PPT causes disruptions in both ER and mitochondria, while at higher concentrations, it leads to massive vacuolization with subsequent cell death. The novel derivative of PPT, PPT-FL, forms a stable complex with tubulin, and therefore, it is a useful tracker of intracellular PPT binding and trafficking.

摘要

鬼臼毒素(PPT)是一种具有明确抗肿瘤潜力的活性药物成分(API)。然而,由于其全身性毒性,其仅被限制于局部治疗肛门生殖器疣。毒性较低的 PPT 衍生物(如依托泊苷和替尼泊苷)则被用作静脉内抗癌药物。PPT 已被开发为新型潜在治疗剂的支架;然而,与衍生物相比,对母体分子的研究较少。我们已经进行了一项关于 PPT 对 HaCaT 角质细胞诱导的超微结构变化的研究。我们还使用其荧光衍生物(PPT-FL)跟踪了 PPT 的细胞内定位。此外,我们对 PPT 和 PPT-FL 进行了分子对接,以比较它们与微管蛋白各种结合位点的亲和力。使用 Presto blue 活力测定法,我们确定了 PPT 在 HaCaT 细胞中的工作浓度。随后,我们使用选定的浓度来确定 PPT 在超微结构水平上的影响。通过共聚焦显微镜对 PPT 分布的动力学进行了研究,使用了 PPT-FL。分子对接计算使用 Glide 进行。PPT 对 HaCaT 细胞产生时间依赖性细胞毒性作用。在 24 小时内,我们观察到细胞质突起的伸长、细胞质空泡的形成、内质网应激的进行以及线粒体长轴的缩短。48 小时后,我们注意到细胞膜的崩解、进行性空泡化、凋亡/坏死小泡以及细胞核外观的改变。在孵育约 10 分钟后,PPT-FL 在 HaCaT 细胞内被检测到,并且在后续的测量中仍存在于细胞内。分子对接证实了 PPT 和 PPT-FL 与微管蛋白形成稳定的复合物。然而,它是在不同的结合部位形成的。即使在低浓度下,PPT 对正常人角质细胞也具有高度毒性。它迅速进入细胞,可能通过内吞作用。在较低浓度下,PPT 会导致内质网和线粒体两者都受到破坏,而在较高浓度下,它会导致大量空泡化,随后导致细胞死亡。PPT 的新型衍生物 PPT-FL 与微管蛋白形成稳定的复合物,因此它是细胞内 PPT 结合和运输的有用示踪剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b491/11172492/9ab6f34f29f4/ijms-25-05948-g001.jpg

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