Acute exposure to electronic cigarette components alters mRNA expression of pre-osteoblasts

IF 4.4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY FASEB Journal Pub Date : 2024-08-30 DOI:10.1096/fj.202302014RRR
Shareef M. Dabdoub, Ashley Greenlee, George Abboud, Lexie Brengartner, Eryn Zuiker, Matthew W. Gorr, Loren E. Wold, Purnima S. Kumar, James Cray
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In the present study, we report on experiments interrogating the effects of major identified components in e-cigarettes. Specifically, the potential concomitant effects of nicotine and common carrier ingredients in commercial “vape” products are explored in vitro to inform the potential health effects on the craniofacial skeleton through novel vectors as compared to traditional tobacco products. MC3T3-E1 murine pre-osteoblast cells were cultured in vitro with clinically relevant liquid concentrations of nicotine, propylene glycol (PG), vegetable glycerin (VG), Nicotine+PG/VG, and the vape liquid of a commercial product (<i>Juul</i>). Cells were treated acutely for 24 h and RNA-Seq was utilized to determine segregating alteration in mRNA signaling. Influential gene targets identified with sparse partial least squares discriminant analysis (sPLS-DA) implemented in mixOmics were assessed using the PANTHER Classification system for molecular functions, biological processes, cellular components, and pathways of effect. Additional endpoint functional analyses were used to confirm cell cycle changes. The initial excitatory concentration (EC50) studied defined a target concentration of carrier PG/VG liquid that altered the cell cycle of the calvarial cells. Initial sPLS-DA analysis demonstrated the segregation of nicotine and non-nicotine exposures utilized in our in vitro modeling. Pathway analysis suggests a strong influence of nicotine exposures on cellular processes including metabolic processes and response to stimuli including autophagic flux. Further interrogation of the individual treatment conditions demonstrated segregation by treatment modality (Control, Nicotine, Carrier (PG+VG), Nicotine+PG/VG) along three dimensions best characterized by: latent variable 1 (PLSDA-1) showing strong segregation based on nicotine influence on cellular processes associated with cellular adhesion to collagen, osteoblast differentiation, and calcium binding and metabolism; latent variable 2 (PLSDA-2) showing strong segregation of influence based on PG+VG and Control influence on cell migration, survival, and cycle regulation; and latent variable 3 (PLSDA-3) showing strong segregation based on Nicotine and Control exposure influence on cell activity and growth and developmental processes. Further, gene co-expression network analysis implicates targets of the major pathway genes associated with bone growth and development, particularly craniofacial (FGF, Notch, TGFβ, WNT) and analysis of active subnetwork pathways found these additionally overrepresented in the Juul exposure relative to Nicotine+PG/VG. Finally, experimentation confirmed alterations in cell count, and increased evidence of cell stress (markers of autophagy), but no alteration in apoptosis. These data suggest concomitant treatment with Nicotine+PG/VG drives alterations in pre-osteoblast cell cycle signaling, specifically transcriptomic targets related to cell cycle and potentially cell stress. Although we suspected cell stress and well as cytotoxic effects of Nicotine+PG/VG, no great influence on apoptotic factors was observed. Further RNA-Seq analysis allowed for the direct interrogation of molecular targets of major pathways involved in bone and craniofacial development, each demonstrating segregation (altered signaling) due to e-cigarette-type exposure. These data have implications directed toward ENDS formulation as synergistic effects of Nicotine+PG/VG are evidenced here. 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Abstract

The use of traditional nicotine delivery products such as tobacco has long been linked to detrimental health effects. However, little work to date has focused on the emerging market of aerosolized nicotine delivery known as electronic nicotine delivery systems (ENDS) or electronic cigarettes, and their potential for new effects on human health. Challenges studying these devices include heterogeneity in the formulation of the common components of most available ENDS, including nicotine and a carrier (commonly composed of propylene glycol and vegetable glycerin, or PG/VG). In the present study, we report on experiments interrogating the effects of major identified components in e-cigarettes. Specifically, the potential concomitant effects of nicotine and common carrier ingredients in commercial “vape” products are explored in vitro to inform the potential health effects on the craniofacial skeleton through novel vectors as compared to traditional tobacco products. MC3T3-E1 murine pre-osteoblast cells were cultured in vitro with clinically relevant liquid concentrations of nicotine, propylene glycol (PG), vegetable glycerin (VG), Nicotine+PG/VG, and the vape liquid of a commercial product (Juul). Cells were treated acutely for 24 h and RNA-Seq was utilized to determine segregating alteration in mRNA signaling. Influential gene targets identified with sparse partial least squares discriminant analysis (sPLS-DA) implemented in mixOmics were assessed using the PANTHER Classification system for molecular functions, biological processes, cellular components, and pathways of effect. Additional endpoint functional analyses were used to confirm cell cycle changes. The initial excitatory concentration (EC50) studied defined a target concentration of carrier PG/VG liquid that altered the cell cycle of the calvarial cells. Initial sPLS-DA analysis demonstrated the segregation of nicotine and non-nicotine exposures utilized in our in vitro modeling. Pathway analysis suggests a strong influence of nicotine exposures on cellular processes including metabolic processes and response to stimuli including autophagic flux. Further interrogation of the individual treatment conditions demonstrated segregation by treatment modality (Control, Nicotine, Carrier (PG+VG), Nicotine+PG/VG) along three dimensions best characterized by: latent variable 1 (PLSDA-1) showing strong segregation based on nicotine influence on cellular processes associated with cellular adhesion to collagen, osteoblast differentiation, and calcium binding and metabolism; latent variable 2 (PLSDA-2) showing strong segregation of influence based on PG+VG and Control influence on cell migration, survival, and cycle regulation; and latent variable 3 (PLSDA-3) showing strong segregation based on Nicotine and Control exposure influence on cell activity and growth and developmental processes. Further, gene co-expression network analysis implicates targets of the major pathway genes associated with bone growth and development, particularly craniofacial (FGF, Notch, TGFβ, WNT) and analysis of active subnetwork pathways found these additionally overrepresented in the Juul exposure relative to Nicotine+PG/VG. Finally, experimentation confirmed alterations in cell count, and increased evidence of cell stress (markers of autophagy), but no alteration in apoptosis. These data suggest concomitant treatment with Nicotine+PG/VG drives alterations in pre-osteoblast cell cycle signaling, specifically transcriptomic targets related to cell cycle and potentially cell stress. Although we suspected cell stress and well as cytotoxic effects of Nicotine+PG/VG, no great influence on apoptotic factors was observed. Further RNA-Seq analysis allowed for the direct interrogation of molecular targets of major pathways involved in bone and craniofacial development, each demonstrating segregation (altered signaling) due to e-cigarette-type exposure. These data have implications directed toward ENDS formulation as synergistic effects of Nicotine+PG/VG are evidenced here. Thus, future research will continue to interrogate how varied formulation of Nicotine+PG/VG affects overall cell functions in multiple vital systems.

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急性接触电子香烟成分会改变前成骨细胞的 mRNA 表达
长期以来,使用烟草等传统尼古丁递送产品与有害健康的影响有关。然而,迄今为止,很少有人关注被称为电子尼古丁给药系统(ENDS)或电子香烟的新兴尼古丁气雾剂给药市场及其对人体健康产生新影响的潜力。研究这些设备所面临的挑战包括大多数现有 ENDS 常见成分配方的异质性,包括尼古丁和载体(通常由丙二醇和植物甘油或 PG/VG 组成)。在本研究中,我们报告了对电子烟中已确定的主要成分的影响进行的实验。具体来说,我们在体外探索了尼古丁和商业 "vape "产品中常见载体成分的潜在并发效应,以便通过与传统烟草产品相比的新型载体了解对颅面骨骼的潜在健康影响。用临床相关浓度的尼古丁、丙二醇(PG)、植物甘油(VG)、尼古丁+PG/VG 和商业产品(Juul)的 Vape 液体体外培养 MC3T3-E1 小鼠前成骨细胞。将细胞急性处理 24 小时后,利用 RNA-Seq 确定 mRNA 信号转导的分离改变。使用 PANTHER 分类系统对在 mixOmics 中实施的稀疏偏最小二乘判别分析(sPLS-DA)确定的影响基因靶点进行了分子功能、生物过程、细胞成分和作用途径评估。其他终点功能分析用于确认细胞周期的变化。所研究的初始兴奋浓度(EC50)确定了载体 PG/VG 液体的目标浓度,该浓度可改变腓肠肌细胞的细胞周期。初步的 sPLS-DA 分析表明,体外建模中使用的尼古丁和非尼古丁暴露是分离的。通路分析表明,尼古丁暴露对细胞过程(包括新陈代谢过程和对自噬通量等刺激的反应)有很大影响。对单个处理条件的进一步分析表明,处理模式(对照组、尼古丁、载体(PG+VG)、尼古丁+PG/VG)在三个维度上存在分离,这三个维度的最佳特征是潜变量 1(PLSDA-1)显示出尼古丁对与细胞粘附胶原、成骨细胞分化、钙结合和新陈代谢相关的细胞过程影响的强烈分离;潜变量 2(PLSDA-2)显示出 PG+VG 和对照组对细胞迁移、存活和周期调节影响的强烈分离;以及潜变量 3(PLSDA-3)显示出尼古丁和对照组暴露对细胞活性、生长和发育过程影响的强烈分离。此外,基因共表达网络分析显示,与骨骼生长和发育有关的主要通路基因(尤其是颅面基因(FGF、Notch、TGFβ、WNT))的靶标与 Juul 暴露有关,而对活跃的子网络通路的分析发现,相对于尼古丁+PG/VG,这些通路在 Juul 暴露中的代表性更强。最后,实验证实细胞数量发生了变化,细胞压力(自噬标记物)增加,但细胞凋亡没有变化。这些数据表明,尼古丁+PG/VG 的同时处理会导致成骨细胞前期细胞周期信号的改变,特别是与细胞周期和潜在的细胞压力有关的转录组目标。虽然我们怀疑尼古丁+PG/VG 会导致细胞应激和细胞毒性效应,但并未观察到对凋亡因子的重大影响。通过进一步的 RNA-Seq 分析,我们可以直接检测参与骨骼和颅面发育的主要通路的分子靶标,每种靶标都显示出电子烟型暴露导致的分离(信号改变)。这些数据对ENDS配方具有影响,因为这里证明了尼古丁+PG/VG的协同效应。因此,未来的研究将继续探讨尼古丁+PG/VG的不同配方如何影响多个重要系统的整体细胞功能。
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来源期刊
FASEB Journal
FASEB Journal 生物-生化与分子生物学
CiteScore
9.20
自引率
2.10%
发文量
6243
审稿时长
3 months
期刊介绍: The FASEB Journal publishes international, transdisciplinary research covering all fields of biology at every level of organization: atomic, molecular, cell, tissue, organ, organismic and population. While the journal strives to include research that cuts across the biological sciences, it also considers submissions that lie within one field, but may have implications for other fields as well. The journal seeks to publish basic and translational research, but also welcomes reports of pre-clinical and early clinical research. In addition to research, review, and hypothesis submissions, The FASEB Journal also seeks perspectives, commentaries, book reviews, and similar content related to the life sciences in its Up Front section.
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