Biological Impact of the Ratio of E-Cigarette Liquid Base Constituents, Propylene Glycol and Vegetable Glycerin, on Primary Human Melanocytes

S. Goenka
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引用次数: 3

Abstract

Oral cavity is the first site to encounter e-cigarette (EC) or tobacco smoke. Increased gingival pigmentation can lead to aesthetic concerns and hinder successful outcomes of gingival depigmentation procedures as well as lead to color alterations in patients with dental restorations. While the effects of tobacco smoke and nicotine in increasing pigmentation in the gingiva of the smoker have been well-documented, the effects of EC on pigmentation have not been explored. Due to large variations in e-liquids from different sources, this study focused on the effects of EC liquid base constituents, propylene glycol (PG) and vegetable glycerin (VG), which are a universal constituent of all e-liquids. Effects of PG and VG solutions mixed at different ratios (0/100, 20/80, 55/45, 80/20, and 100/0 % v/v) were examined using primary human melanocytes obtained from neonatal foreskin; this cell model is representative of the physiological model of gingival melanocytes and has been used in our previous study. Results showed significant concentration-dependent cytotoxicity for all groups, although mixtures with higher PG content showed higher cytotoxicity to cells as compared to those with VG. Melanogenesis was robustly activated by PG-containing mixtures with the greatest effect obtained for 80/20 PG/VG mixture as compared to other ratios, while VG by itself did not activate melanogenesis. The activation of melanin synthesis within cells was not correlated to intracellular tyrosinase activity as that was suppressed by PG at higher ratios. Morphological changes of a multidendritic phenotype were observed in cells exposed to all PG/VG mixtures, with markedly greater effects for groups with higher PG content. Taken together, the results of this pilot study demonstrate for the first time that EC base constituents possess the capacity to significantly activate melanogenesis in human melanocytes at nontoxic concentrations, with the dominant effect obtained at a PG/VG ratio of 80/20, indicative of a nonlinear response with increasing concentrations of PG. Moreover, further studies to address the impact of PG/VG with the addition of nicotine and the effects of different EC flavors are underway. Future studies to elucidate mechanisms of increased pigmentation as well as further investigate effects in melanocytes with the presence of other oral cell types and other components of the oral microenvironment such as saliva and bacterial flora are warranted. This research emphasizes the need to reconsider the regulation of EC base constituents PG and VG as different ratios of these compounds can cause differential effects.
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电子烟液基成分丙二醇和植物甘油配比对人原代黑色素细胞的生物学影响
口腔是第一个接触电子烟或烟草烟雾的地方。增加的牙龈色素沉着可以导致审美问题,并阻碍成功的结果牙龈色素沉着的程序,以及导致患者的牙齿修复颜色改变。虽然烟草烟雾和尼古丁增加吸烟者牙龈色素沉着的影响已经得到了充分的证明,但EC对色素沉着的影响尚未得到探讨。由于来自不同来源的电子液体有很大差异,本研究重点研究了EC液体基础成分、丙二醇(PG)和植物甘油(VG)的影响,这些成分是所有电子液体的普遍成分。使用从新生儿包皮获得的人原代黑色素细胞,检测不同比例(0/100、20/80、55/45、80/20和100/0 v/v)混合PG和VG溶液的影响;该细胞模型是具有代表性的牙龈黑素细胞生理模型,在我们的前期研究中已经使用过。结果显示,尽管PG含量较高的混合物对细胞的细胞毒性高于VG含量的混合物,但所有组的细胞毒性均呈浓度依赖性。与其他比例相比,含有PG/VG的80/20混合物的效果最大,而VG本身不激活黑色素生成。细胞内黑色素合成的激活与细胞内酪氨酸酶活性无关,因为PG以较高的比例抑制了酪氨酸酶活性。在暴露于所有PG/VG混合物的细胞中观察到多树突表型的形态学变化,PG含量较高的组的影响明显更大。总之,本初步研究的结果首次证明,在无毒浓度下,EC碱成分具有显著激活人类黑素细胞黑素生成的能力,在PG/VG比例为80/20时获得主导效应,表明随着PG浓度的增加,PG/VG的影响与尼古丁的添加以及不同EC口味的影响正在进一步研究中。未来的研究将阐明增加色素沉着的机制,并进一步研究其他口腔细胞类型和口腔微环境的其他成分(如唾液和细菌菌群)对黑素细胞的影响。本研究强调需要重新考虑EC基础成分PG和VG的调节,因为这些化合物的不同比例会导致不同的效果。
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