Eurofins Lancaster Laboratories PSS, Winston-Salem, NC, 27105, USA.
RAI Services Company, Winston-Salem, NC, 27105, USA.
Inflammation. 2019 Oct;42(5):1641-1651. doi: 10.1007/s10753-019-01025-x.
Changes in the level of intracellular calcium ([Ca]) are central to leukocyte signaling and immune response. Although evidence suggests that cigarette smoking affects inflammatory response via an increase in intracellular calcium, it remains unclear if the use of smokeless tobacco (e.g., moist snuff) elicits a similar response. In this study, we evaluated the effects of tobacco product preparations (TPPs), including total particulate matter (TPM) from 3R4F reference cigarettes, smokeless tobacco extract (STE) from 2S3 reference moist snuff, and nicotine alone on Ca mobilization in HL60 cells. Treatment with TPM, but not STE or nicotine alone, significantly increased [Ca] in a concentration-dependent manner in HL60 cells. Moreover, TPM-induced [Ca] increase was not related to extracellular Ca and did not require the activation of the IP3 pathway nor involved the transient receptor potential (TRP) channels. Our findings indicate that, in cells having either intact or depleted endoplasmic reticulum (ER) Ca stores, TPM-mediated [Ca] increase involves cytosolic Ca pools other than thapsigargin-sensitive ER Ca stores. These results, for the first time, demonstrate that TPM triggers [Ca] increases, while significantly higher nicotine equivalent doses of STE or nicotine alone, did not affect [Ca] under the experimental conditions. In summary, our study suggests that in contrast with STE or nicotine preparations, TPM activates Ca signaling pathways in HL60 cells. The differential effect of combustible and non-combustible TPPs on Ca mobilization could be a useful in vitro endpoint for tobacco product evaluation.
细胞内钙离子 ([Ca]) 水平的变化是白细胞信号转导和免疫反应的核心。虽然有证据表明吸烟通过增加细胞内钙来影响炎症反应,但目前尚不清楚使用无烟烟草(例如湿鼻烟)是否会引起类似的反应。在这项研究中,我们评估了烟草制品制剂(TPP)的影响,包括 3R4F 参考香烟的总颗粒物 (TPM)、2S3 参考湿鼻烟的鼻烟提取物 (STE) 和单独的尼古丁对 HL60 细胞中 Ca 动员的影响。TPM 处理而非 STE 或单独的尼古丁以浓度依赖的方式显著增加了 HL60 细胞中的 [Ca]。此外,TPM 诱导的 [Ca] 增加与细胞外 Ca 无关,不需要 IP3 途径的激活,也不涉及瞬时受体电位 (TRP) 通道。我们的研究结果表明,在具有完整或耗尽内质网 (ER) Ca 库的细胞中,TPM 介导的 [Ca] 增加涉及除 thapsigargin 敏感的 ER Ca 库之外的细胞质 Ca 池。这些结果首次表明,TPM 触发 [Ca] 增加,而显著更高的尼古丁当量剂量的 STE 或单独的尼古丁在实验条件下不会影响 [Ca]。总之,我们的研究表明,与 STE 或尼古丁制剂相比,TPM 激活了 HL60 细胞中的 Ca 信号通路。可燃和不可燃 TPP 对 Ca 动员的不同影响可能是烟草制品评估的有用体外终点。