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CALL FOR PAPERS Cigarette Smoke-Induced Lung Endothelial and Alveolar Epithelial InjuryThirdhand smoke: a new dimension to the effects of cigarette smoke on the developing lung

机译:呼吁纸张烟诱导的肺内皮和肺泡上皮伤害伤害:一种新的烟雾烟雾对发展肺的影响的新尺寸

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The underlying mechanisms and effector molecules involved in mediating in utero smoke exposure-induced effects on the developing lung are only beginning to be understood. However, the effects of a newly discovered category of smoke, i.e., thirdhand smoke (THS), on the developing lung are completely unknown. We hypothesized that, in addition to nicotine, other components of THS would also affect lung development adversely. Fetal rat lung explants were exposed to nicotine, l-(N-memyl-AN-nitrosamino)-l-(3-pyridinyl)-4-butanal (NNA), or 4-(methylnitrosamino)-l-(3-pyridyl)-l-butanone (NNK), the two main tobacco-specific N-nitrosamine constituents of THS, for 24 h. We then determined key markers for alveolar paracrine signaling [epithelial differentiation markers surfactant phospholipid and protein synthesis; mesenchymal differentiation markers peroxisome prolifera-tor-activated receptor 7 (PPAR-7), fibronectin and calponin], the BCL-2-to-Bax ratio (BCL-2/Bax), a marker of apoptosis and the involvement of nicotinic acetylcholine receptors (nAChR)-α3 and -α7 in mediating NNA's and NNK's effects on the developing lung. Similar to the effects of nicotine, exposure of the developing lung to either NNK or NNA resulted in disrupted homeostatic signaling, indicated by the downregulation of PPAR-7, upregulation of fibronectin and calponin protein levels, decreased BCL-2/Bax, and the accompanying compensatory stimulation of surfactant phospholipid and protein synthesis. Furthermore, nAChR-α3 and -α7 had differential complex roles in mediating these effects. NNK and NNA exposure resulted in breakdown of alveolar epithelial-mesenchymal cross-talk, reflecting lipofibroblast-to-myofibroblast transdifferentiation, suggesting THS constituents as possible novel contributors to in utero smoke exposure-induced pulmonary damage. These data are particularly relevant for designing specific therapeutic strategies, and for formulating public health policies to minimize THS exposure.
机译:涉及在子宫烟雾暴露诱导的显影肺部诱导的效果中涉及的潜在机制和效应分子仅被理解。然而,新发现的烟雾类别的效果,即第三手烟雾(THS),在显影肺部完全未知。我们假设,除了尼古丁外,THS的其他组分也会对肺部发育不利影响。将胎儿大鼠肺癌膜暴露于尼古丁,L-(N-亚磷基 - 亚硝基氨基)-1-(3-吡啶基)-4-丁烷(NNA),或4-(甲基亚氨基氨基)-1-(3-吡啶基) -L-丁酮(NNK),两种主要烟草特异性N-亚硝基胺成分,24小时。然后确定肺泡斜拉碱信号传导的关键标记[上皮分化标志物表面活性剂磷脂和蛋白质合成;间充质分化标志物过氧化物酶体增殖 - 激活受体7(PPAR-7),纤连蛋白和钙醌],Bcl-2对Bax比(Bcl-2 / Bax),细胞凋亡的标志物和烟碱乙酰胆碱受体的参与(NACHR)-α3和-α7在介导NNA和NNK对显影肺的影响。类似于尼古丁的效果,显影肺部对NNK或NNA的暴露导致稳定的稳态信号传导,由PPAR-7的下调表明,纤连蛋白和钙醌蛋白水平的上调,降低Bcl-2 / Bax,以及随附的表面活性剂磷脂和蛋白质合成的补偿刺激。此外,NACHR-α3和-α7在介导这些效果时具有差异复杂的作用。 NNK和NNA暴露导致肺泡上皮 - 间充质串扰的崩溃,反映了脂肪纤维细胞 - 肌纤维细胞转移转移,表明在子宫烟暴露诱导的肺损伤中可能的新贡献。这些数据与设计特定的治疗策略以及制定公共卫生政策以最大限度地减少曝光率的尤为重要。

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