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Effects of ozone stimulation of bronchial epithelial cells on proliferation and collagen synthesis of co-cultured lung fibroblasts

机译:臭氧刺激支气管上皮细胞对共培养肺成纤维细胞增殖和胶原合成的影响

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摘要

Ozone (O3) as a major air pollutant is widely recognized for causing pathological changes of the airway system. However, it is not clear whether O3 exposure of bronchial epithelial cells (BECs) influences the proliferation and collagen synthesis of submucosal fibroblasts and contributes to the pathogenesis of airway remodeling in diseases, including asthma. In the present study, a co-culture method was applied to culture human lung fibroblasts (HLFs) with human bronchial epithelial cells (HBECs) that were pre-stimulated with O3. Following co-culture for up to 24 h, the proliferation of HLFs was measured using MTT colorimetry. Furthermore, the collagen synthesis capacity of HLFs was determined by the level of hydroxyproline. In addition, the protein expression levels of cytokines, including transforming growth factor (TGF)-β1, tumor necrosis factor (TNF)-α and prostaglandin E2 (PGE2) were assessed. Results indicated that the proliferation of HLFs co-cultured with HBECs was significantly inhibited when compared with HLFs cultured alone (P<0.05). By contrast, co-culture with O3-stimulated HBECs significantly promoted the proliferation of HLFs compared with the HLFs cultured alone or those cultured with HBECs but no O3 stimulation, respectively (P<0.05 and P<0.01). Furthermore, similar effects were observed regarding the collagen synthesis capacity of HLFs co-cultured with HBECs for 24. In the supernatant, TGF-β1 concentration was continuously increased over 24 h, whereas the concentration of PGE2 increased and plateaued between 12 to 24 h and TNF-α concentration was not significantly altered during the assessed time period. To conclude, the present results suggest that O3 pre-exposure of HBECs may promote the transformation of HLFs from the typical inhibitory state into a promoting state with respect to proliferation and collagen synthesis, which may likely occur through a mechanism that influences the balance between pro- and anti-inflammatory factors, including TGF-β1 and PGE2. The present findings may improve the understanding of the mechanism involved in O3-induced airway remodeling from a novel perspective of maintenance/loss of steady-state function of the airway epithelium.
机译:臭氧(O3)是主要的空气污染物,被认为会引起呼吸道系统的病理变化。然而,尚不清楚O3暴露于支气管上皮细胞(BEC)是否会影响粘膜下成纤维细胞的增殖和胶原合成,并有助于哮喘等疾病的气道重塑。在本研究中,共培养方法用于培养人肺成纤维细胞(HLF)与预先用O3刺激的人支气管上皮细胞(HBEC)。共培养24小时后,使用MTT比色法测量HLF的增殖。此外,HLF的胶原蛋白合成能力由羟脯氨酸的水平决定。此外,评估了细胞因子的蛋白质表达水平,包括转化生长因子(TGF)-β1,肿瘤坏死因子(TNF)-α和前列腺素E2(PGE2)。结果表明,与单独培养的HLFs相比,与HBECs共培养的HLFs的增殖受到明显抑制(P <0.05)。相比之下,与O3刺激的HBEC共同培养分别比单独培养的HBF或无O3刺激的HBEC显着促进了HLF的增殖(P <0.05和P <0.01)。此外,在与HBEC共培养的HLFs的胶原合成能力方面,也观察到了类似的作用,持续24小时。在上清液中,TGF-β1的浓度在24小时内持续增加,而PGE2的浓度在12至24小时之间增加并稳定。在评估的时间段内,TNF-α的浓度没有明显改变。总而言之,目前的结果表明,O3暴露于HBECs可能会促进HLFs从增殖和胶原合成方面的典型抑制状态转变为促进状态,这很可能是通过影响促性腺激素之间的平衡的机制而发生的。 -和抗炎因子,包括TGF-β1和PGE2。本研究结果可能会从维持/丧失气道上皮稳态功能的新观点来增进对O3诱导的气道重塑的机制的了解。

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