Department of Medical Surgical Sciences and Biotechnologies, Sapienza University, Latina, Italy; Department of AngioCardioNeurology, IRCCS Neuromed, Pozzilli, Italy.
Institute of Biochemistry and Cell Biology, National Council of Research (IBBC-CNR), Monterotondo, Italy.
Biochim Biophys Acta Mol Basis Dis. 2024 Oct;1870(7):167350. doi: 10.1016/j.bbadis.2024.167350. Epub 2024 Jul 15.
Chronic smokers have increased risk of fibrosis-related atrial fibrillation. The use of heated-tobacco products (HTPs) is increasing exponentially, and their health impact is still uncertain. We aim to investigate the effects of circulating molecules in exclusive HTP chronic smokers on the fibrotic behavior of human atrial cardiac stromal cells (CSCs). CSCs were isolated from atrial tissue of elective cardiac surgery patients, and exposed to serum lots from young healthy subjects, stratified in exclusive HTP smokers, tobacco combustion cigarette (TCC) smokers, or nonsmokers (NS). CSCs treated with TCC serum displayed impaired migration and increased expression of pro-inflammatory cytokines. Cells cultured with HTP serum showed increased levels of pro-fibrotic markers, and reduced expression of connexin-43. Both TCC and HTP sera increased collagen release and reduced secretion of angiogenic protective factors from CSCs, compared to NS serum. Paracrine support to tube-formation by endothelial cells and to viability of cardiomyocytes was significantly impaired. Treatment with sera of both smokers groups impaired HO/NO release balance by CSCs and reduced early phosphorylation of several pathways compared to NS serum, leading to mTOR activation. Cotreatment with rapamycin was able to reduce mTOR phosphorylation and differentiation into aSMA-positive myofibroblasts in CSCs exposed to TCC and HTP sera. In conclusion, the circulating molecules in the serum of chronic exclusive HTP smokers induce fibrotic behavior in CSCs through activation of the mTOR pathway, and reduce their beneficial paracrine effects on endothelial cells and cardiomyocytes. These results point to a potential risk for cardiac fibrosis in chronic HTP users.
慢性吸烟者患纤维化相关心房颤动的风险增加。加热烟草制品(HTP)的使用呈指数级增长,但其健康影响尚不确定。我们旨在研究慢性单纯 HTP 吸烟者循环分子对人心房心脏基质细胞(CSC)纤维化行为的影响。CSC 从择期心脏手术患者的心房组织中分离出来,并暴露于来自年轻健康受试者的血清批次中,分为单纯 HTP 吸烟者、燃烧香烟(TCC)吸烟者或非吸烟者(NS)。用 TCC 血清处理的 CSC 显示出迁移受损和促炎细胞因子表达增加。用 HTP 血清培养的细胞表现出更高水平的促纤维化标志物,以及连接蛋白 43 表达降低。与 NS 血清相比,TCC 和 HTP 血清均增加了 CSC 胶原释放并减少了血管生成保护因子的分泌。内皮细胞形成管状结构和心肌细胞活力的旁分泌支持显著受损。与 NS 血清相比,两组吸烟者的血清处理均破坏了 CSCs 中 HO/NO 释放平衡,并减少了几条通路的早期磷酸化,导致 mTOR 激活。用雷帕霉素共同处理可减少 CSCs 中 TCC 和 HTP 血清暴露后 mTOR 磷酸化和向 aSMA 阳性肌成纤维细胞的分化。总之,慢性单纯 HTP 吸烟者血清中的循环分子通过激活 mTOR 通路诱导 CSC 纤维化行为,并降低其对内皮细胞和心肌细胞的有益旁分泌作用。这些结果表明慢性 HTP 用户存在心脏纤维化的潜在风险。