Damay Vito A, Lesmana Ronny, Akbar Muhammad Rizki, Lukito Antonia Anna, Tarawan Vita M, Martha Januar W, Nugroho J, Sugiharto Sony
Department of Cardiovascular Medicine, Universitas Pelita Harapan, Banten, Indonesia.
Department of Biomedical Sciences, Universitas Padjadjaran, Bandung, Indonesia.
Int J Vasc Med. 2023 Jul 25;2023:8874599. doi: 10.1155/2023/8874599. eCollection 2023.
Smoking is related to vascular aging. However, the hazardous effect of e-cigarette is often debatable, with limited studies available. In contrast, moderate-intensity aerobic exercise is well known to decrease aortic stiffness. We provide novel research to determine the effect of e-cigarette and aerobic moderate-intensity exercise on the aortic structure of Wistar rats. A total of 26 male Wistar rats (Rattus norvegicus) 8 weeks aged, 200-250 g b.w., were randomly divided into 4 groups, namely, K0 (normal rats), K1 (rats were given moderate-intensity aerobic exercise by animal treadmill 20 m/30 min), K2 (rats were given e-cigarette with 6 mg nicotine, 40% propylene glycol, and 60% vegetable glycerine 30 min for 5 days/week), and K3 (rats were given e-cigarette and moderate-intensity aerobic exercise). After exposure for 6 weeks, all animals were sacrificed to isolate the aorta for histopathological analysis with hematoxylin-eosin stain to evaluate the elastic fiber layer and intimal-medial thickness. The Verhoeff-Van Gieson staining was done for quantification elastic lamina fragmentation. Our study found that the e-cigarette group had the highest elastic lamina fragmentation among groups (8.14 ± 2.85). The exercise only group showed the lowest elastic lamina fragmentation (2.50 ± 1.87). Fragmentation in the e-cigarette and exercise group was higher than in the exercise only group (5.83 ± 0.753 vs. 2.50 ± 1.87, = 0.002). There is a significant difference of NO serum between four groups. The result of post hoc analysis using LSD showed that there is a significant difference of NO serum between K0 and K2, K0 and K3, K1 and K2, and K1 and K3. Therefore, our research demonstrated that the most injury of aorta elastic lamina was in the group that was exposed to e-cigarette that leads to vascular aging while exercise is not yet proven to reverse this effect.
吸烟与血管衰老有关。然而,电子烟的有害影响常常存在争议,相关研究有限。相比之下,众所周知,中等强度的有氧运动可降低主动脉僵硬度。我们开展了新的研究,以确定电子烟和中等强度有氧运动对Wistar大鼠主动脉结构的影响。选取26只8周龄、体重200 - 250克的雄性Wistar大鼠(褐家鼠),随机分为4组,即K0组(正常大鼠)、K1组(通过动物跑步机给予中等强度有氧运动,速度20米/30分钟)、K2组(给予含6毫克尼古丁、40%丙二醇和60%蔬菜甘油的电子烟,每周5天,每次30分钟)和K3组(给予电子烟并进行中等强度有氧运动)。暴露6周后,处死所有动物,分离主动脉,用苏木精 - 伊红染色进行组织病理学分析,以评估弹性纤维层和内膜 - 中膜厚度。采用Verhoeff - Van Gieson染色对弹性板碎片化进行定量分析。我们的研究发现,电子烟组的弹性板碎片化程度在各组中最高(8.14 ± 2.85)。仅运动组的弹性板碎片化程度最低(2.50 ± 1.87)。电子烟与运动组的碎片化程度高于仅运动组(5.83 ± 0.753对2.50 ± 1.87,P = 0.002)。四组之间血清一氧化氮存在显著差异。使用LSD进行的事后分析结果显示,K0与K2、K0与K3、K1与K2以及K1与K3之间血清一氧化氮存在显著差异。因此,我们的研究表明,主动脉弹性板损伤最严重的是暴露于电子烟的组,这会导致血管衰老,而运动尚未被证明能逆转这种影响。