Veterinary Medicine Post-Graduation Program, Federal University of Santa Maria, Santa Maria City, Brazil.
Campus Itaqui, Federal University of Pampa, Itaqui city, Brazil.
Free Radic Res. 2024 May-Jun;58(6-7):367-379. doi: 10.1080/10715762.2024.2375200. Epub 2024 Jul 4.
This study evaluated the effects of topically applied hydrogels (HG) containing nanoencapsulated indol-3-carbinol (I3C) and its free form in a rat model of skin wounds. Formulations were topically applied twice a day for five days to the wounds. On days 1, 3, and 6, the wound area was measured to verify the % of regression. On the sixth day, the animals were euthanized for the analysis of the inflammatory and oxidative profile in wounds. The nanocapsules (NC) exhibited physicochemical characteristics compatible with this kind of suspension. After five hours of exposure to ultraviolet C, more than 78% of I3C content in the suspensions was still observed. The NC-I3C did not modify the physicochemical characteristics of HG when compared to the HG base. In the study, an increase in the size of the wound was observed on the 3rd experimental day, which was lower in the treated groups (mainly in HG-NC-I3C) compared to the control. On the 6th day, HG-I3C, HG-NC-B, and HG-NC-I3C showed lower regression of the wound compared to the control. Additionally, HG-NC-I3C exhibited an anti-inflammatory effect (as observed by decreased levels of interleukin-1B and myeloperoxidase), reduced oxidative damage (by decreased reactive species, lipid peroxidation, and protein carbonylation levels), and increased antioxidant defense (by improved catalase activity and vitamin C levels) compared to the control. The current study showed more satisfactory results in the HG-NC-I3C group than in the free form of I3C in decreasing acute inflammation and oxidative damage in wounds.
本研究评估了含有纳米包裹吲哚-3-甲醇(I3C)及其游离形式的水凝胶(HG)在大鼠皮肤伤口模型中的作用。制剂每天两次涂于伤口,持续五天。在第 1、3 和 6 天,测量伤口面积以验证回归的百分比。在第 6 天,对动物进行安乐死,以分析伤口中的炎症和氧化谱。纳米胶囊(NC)表现出与这种悬浮液相容的物理化学特性。在暴露于紫外线 C 五个小时后,悬浮液中仍观察到超过 78%的 I3C 含量。与 HG 基相比,NC-I3C 不改变 HG 的物理化学特性。在研究中,观察到第 3 个实验日伤口增大,而治疗组(主要是 HG-NC-I3C)的伤口则较小。在第 6 天,与对照组相比,HG-I3C、HG-NC-B 和 HG-NC-I3C 显示出较低的伤口回归。此外,与对照组相比,HG-NC-I3C 表现出抗炎作用(如白细胞介素-1B 和髓过氧化物酶水平降低)、减少氧化损伤(通过降低活性物质、脂质过氧化和蛋白质羰基化水平)和增强抗氧化防御(通过提高过氧化氢酶活性和维生素 C 水平)。与游离形式的 I3C 相比,本研究中 HG-NC-I3C 组在减少急性炎症和氧化损伤方面表现出更令人满意的结果。