Department of Plastic, Aesthetic, Hand and Reconstructive Surgery, Hannover Medical School, Hannover, Germany.
Technical Chemistry I and Center for Nanointegration Duisburg-Essen, University of Duisburg-Essen, Duisburg, Germany.
Biol Trace Elem Res. 2019 Sep;191(1):167-176. doi: 10.1007/s12011-018-1600-y. Epub 2018 Dec 14.
Wound healing is a complex orchestration of processes involving cell proliferation, migration, differentiation, anabolism, and catabolism in order to restore skin continuity. Within these processes, elements such as metallic ions are involved due to their implications in cell behavior and enzymatic activity regulation. This study analyzed the kinetics of zinc, iron, copper and magnesium concentrations in a full thickness open wound rat model over 14 days. We made wounds with a diameter of 6 mm on the back of Lewis rats and let them heal naturally prior to analysis by histology and inductively coupled plasma mass spectrometry analysis. Histological and immunofluorescence analysis confirmed an inflammation phase until 7 days, epithelial proliferation phase from 16 h to 10 days, and remodeling phase from 7 days onward. These defined phases were correlated with the measured metal element kinetics. Zinc concentrations showed an inverted parabolic progression between 30.4 and a maximum of 39.9 μg/g dry weight. Magnesium values had a similar pattern between 283 and 499 μg/g dry weight. Copper concentrations, on the other hand, followed an inverted sigmoid trend with a decrease from 9.8 to 1.5 μg/g dry weight. Iron had a slight decrease in concentration for 24 h followed by an increase to a maximum of 466 μg/g dry weight. In conclusion, zinc, iron, and copper, even though differing in their total mass within the wound, exhibited concentration curve transitions at day 3. Interestingly, this time point correlates with the maximum proliferating keratinocyte rate during the proliferation phase.
伤口愈合是一个涉及细胞增殖、迁移、分化、合成代谢和分解代谢等过程的复杂协调过程,旨在恢复皮肤的连续性。在这些过程中,由于金属离子对细胞行为和酶活性调节的影响,元素如锌、铁、铜和镁等也会参与其中。本研究分析了在 14 天内全层开放性创伤大鼠模型中锌、铁、铜和镁浓度的动力学。我们在 Lewis 大鼠背部制造了直径为 6 毫米的伤口,并在组织学和电感耦合等离子体质谱分析前让其自然愈合。组织学和免疫荧光分析证实存在炎症期,持续 7 天,上皮增殖期从 16 小时到 10 天,重塑期从 7 天开始。这些定义的阶段与所测量的金属元素动力学相关。锌浓度在 30.4 到 39.9μg/g 干重之间呈倒抛物线趋势。镁值在 283 到 499μg/g 干重之间呈现相似的模式。另一方面,铜浓度呈倒 S 型趋势下降,从 9.8 到 1.5μg/g 干重。铁的浓度在 24 小时内略有下降,随后增加到 466μg/g 干重的最大值。总之,尽管锌、铁和铜在伤口中的总质量不同,但在第 3 天表现出浓度曲线的转变。有趣的是,这一时间点与增殖期最大增殖角蛋白细胞速率相关。