Immunobiology for Aquaculture Group, Department of Cell Biology and Histology, Faculty of Biology, University of Murcia, Murcia, Spain.
Integrated Center for Biomedical Research (CEIB), Health Sciences Campus, University of Murcia, Murcia, Spain.
J Fish Dis. 2021 Aug;44(8):1091-1100. doi: 10.1111/jfd.13370. Epub 2021 Mar 24.
This work aimed to carry out an in vivo study of the skin healing process in gilthead seabream (Sparus aurata) after being experimentally wounded. Firstly, the structure of normal skin was studied by real-time ultrasonography (Vevo Lab, VisualSonics) and light microscopy. Besides this, experimental wounds were made on the left flank of each fish with a circular biopsy punch (8 mm diameter) below the lateral line. The healing process was assessed on live fish at 0, 6, 11 and 23 days post-wounding using the real-time ultrasonography in B-mode and Power Doppler mode (Vevo 3100 FUJIFILM, VisualSonics). Through the ultrasonography images, both the skin structure and the evolution of the changes that wounds originated in the surrounding tissues were studied in vivo over time. Concomitantly, the pattern of neovascularization in the wounded area was followed during the healing process and it was demonstrated that, although the neovascularization started very early after the skin damage, it was increased in wounded areas from day 11 post-wounding onwards. The results obtained proved the utility and power of using ultrasounds in fish to evaluate in vivo complex biological processes in real time, which are difficult to study by other methodologies. The present data shed some light on the reparation of external injuries in aquatic vertebrates.
本研究旨在对经过实验性创伤的金头鲷(Sparus aurata)皮肤愈合过程进行体内研究。首先,通过实时超声(Vevo Lab,VisualSonics)和光镜研究正常皮肤的结构。此外,在侧线下方用圆形活检冲孔(8 毫米直径)在每只鱼的左侧侧翼制造实验性伤口。在 0、6、11 和 23 天的活体鱼上使用实时超声 B 模式和功率多普勒模式(Vevo 3100 FUJIFILM,VisualSonics)评估愈合过程。通过超声图像,我们研究了随时间推移的皮肤结构和周围组织中伤口起源的变化的演变。同时,在愈合过程中跟踪了受伤区域的新血管生成模式,结果表明,尽管皮肤损伤后新血管生成很早就开始了,但从第 11 天开始,受伤区域的新血管生成增加了。所得结果证明了在鱼类中使用超声实时评估体内复杂生物过程的实用性和强大功能,这些过程很难通过其他方法学进行研究。本研究数据为水生脊椎动物的外部损伤修复提供了一些线索。