Niethammer Philipp, Grabher Clemens, Look A Thomas, Mitchison Timothy J
Department of Systems Biology, Harvard Medical School, Boston, Massachusetts 02114, USA.
Nature. 2009 Jun 18;459(7249):996-9. doi: 10.1038/nature08119. Epub 2009 Jun 3.
Barrier structures (for example, epithelia around tissues and plasma membranes around cells) are required for internal homeostasis and protection from pathogens. Wound detection and healing represent a dormant morphogenetic program that can be rapidly executed to restore barrier integrity and tissue homeostasis. In animals, initial steps include recruitment of leukocytes to the site of injury across distances of hundreds of micrometres within minutes of wounding. The spatial signals that direct this immediate tissue response are unknown. Owing to their fast diffusion and versatile biological activities, reactive oxygen species, including hydrogen peroxide (H(2)O(2)), are interesting candidates for wound-to-leukocyte signalling. Here we probe the role of H(2)O(2) during the early events of wound responses in zebrafish larvae expressing a genetically encoded H(2)O(2) sensor. This reporter revealed a sustained rise in H(2)O(2) concentration at the wound margin, starting approximately 3 min after wounding and peaking at approximately 20 min, which extended approximately 100-200 microm into the tail-fin epithelium as a decreasing concentration gradient. Using pharmacological and genetic inhibition, we show that this gradient is created by dual oxidase (Duox), and that it is required for rapid recruitment of leukocytes to the wound. This is the first observation, to our knowledge, of a tissue-scale H(2)O(2) pattern, and the first evidence that H(2)O(2) signals to leukocytes in tissues, in addition to its known antiseptic role.
屏障结构(例如,组织周围的上皮细胞和细胞周围的质膜)对于维持体内稳态和抵御病原体是必需的。伤口检测和愈合代表了一种休眠的形态发生程序,可迅速执行以恢复屏障完整性和组织稳态。在动物中,初始步骤包括在受伤后几分钟内,将白细胞招募到数百微米距离外的损伤部位。引导这种即时组织反应的空间信号尚不清楚。由于其快速扩散和多样的生物活性,包括过氧化氢(H₂O₂)在内的活性氧是伤口到白细胞信号传导的有趣候选物质。在这里,我们在表达基因编码的H₂O₂传感器的斑马鱼幼虫中,探究了H₂O₂在伤口反应早期事件中的作用。该报告基因显示,伤口边缘的H₂O₂浓度持续升高,在受伤后约3分钟开始,约20分钟达到峰值,并以浓度递减梯度延伸到尾鳍上皮中约100 - 200微米处。通过药理学和遗传学抑制,我们表明这种梯度是由双氧化酶(Duox)产生的,并且它是白细胞快速募集到伤口所必需的。据我们所知,这是首次观察到组织尺度的H₂O₂模式,也是H₂O₂除了其已知的抗菌作用外,还能向组织中的白细胞发出信号的首个证据。