Milatovic Snjezana, Nanney Lillian B, Yu Yingchun, White John R, Richmond Ann
Department of Cancer Biology, Vanderbilt University School of Medicine, and Department of Veterans Affairs, Nashville, Tennessee 37232, USA.
Wound Repair Regen. 2003 May-Jun;11(3):213-9. doi: 10.1046/j.1524-475x.2003.11310.x.
To examine the significance of chemokine activation of CXCR2 in wound healing after chemical burn, cutaneous injury was created by topical application of nitrogen mustard on CXCR2 wild type (+/+), heterozygous (+/-), and knockout (-/-) mice. Wounds were analyzed histologically for neutrophil and monocyte infiltration and for reepithelialization at postwound days 4, 7, and 10. Neutrophil recruitment to the wound site was reduced through postwound day 7 in CXCR2 -/- mice as indicated by myeloperoxidase assay and by visual quantitation. Because there is always concern that mice with targeted deletion of a specific receptor may undergo developmental adaptations to offset the loss of the receptor, we also accessed chemical wound repair in the presence of a small molecule antagonist of CXCR2. Dietary supplementation with a CXCR2 antagonist (SB-265610) during the wound repair process also markedly delayed healing parameters in CXCR2 +/+ mice, even greater than treatment with glucocorticoids. These parallel studies further establish that mice deficient in CXCR2 function exhibit delayed cutaneous wound healing that may be primarily linked to impaired neutrophil recruitment after chemical burn with nitrogen mustard. Thus, there may be a potential therapeutic benefit of treating nitrogen mustard-induced skin lesions with agonists of CXCR2 to facilitate the wound repair process.
为了研究趋化因子对CXCR2的激活在化学烧伤后伤口愈合中的意义,通过在CXCR2野生型(+/+)、杂合子(+/-)和基因敲除(-/-)小鼠的皮肤上局部涂抹氮芥来造成皮肤损伤。在伤后第4、7和10天,对伤口进行组织学分析,观察中性粒细胞和单核细胞浸润情况以及再上皮化情况。如髓过氧化物酶检测和视觉定量所示,在伤后第7天之前,CXCR2 -/-小鼠伤口部位的中性粒细胞募集减少。由于一直有人担心特定受体靶向缺失的小鼠可能会发生发育适应性变化以抵消受体缺失的影响,我们还研究了在存在CXCR2小分子拮抗剂的情况下的化学伤口修复情况。在伤口修复过程中,用CXCR2拮抗剂(SB-265610)进行饮食补充也显著延迟了CXCR2 +/+小鼠的愈合参数延迟,甚至比用糖皮质激素治疗的延迟程度更大。这些平行研究进一步证实,CXCR2功能缺陷的小鼠表现出皮肤伤口愈合延迟,这可能主要与氮芥化学烧伤后中性粒细胞募集受损有关。因此,用CXCR2激动剂治疗氮芥诱导的皮肤损伤可能具有潜在的治疗益处,以促进伤口修复过程。