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在体光声分子成像观察烧伤皮肤中血清白蛋白的分布。

In vivo photoacoustic molecular imaging of the distribution of serum albumin in rat burned skin.

机构信息

School of Integrated Design Engineering, Keio University, Yokohama, Japan.

出版信息

Burns. 2013 Nov;39(7):1403-8. doi: 10.1016/j.burns.2013.03.007. Epub 2013 Apr 15.

Abstract

Information on the state of edema is important for treating severe burn injuries, but a method for noninvasive real-time quantitative diagnosis of edema is not available. Thus, in vivo spatiotemporal characteristics of serum albumin, which would behave differently from water in burned tissue, are not fully understood. In this study, we used a photoacoustic (PA) imaging method to visualize depth distribution of albumin in a rat deep burn model, for which Evans blue was used as a nontoxic molecular probe. Water content in the tissue and urine volume were also measured for reference. We performed PA imaging of albumin in three regions in the rats, burn and nonburn regions and their boundary, and the imaging showed that albumin started to leak out of the vessels in the boundary and diffused within the burned tissue. Diffusion of albumin into the nonburn region, where water content was increased, was limited. In the burn and boundary regions, albumin-originating PA signal increased in two phases: immediately after making burns and from 24 to 72 h after burn. The second increase is attributable to the selective return of water to the vessels, resulting in increased concentration of albumin in extravascular tissue.

摘要

水肿状态的信息对于治疗严重烧伤至关重要,但目前尚无非侵入性实时定量诊断水肿的方法。因此,人们对烧伤组织中不同于水的血清白蛋白的体内时空特征还不完全了解。在这项研究中,我们使用光声(PA)成像方法可视化大鼠深度烧伤模型中白蛋白的深度分布,其中使用 Evans 蓝作为无毒分子探针。还测量了组织中的含水量和尿量作为参考。我们对大鼠的三个区域(烧伤和非烧伤区域及其边界)进行了白蛋白的 PA 成像,成像结果表明白蛋白开始从边界处的血管漏出并在烧伤组织内扩散。白蛋白扩散到含水量增加的非烧伤区域受到限制。在烧伤和边界区域,白蛋白产生的 PA 信号分两个阶段增加:烧伤后立即增加,烧伤后 24 至 72 小时增加。第二个增加归因于水选择性地返回血管,导致血管外组织中白蛋白浓度增加。

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