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大鼠肺移植模型中急性移植排斥反应的非侵入性评估

Noninvasive assessment for acute allograft rejection in a rat lung transplantation model.

作者信息

Takahashi Ayuko, Hamakawa Hiroshi, Sakai Hiroaki, Zhao Xiangdong, Chen Fengshi, Fujinaga Takuji, Shoji Tsuyoshi, Bando Toru, Wada Hiromi, Date Hiroshi

机构信息

Department of Thoracic Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.

Department of Thoracic Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan Department of Thoracic Surgery, Kobe City Medical Center General Hospital, Hyogo, Japan.

出版信息

Physiol Rep. 2014 Dec 18;2(12). doi: 10.14814/phy2.12244. Print 2014 Dec 1.

Abstract

After lung transplantation, early detection of acute allograft rejection is important not only for timely and optimal treatment, but also for the prediction of chronic rejection which is a major cause of late death. Many biological and immunological approaches have been developed to detect acute rejection; however, it is not well known whether lung mechanics correlate with disease severity, especially with pathological rejection grade. In this study, we examined the relationship between lung mechanics and rejection grade development in a rat acute rejection model using the forced oscillation technique, which provides noninvasive assessment of lung function. To this end, we assessed lung resistance and elastance (RL and EL) from implanted left lung of these animals. The perivascular/interstitial component of rejection severity grade (A-grade) was also quantified from histological images using tissue fraction (TF; tissue + cell infiltration area/total area). We found that TF, RL, and EL increased according to A-grade. There was a strong positive correlation between EL at the lowest frequency (Elow; EL at 0.5 Hz) and TF (r(2) = 0.930). Furthermore, the absolute difference between maximum value of EL (Emax) and Elow (Ehet; Emax - Elow) showed the strong relationship with standard deviation of TF (r(2) = 0.709), and A-grade (Spearman's correlation coefficients; rs = 0.964, P < 0.0001). Our results suggest that the dynamic elastance as well as its frequency dependence have the ability to predict A-grade. These indexes should prove useful for noninvasive detection and monitoring the progression of disease in acute rejection.

摘要

肺移植后,早期检测急性移植物排斥反应不仅对于及时且最佳的治疗很重要,而且对于预测作为晚期死亡主要原因的慢性排斥反应也很重要。已经开发了许多生物学和免疫学方法来检测急性排斥反应;然而,肺力学是否与疾病严重程度相关,尤其是与病理排斥分级相关,目前尚不清楚。在本研究中,我们使用强迫振荡技术在大鼠急性排斥反应模型中研究了肺力学与排斥分级发展之间的关系,该技术可提供肺功能的无创评估。为此,我们评估了这些动物植入左肺的肺阻力和弹性(RL和EL)。还使用组织分数(TF;组织+细胞浸润面积/总面积)从组织学图像中量化了排斥严重程度分级(A级)的血管周围/间质成分。我们发现TF、RL和EL随A级增加。最低频率下的EL(Elow;0.5Hz时的EL)与TF之间存在强正相关(r(2)=0.930)。此外,EL最大值(Emax)与Elow之间的绝对差值(Ehet;Emax-Elow)与TF的标准差显示出强相关性(r(2)=0.709),以及与A级(Spearman相关系数;rs=0.964,P<0.0001)。我们的结果表明,动态弹性及其频率依赖性有能力预测A级。这些指标应被证明对急性排斥反应中疾病的无创检测和监测进展有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee70/4332222/b6467b31a800/phy2-2-e12244-g1.jpg

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