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定量超声与胰腺:早期检测能力的验证。

Quantitative Ultrasound and the Pancreas: Demonstration of Early Detection Capability.

机构信息

Bioacoustics Research Laboratory, Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.

Department of Food Science and Human Nutrition , University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.

出版信息

J Ultrasound Med. 2019 Aug;38(8):2093-2102. doi: 10.1002/jum.14901. Epub 2018 Dec 21.

Abstract

OBJECTIVES

To show that quantitative ultrasound biomarkers attenuation (AC) and backscatter (BSC) coefficients are effective tools to detect early changes in acute pancreatitis, using a cerulein-induced pancreatitis rat model.

METHODS

Sprague-Dawley rats (n = 68) were divided into 8 groups: uninjected cage controls, saline-injected controls, and cerulein-injected rats euthanized at 2, 4, 15, 24, 48, and 60 hours after injection. Pancreatic AC and BSC (25-55 MHz) were estimated in vivo (Vevo 2100, VisualSonics, Toronto, CA) and ex vivo (40-MHz transducer). The pancreas of each rat was evaluated histopathologically.

RESULTS

Changes in both in vivo and ex vivo AC and BSC relative to controls reflected temporal histomorphologic changes. Overall, there were decreased AC and BSC at early time points and then rebound toward control values over time. Maximal in vivo AC and BSC decreases occurred at 2 hours after cerulein injection. Attenuation coefficient changes corresponded well with early pancreatic edema and acinar cell vacuolation, with rebound as edema decreased, autophagy/cellular death occurred, and histiocytic infiltrates and fibrosis manifested. Backscatter coefficient decreased early but rebounded as autophagy and apoptosis increased, only to fall as acinar atrophy peaked, and fibrosis and histiocytic infiltration increased.

CONCLUSIONS

Cerulein-induced pancreatitis is an excellent model for studying ultrasonic AC and BSC biomarkers during the early stages of acute pancreatitits, reflecting microscopic structural changes. Edema followed by cell shrinkage and apoptosis, then histiocytic infiltration and fibrosis, has certain similarities with the morphologies of some forms of pancreatic carcinoma. This suggests that quantitative ultrasound may be very useful for early detection of disease onset or response to therapy for not only acute pancreatitis but also pancreatic cancer.

摘要

目的

使用缩胆囊素诱导的胰腺炎大鼠模型证明定量超声生物标志物衰减(AC)和反向散射(BSC)系数是检测急性胰腺炎早期变化的有效工具。

方法

将 Sprague-Dawley 大鼠(n=68)分为 8 组:未注射笼对照、生理盐水注射对照和注射缩胆囊素后 2、4、15、24、48 和 60 小时安乐死的大鼠。使用 Vevo 2100(VisualSonics,多伦多,CA)体内(25-55 MHz)和体外(40 MHz 换能器)评估胰腺 AC 和 BSC。对每只大鼠的胰腺进行组织病理学评估。

结果

与对照相比,体内和体外 AC 和 BSC 的变化反映了时间上的组织形态学变化。总的来说,在早期时间点,AC 和 BSC 降低,然后随着时间的推移向对照值反弹。在注射缩胆囊素后 2 小时,体内最大 AC 和 BSC 降低。衰减系数的变化与早期胰腺水肿和腺泡细胞空泡化相符,随着水肿减少、自噬/细胞死亡发生和组织细胞浸润和纤维化表现,出现反弹。BSC 早期降低但随着自噬和凋亡增加而反弹,仅当腺泡萎缩达到峰值,纤维化和组织细胞浸润增加时才下降。

结论

缩胆囊素诱导的胰腺炎是研究急性胰腺炎早期超声 AC 和 BSC 生物标志物的极好模型,反映了微观结构变化。水肿后细胞收缩和凋亡,然后是组织细胞浸润和纤维化,与某些类型胰腺癌的形态具有一定相似性。这表明,定量超声可能对急性胰腺炎和胰腺癌的疾病早期检测或对治疗的反应非常有用。

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