Second-Harmonic Generated Quantifiable Fibrosis Parameters Provide Signatures for Disease Progression and Regression in Nonalcoholic Fatty Liver Disease.

IF 1.9 Q3 PATHOLOGY Clinical Pathology Pub Date : 2023-01-01 DOI:10.1177/2632010X231162317
Nicole Ng, Dean Tai, Yayun Ren, Elaine Chng, Mulugeta Seneshaw, Faridoddin Mirshahi, Michael Idowu, Amon Asgharpour, Arun J Sanyal
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引用次数: 1

Abstract

Introduction: The current ordinal fibrosis staging system for nonalcoholic steatohepatitis (NASH) has a limited dynamic range. The goal of this study was to determine if second-harmonic generated (SHG) quantifiable collagen fibrillar properties (qFP) and their derived qFibrosis score capture changes in disease progression and regression in a murine model of NASH, in which disease progression can be induced by a high fat sugar water (HFSW) diet and regression by reversal to chow diet (CD).

Methods: DIAMOND mice were fed a CD or HFSW diet for 40 to 52 weeks. Regression related changes were studied in mice with diet reversal for 4 weeks after 48 to 60 weeks of a HFSW diet.

Results: As expected, mice on HFSW developed steatohepatitis with stage 2 to 3 fibrosis between weeks 40 and 44. Both the collagen proportionate area and the qFibrosis score based on 15 SHG-quantified collagen fibrillar properties in humans were significantly higher in mice on HFSW for 40 to 44 weeks compared to CD fed mice. These changes were greatest in the sinusoids (Zone 2) with further increase in septal and portal fibrosis related scores between weeks 44 and 48. Diet reversal led to decrease in qFibrosis, septal thickness, and cellularity with greatest changes in Zone 2. Specific qFPs associated with progression only, regression only, or both processes were identified and categorized based on direction of fibrosis change.

Conclusion: Complementing recent human studies, these findings support the concept that changes of disease progression and regression can be assessed using SHG-based image quantification of fibrosis related parameters.

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二次谐波产生的可量化纤维化参数提供了非酒精性脂肪肝疾病进展和回归的特征。
目前非酒精性脂肪性肝炎(NASH)的有序纤维化分期系统具有有限的动态范围。本研究的目的是确定二次谐波生成(SHG)可量化的胶原纤维特性(qFP)及其衍生的qFibrosis评分是否捕获了NASH小鼠模型中疾病进展和消退的变化,在NASH小鼠模型中,高脂糖水(HFSW)饮食可诱导疾病进展,而转食(CD)饮食可诱导疾病进展。方法:DIAMOND小鼠分别饲喂CD或HFSW饲料40 ~ 52周。在48至60周的HFSW饮食后,在饮食逆转4周的小鼠中研究了回归相关的变化。结果:正如预期的那样,HFSW小鼠在第40周至第44周发生脂肪性肝炎并伴有2至3期纤维化。与CD喂养的小鼠相比,食用HFSW 40至44周的小鼠胶原比例面积和基于15种shg量化的人类胶原纤维特性的q纤维化评分均显著高于CD喂养的小鼠。这些变化在窦状窦(2区)最大,在第44周和第48周之间,室间隔和门脉纤维化相关评分进一步增加。饮食逆转导致q纤维化、间隔厚度和细胞结构减少,其中2区变化最大。特异性qfp仅与进展相关,仅与倒退相关,或两种过程都相关,并根据纤维化变化的方向进行识别和分类。结论:与最近的人体研究相补充,这些发现支持疾病进展和消退的变化可以通过基于shg的纤维化相关参数的图像量化来评估。
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来源期刊
Clinical Pathology
Clinical Pathology PATHOLOGY-
CiteScore
2.20
自引率
7.70%
发文量
66
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