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发表于 2021-4-8 19:45 |只看该作者 |倒序浏览 |打印
Evolution of the liver biopsy and its future
Dhanpat Jain  1 , Richard Torres  2 , Romulo Celli  1 , Jeremy Koelmel  3 , Georgia Charkoftaki  3 , Vasilis Vasiliou  3
Affiliations
Affiliations

    1
    Department of Anatomic Pathology, Yale University School of Medicine, New Haven, CT, USA.
    2
    Department of Laboratory Medicine, Yale University School of Medicine, New Haven, CT, USA.
    3
    Department of Environmental Health Sciences, Yale School of Public Health, New Haven, CT, USA.

    PMID: 33824924 PMCID: PMC7829074 DOI: 10.21037/tgh.2020.04.01

Abstract

Liver biopsies are commonly used to evaluate a wide variety of medical disorders, including neoplasms and post-transplant complications. However, its use is being impacted by improved clinical diagnosis of disorders, and non-invasive methods for evaluating liver tissue and as a result the indications of a liver biopsy have undergone major changes in the last decade. The evolution of highly effective treatments for some of the common indications for liver biopsy in the last decade (e.g., viral hepatitis B and C) has led to a decline in the number of liver biopsies in recent years. At the same time, the emergence of better technologies for histologic evaluation, tissue content analysis and genomics are among the many new and exciting developments in the field that hold great promise for the future and are going to shape the indications for a liver biopsy in the future. Recent advances in slide scanners now allow creation of "digital/virtual" slides that have image of the entire tissue section present in a slide [whole slide imaging (WSI)]. WSI can now be done very rapidly and at very high resolution, allowing its use in routine clinical practice. In addition, a variety of technologies have been developed in recent years that use different light sources and/or microscopes allowing visualization of tissues in a completely different way. One such technique that is applicable to liver specimens combines multiphoton microscopy (MPM) with advanced clearing and fluorescent stains known as Clearing Histology with MultiPhoton Microscopy (CHiMP). Although it has not yet been extensively validated, the technique has the potential to decrease inefficiency, reduce artifacts, and increase data while being readily integrable into clinical workflows. Another technology that can provide rapid and in-depth characterization of thousands of molecules in a tissue sample, including liver tissues, is matrix assisted laser desorption/ionization (MALDI) mass spectrometry. MALDI has already been applied in a clinical research setting with promising diagnostic and prognostic capabilities, as well as being able to elucidate mechanisms of liver diseases that may be targeted for the development of new therapies. The logical next step in huge data sets obtained from such advanced analysis of liver tissues is the application of machine learning (ML) algorithms and application of artificial intelligence (AI), for automated generation of diagnoses and prognoses. This review discusses the evolving role of liver biopsies in clinical practice over the decades, and describes newer technologies that are likely to have a significant impact on how they will be used in the future.

Keywords: Clearing Histology with MultiPhoton Microscopy (CHiMP); Liver biopsy; matrix assisted laser desorption imaging (MALDI); whole slide imaging (WSI).

2021 Translational Gastroenterology and Hepatology. All rights reserved.

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发表于 2021-4-8 19:45 |只看该作者
肝活检的发展及其未来
Dhanpat Jain 1,Richard Torres 2,Romulo Celli 1,Jeremy Koelmel 3,Georgia Charkoftaki 3,Vasilis Vasiliou 3
隶属关系
隶属关系

    1个
    耶鲁大学医学院解剖病理学系,美国康涅狄格州纽黑文。
    2个
    耶鲁大学医学院检验医学系,美国康涅狄格州纽黑文。
    3
    美国康涅狄格州纽黑文市耶鲁大学公共卫生学院环境卫生科学系。

    PMID:33824924 PMCID:PMC7829074 DOI:10.21037 / tgh.2020.04.01

抽象的

肝活检通常用于评估各种医学疾病,包括肿瘤和移植后并发症。但是,其使用受到疾病改善的临床诊断和评估肝组织的非侵入性方法的影响,因此,过去十年来肝活检的指征发生了重大变化。在过去十年中,针对肝活检的某些常见适应症(例如,病毒性乙型和丙型肝炎)的高效治疗方法的发展导致近年来肝活检数量的下降。同时,更好的组织学评估,组织含量分析和基因组学技术的出现是该领域众多令人振奋的新发展,这些发展对未来具有广阔的前景,并将塑造肝脏活检的适应症。未来。幻灯片扫描仪的最新进展现在允许创建“数字/虚拟”幻灯片,该幻灯片具有幻灯片中存在的整个组织切片的图像[整个幻灯片成像(WSI)]。 WSI现在可以非常快速且高分辨率地完成,从而可以在常规临床实践中使用。另外,近年来已经开发出多种技术,这些技术使用不同的光源和/或显微镜,从而以完全不同的方式可视化组织。一种适用于肝脏标本的技术将多光子显微镜(MPM)与先进的清除和荧光染色相结合,称为“多组织光子显微镜清除组织学(CHiMP)”。尽管尚未得到广泛验证,但该技术具有降低效率低下,减少伪影和增加数据的潜力,同时易于集成到临床工作流程中。可以提供包括肝脏组织在内的组织样本中数千种分子的快速,深入表征的另一种技术是基质辅助激光解吸/电离(MALDI)质谱。 MALDI已经在临床研究中得到了应用,具有令人满意的诊断和预后功能,并且能够阐明可能针对新疗法开发的肝病机制。从此类肝脏组织的高级分析获得的海量数据集中,逻辑上的下一步是应用机器学习(ML)算法和人工智能(AI)来自动生成诊断和预测。这篇综述讨论了肝脏活检在过去几十年中在临床实践中不断发展的作用,并描述了可能对将来的使用产生重大影响的新技术。

关键字:用多光子显微镜(CHiMP)清除组织​​学;肝活检;基质辅助激光解吸成像(MALDI);整个幻灯片成像(WSI)。

2021年转化胃肠病学和肝病学。版权所有。

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发表于 2021-4-8 19:45 |只看该作者
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