基于组织凝胶的技术可将有机体包埋在石蜡块中,从而实现高通量的下游组织病理学分析。

IF 0.6 4区 生物学 Q4 CELL BIOLOGY Journal of Histotechnology Pub Date : 2024-09-05 DOI:10.1080/01478885.2024.2398381
Charles Havnar, Loryn Holokai, Ryan Ichikawa, Wennie Chen, Alexis Scherl, Eliah R Shamir
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引用次数: 0

摘要

有机体是一种体外组织模型,来源于人类或动物的原始组织或干细胞,可用于研究三维(3D)组织生物学、毒性测试、生物标记物评估和化合物疗效评估,补充或可能最大限度地减少动物模型的使用。有机体通常在细胞外基质中以三维形式培养,实验结束后可进一步处理,以获得各种细胞或分子读数。分析通常需要对感兴趣的标记物进行整装免疫标记,这需要消耗整个样本/孔,从而限制了下游检测的样本可用性。此外,三维培养物在固定后会变得更加易碎,在清洗步骤中很容易丢失样本。与此相反,通过将器官组织固定并处理成石蜡块,可以生成数十或数百张未经染色的切片,从而可以通过多种检测方法(包括组织学评估和(免疫)组织化学染色)进行稳健的表征,从而最大限度地提高这些费时费力的培养物的产量。在此,我们介绍了使用 Histogel 作为包埋剂将三维 Matrigel 培养物加工成石蜡块的三种方法。这三种技术都能获得高质量的切片,但不同步骤的实施复杂程度各不相同,我们还讨论了它们在不同用例中的应用。
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Histogel-based techniques for embedding organoids in paraffin blocks enable high throughput downstream histopathological analyses.

Organoids are in vitro tissue models derived from human or animal primary tissues or stem cells that allow for studying three-dimensional (3D) tissue biology, toxicity testing, biomarker evaluation, and assessment of compound efficacy, supplementing or potentially minimizing use of animal models. Organoids are typically cultured in a 3D format within an extracellular matrix and, at the end of an experiment, can be further processed for various cellular or molecular readouts. Analysis often relies on whole mount immunolabeling for markers of interest, which consumes the entire sample/well, thereby limiting sample availability for downstream assays. In addition, 3D cultures become more friable after fixation and are susceptible to sample loss during washing steps. In contrast, by fixing and processing organoids to a paraffin block, dozens or hundreds of unstained slides can be generated, enabling robust characterization via multiple assays, including histologic evaluation and (immuno)histochemical stains, thus maximizing the yield of these time- and labor-intensive cultures. Here we describe three methods to process 3D Matrigel cultures into paraffin blocks using Histogel as an embedding agent. The three techniques all yield high-quality sections but vary in complexity of implementation at different steps, and their application for different use cases is discussed.

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来源期刊
Journal of Histotechnology
Journal of Histotechnology 生物-细胞生物学
CiteScore
2.60
自引率
9.10%
发文量
30
审稿时长
>12 weeks
期刊介绍: The official journal of the National Society for Histotechnology, Journal of Histotechnology, aims to advance the understanding of complex biological systems and improve patient care by applying histotechniques to diagnose, prevent and treat diseases. Journal of Histotechnology is concerned with educating practitioners and researchers from diverse disciplines about the methods used to prepare tissues and cell types, from all species, for microscopic examination. This is especially relevant to Histotechnicians. Journal of Histotechnology welcomes research addressing new, improved, or traditional techniques for tissue and cell preparation. This includes review articles, original articles, technical notes, case studies, advances in technology, and letters to editors. Topics may include, but are not limited to, discussion of clinical, veterinary, and research histopathology.
期刊最新文献
Adaptation of the HistoEnder, an open-source 3D printer for automated transmission electron microscopy grid staining. A study of PGP 9.5 immunohistochemical labeling on formalin-fixed paraffin embedded tissues for epidermal nerve fiber density testing Histogel-based techniques for embedding organoids in paraffin blocks enable high throughput downstream histopathological analyses. A best practices framework for spatial biology studies in drug discovery and development: enabling successful cohort studies using digital spatial profiling. Histological methods for plant tissues.
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