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一步法嵌入法,使用琼脂薄膜维持病理组织标本的方位。

One-step embedding method for maintaining orientation of pathological tissue specimens using agar thin films.

机构信息

Division of Diagnostic pathology, Tokyo Medical University Hachioji Medical Center, Hachioji, Japan.

Department of Biomedical Laboratory Sciences, Shinshu University, Matsumoto, Japan.

出版信息

J Clin Pathol. 2023 Dec;76(12):855-859. doi: 10.1136/jcp-2023-209068. Epub 2023 Oct 16.

Abstract

Pathological histology examination involves handling a variety of specimens that are cut according to regulations and placed in cassettes. Tissue fragments in the cassettes are then diagnosed after processing, embedding, thin sectioning, staining and other procedures using a processing machine. Maintaining tissue fragment order and orientation during these processes is important for accurate diagnosis. In this study, we present a method of maintaining tissue fragment order and orientation using a thin film of ultra-high-strength agar and evaluate its usefulness during tissue sectioning.Cassettes were prepared, each containing three pieces of porcine liver, and compared embedding time with and without agar thin films (ATFs). Embedding was performed by three medical laboratory scientists with different levels of experience.To enable one-step tissue sample embedding, ATFs were integrated with samples in the cassettes. This resulted in an average reduction of 6.22 s of embedding time per cassette compared with traditional embedding methods.Through the use of ATFs, tissue fragment order and orientation is maintained, and embedding process time shortened. Additionally, ATFs are easily prepared and stored in 10% neutral buffered formalin over extended periods, allowing for immediate use during sectioning. This method is ideal to implement in busy pathology laboratories.

摘要

病理组织学检查涉及处理各种根据规定切割并放置在小盒中的标本。在使用处理机进行处理、包埋、薄片切片、染色等程序后,小盒中的组织碎片进行诊断。在这些过程中,保持组织碎片的顺序和方向对于准确诊断很重要。在这项研究中,我们提出了一种使用超薄高强度琼脂薄膜保持组织碎片顺序和方向的方法,并评估了在组织切片过程中的有用性。准备了小盒,每个小盒中包含三块猪肝,并比较了有和没有琼脂薄膜(ATFs)的包埋时间。由具有不同经验水平的三位医学实验室科学家进行包埋。为了实现一步组织样本包埋,将 ATFs 与小盒中的样本集成在一起。与传统的包埋方法相比,每个小盒的包埋时间平均减少了 6.22 秒。通过使用 ATFs,可以保持组织碎片的顺序和方向,并且缩短了包埋过程的时间。此外,ATFs 可以在 10%中性缓冲福尔马林中轻松制备和长期保存,以便在切片过程中立即使用。这种方法非常适合在繁忙的病理实验室中实施。

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