Suppr超能文献

一种用于生物样本冷冻置换、冷冻干燥和低温包埋的新型多功能系统。

A new versatile system for freeze-substitution, freeze-drying and low temperature embedding of biological specimens.

作者信息

Sitte H, Edelmann L, Hässig H, Kleber H, Lang A

机构信息

Medizinische Biologie, Fachbereich Theoretische Medizin, Universität des Saarlandes, Homburg, Germany.

出版信息

Scanning Microsc Suppl. 1994;8:47-64; discussion 64-6.

PMID:7638501
Abstract

A universal system for freeze-substitution (FS), freeze-drying (FD) and low temperature embedding (LTE) has been developed, suited to perform standardized procedures of cryoprocessing biological and medical specimens as well as systematic studies of dehydration and embedding at various low and high temperatures. In a 35 1 Dewar vessel with 110 mm neck diameter an aluminum tube is mounted to the bottom of the liquid nitrogen (LN2x) reservoir and extends to the lower part of the cylindrical neck. At its top an aluminum plate serves as a contact surface for either the FS chamber or the FD chamber. Fs and subsequent LTE are carried out in an environment of dry cold nitrogen gas provided by evaporating nitrogen from the dewar. Different capsules and moulds may be used for cryodehydration and LTE. FD of bulk specimens or cryosections takes place in an absolutely clean vacuum provided by a cryosorption pump integrated in the FD apparatus. Most of the H2O molecules from the frozen specimen are trapped by large cold surfaces inside the drying chamber. Due to the low LN2 consumption during FS or FD (3-4 1 LN2/day) both procedures may be carried out for 8-10 days without refilling the dewar. A few representative results show that well frozen biological material is stabilized by prolonged FS or FD at temperatures of about -80 degrees C without user of chemical fixatives like OsO4 in the substitution medium during FS or by OsO4 vapor fixation after FD.

摘要

已开发出一种用于冷冻置换(FS)、冷冻干燥(FD)和低温包埋(LTE)的通用系统,适用于对生物和医学标本进行标准化的低温处理程序,以及在各种低温和高温下对脱水和包埋进行系统研究。在一个颈部直径为110毫米的35升杜瓦瓶中,一根铝管安装在液氮(LN₂)储存器底部并延伸到圆柱形颈部的下部。在其顶部,一块铝板用作FS腔室或FD腔室的接触面。FS及后续的LTE在通过杜瓦瓶中蒸发的氮气提供的干燥冷氮气环境中进行。不同的胶囊和模具可用于冷冻脱水和LTE。批量标本或冷冻切片的FD在由集成在FD设备中的低温吸附泵提供的绝对清洁的真空中进行。冷冻标本中的大部分水分子被干燥室内的大型冷表面捕获。由于FS或FD期间液氮消耗较低(3 - 4升液氮/天),这两个程序可以在不重新填充杜瓦瓶的情况下进行8 - 10天。一些代表性结果表明,冷冻良好的生物材料通过在约 - 80摄氏度的温度下长时间进行FS或FD而得到稳定,在FS期间置换介质中不使用如OsO₄等化学固定剂,或在FD后通过OsO₄蒸汽固定。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验