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用于免疫电子显微镜的组织在Lowicryl K4M中的快速包埋。

Rapid embedding of tissues in Lowicryl K4M for immunoelectron microscopy.

作者信息

Altman L G, Schneider B G, Papermaster D S

出版信息

J Histochem Cytochem. 1984 Nov;32(11):1217-23. doi: 10.1177/32.11.6436366.

Abstract

Lowicryl K4M (K4M) was recently introduced as an embedding medium for immunocytochemistry at the electron microscope level (BL Armbruster, E Carlemalm, R Chiovetti, RM Garavito, JA Hobot, E Kellenberger, W Villiger (1982):J Microsc 126:77 and E Carlemalm, M Garavito, W Villiger (1982):J Microsc 126:123). While earlier protocols of fixation and embedding required 4-6 days, the present method has reduced the processing time by accelerating both dehydration of tissues and polymerization of K4M so that tissues can be prepared for sectioning within 4 hr. The immunocytochemical labeling density was quantitated in order to determine relative antigen preservation in tissues embedded by the accelerated protocol as compared to slower K4M embedding techniques and to tissues embedded in glutaraldehyde-cross-linked bovine serum albumin (BSA). Thin sections of Bufo marinus kidney were labeled with rabbit antibody to Na+,K+ATPase alpha chain catalytic subunit isolated from B. marinus kidney microsomes (M Girardet, K Geering, JM Frantes, D Geser, BC Rossier, JP Kraehenbuhl, C Bron (1981):Biochemistry 20:6684). B. marinus retinas were labeled with rabbit anti-opsin. After fixation in paraformaldehyde(3%)-glutaraldehyde(3%), tissues were washed in buffer, dehydrated in 50, 75, and 90% dimethyl-formamide (DMF, 10 min each); K4M:DMF, 1:2 (15 min); K4M:DMF, 1:1, (20 min); K4M (25 min); K4M (30 min) at room temperature and transferred in fresh K4M to BEEM capsules for exposure to ultraviolet light (GE 15 watt, Black-lite, 10 cm, 45 min or less) at 4 degrees C. Thin sections were labeled successively with antibody, biotinylated sheep anti-rabbit F(ab')2 and avidin-ferritin. Ferritin labeling densities were determined by point counting. High labeling densities were observed with both antibodies, equaling or exceeding levels of labeling by slower protocols or embedment in BSA.

摘要

Lowicryl K4M(K4M)最近被引入作为电子显微镜水平免疫细胞化学的包埋介质(BL·阿姆布勒斯特、E·卡尔莱马尔姆、R·乔韦蒂、RM·加拉维托、JA·霍博特、E·凯伦贝格尔、W·维利格(1982年):《显微镜学》126卷:77页以及E·卡尔莱马尔姆、M·加拉维托、W·维利格(1982年):《显微镜学》126卷:123页)。虽然早期的固定和包埋方案需要4 - 6天,但目前的方法通过加速组织脱水和K4M聚合减少了处理时间,从而使组织能够在4小时内准备好切片。为了确定与较慢的K4M包埋技术以及戊二醛交联牛血清白蛋白(BSA)包埋的组织相比,加速方案包埋的组织中相对抗原保存情况,对免疫细胞化学标记密度进行了定量。用从海蟾蜍肾微粒体中分离的针对Na⁺,K⁺ - ATP酶α链催化亚基的兔抗体标记海蟾蜍肾的薄片(M·吉拉尔代、K·吉林、JM·弗兰特斯、D·格泽尔、BC·罗西耶、JP·克雷亨布尔、C·布龙(1981年):《生物化学》20卷:6684页)。用兔抗视蛋白标记海蟾蜍视网膜。在4%多聚甲醛 - 3%戊二醛中固定后,组织在缓冲液中洗涤,在50%、75%和90%二甲基甲酰胺(DMF,各10分钟)中脱水;K4M:DMF,1:2(15分钟);K4M:DMF,1:1(20分钟);K4M(25分钟);K4M(30分钟),在室温下进行,然后转移到新鲜的K4M中至BEEM胶囊中,在4℃下暴露于紫外线(GE 15瓦,黑光,10厘米,45分钟或更短时间)。薄片依次用抗体、生物素化羊抗兔F(ab')₂和抗生物素蛋白 - 铁蛋白标记。通过点计数确定铁蛋白标记密度。两种抗体均观察到高标记密度,等同于或超过较慢方案或BSA包埋的标记水平。

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