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甲基丙烯酸羟丙酯,一种用于电子显微镜的新型水溶性包埋介质。

Hydroxypropyl methacrylate, a new water-miscible embedding medium for electron microscopy.

作者信息

Leduc E H, Holt S J

出版信息

J Cell Biol. 1965 Jul;26(1):137-55. doi: 10.1083/jcb.26.1.137.

Abstract

Aldehyde-fixed rat tissues were variously dehydrated and impregnated in water-miscible 2-hydroxypropyl methacrylate (HPMA) containing 3 to 20 per cent water and 0.1 per cent alpha,alpha-azobisisobutyronitrile as catalyst for subsequent polymerization with ultraviolet light. Heat polymerization was also effective. Blocks of embedded tissue readily gave ultrathin sections, which required staining by uranyl acetate and/or lead stains to give adequate contrast for electron microscopy. The ultrastructure of pancreas, kidney, muscle, and intestine was well preserved by aldehyde fixation alone. Use of postfixation in osmium tetroxide or direct osmium tetroxide fixation was unsatisfactory. The fine structure of aldehyde-fixed liver from fasted rats was well preserved, whereas that from normal rats showed considerable disorganization and collapse, apparently because of extraction of glycogen during the embedding procedure. Enzymatic extraction of proteins by pepsin and of ribonucleic acid by ribonuclease after either formaldehyde or glutaraldehyde fixation was rapidly effected by direct treatment of ultrathin sections with solutions of the enzymes. In contrast, no digestion of chromatin by deoxyribonuclease could be detected. In spite of this present limitation, HPMA appears to have several advantages over earlier water-miscible embedding media for electron microscopy and to be particularly suitable for ultrastructural cytochemistry.

摘要

醛固定的大鼠组织在含有3%至20%水和0.1% α,α-偶氮二异丁腈作为催化剂的与水混溶的甲基丙烯酸2-羟丙酯(HPMA)中进行不同程度的脱水和浸渍,以便随后用紫外线聚合。热聚合也有效。包埋组织块很容易切成超薄切片,这些切片需要用醋酸铀和/或铅染剂染色,以便为电子显微镜提供足够的对比度。单独的醛固定就能很好地保存胰腺、肾脏、肌肉和肠道的超微结构。使用四氧化锇后固定或直接用四氧化锇固定效果不佳。禁食大鼠的醛固定肝脏的精细结构保存良好,而正常大鼠的肝脏则显示出相当程度的紊乱和塌陷,显然是因为在包埋过程中糖原被提取。用胃蛋白酶对甲醛或戊二醛固定后的蛋白质进行酶提取,以及用核糖核酸酶对核糖核酸进行酶提取,通过用酶溶液直接处理超薄切片能迅速实现。相比之下,未检测到脱氧核糖核酸酶对染色质的消化作用。尽管存在目前的这种局限性,但HPMA相对于早期用于电子显微镜的与水混溶的包埋介质似乎有几个优点,并且特别适合超微结构细胞化学。

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