Klosen P, Maessen X, van den Bosch de Aguilar P
Laboratory of Cellular Biology, Catholic University of Louvain, Belgium.
J Histochem Cytochem. 1993 Mar;41(3):455-63. doi: 10.1177/41.3.8429209.
We have developed a protocol for the production and longterm storage of polyethylene glycol (PEG) sections for immunocytochemistry. Sections obtained by this protocol allow immunolabeling for many different antigens, such as intermediate filaments, macrophage markers, or neurotransmitter enzymes. Standard histological staining can also be performed on these sections. This fixation-embedding system may therefore be of interest for histopathology of rare specimens, as well as for experimental research. Multiple labeling can be performed either on the same section or on consecutive thin sections, thus allowing a more thorough analysis of precious experimental material. We compare the advantages of PEG vs cryostat or vibratome sections. This protocol has been used to study the inactivation of antigenicity by paraffin embedding. We have identified the infiltration by paraffin as the antigenicity inactivating step, not dehydration or high temperature as generally thought.
我们已经开发出一种用于免疫细胞化学的聚乙二醇(PEG)切片制备及长期保存的方案。通过该方案获得的切片能够对多种不同抗原进行免疫标记,如中间丝、巨噬细胞标志物或神经递质酶。这些切片也可进行标准组织学染色。因此,这种固定-包埋系统可能对罕见标本的组织病理学以及实验研究都具有重要意义。多重标记可在同一切片或连续的薄片上进行,从而能够对珍贵的实验材料进行更全面的分析。我们比较了PEG切片与低温恒温器切片或振动切片机切片的优势。该方案已被用于研究石蜡包埋对抗抗原性的影响。我们已经确定,石蜡渗透才是使抗原性失活的步骤,而非如通常所认为的脱水或高温。