首页> 美国卫生研究院文献>Journal of Bacteriology >Chemical mechanism of the Gram stain and synthesis of a new electron-opaque marker for electron microscopy which replaces the iodine mordant of the stain.
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Chemical mechanism of the Gram stain and synthesis of a new electron-opaque marker for electron microscopy which replaces the iodine mordant of the stain.

机译:革兰氏染色剂的化学机理和电子显微术的新电子不透明标记物的合成该标记物替代了该染色剂的碘媒质。

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摘要

Crystal violet (hexamethyl-para-rosaniline chloride) interacts with aqueous KI-I2 during the Gram stain via a simple metathetical anion exchange to produce a chemical precipitate. There is an apparent 1:1 stoichiometry between anion (I-) and cation (hexamethyl-para-rosaniline+) during the reaction and, since the small chloride anion is replaced by the bulkier iodide, the complex formed becomes insoluble in water. It is this same precipitate which forms in the cellular substance of bacteria (both gram-positive and gram-negative types) and which initiates the Gram reaction. Potassium trichloro(eta 2-ethylene)-platinum(II), as an electronopaque marker for electron microscopy, was chemically synthesized, and it produced an anion in aqueous solution which was compatible with crystal violet for the Gram stain. It interacted with crystal violet in a similar manner as iodide to produce an insoluble complex which was chemically and physically analogous to the dye-iodide precipitate. This platinum anion therefore allows the Gram staining mechanism to be followed by electron microscopy.
机译:在革兰氏染色过程中,结晶紫(六甲基对对苯胺氯化物)通过简单的易位阴离子交换与KI-1水溶液相互作用,从而产生化学沉淀。在反应过程中,阴离子(I-)与阳离子(六甲基-对-对苯二胺+)之间存在明显的1:1化学计量关系,并且由于小的氯离子被大量的碘取代,因此形成的络合物不溶于水。正是这种沉淀物在细菌的细胞物质(革兰氏阳性和革兰氏阴性类型)中形成并引发革兰氏反应。化学合成了用于电子显微镜的电子不透明标记物三氯(η2-乙烯)-铂(II)钾盐,它在水溶液中产生的阴离子与可用于革兰氏染色的结晶紫相容。它以与碘化物相似的方式与结晶紫相互作用,生成了一种不溶的络合物,该络合物在化学和物理上类似于染料-碘化物的沉淀物。因此,这种铂阴离子可通过电子显微镜观察革兰氏染色机理。

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