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溶组织内阿米巴滋养体和包囊的冷冻断裂研究。

Freeze-fracture study of the trophozoite and the cyst of Entamoeba histolytica.

作者信息

Yoshikawa H, Yamada M, Yoshida Y

机构信息

Department of Medical Zoology, Kyoto Prefectural University of Medicine, Japan.

出版信息

J Protozool. 1988 May;35(2):268-73. doi: 10.1111/j.1550-7408.1988.tb04342.x.

Abstract

The fine structure of the trophozoite and cyst of Entamoeba histolytica from the stool of a patient was compared using the freeze-fracture method. The intramembranous particles (IMP's) were heterogeneously distributed on the plasma membrane of the trophozoite and their density was 1139 +/- 105/micron 2 on the P face. Particle-rich depressions and linear particle arrays, reported by other investigators on cultured trophozoites, were also observed on the P face while on the E face such special particle arrangement was not recognized. Particle-free, small protrusions were frequently observed on the P face of the trophozoite membrane. The existence of these protrusions is a new finding. In the cyst, the IMP's were also distributed heterogeneously on both the P and E faces of the plasma membrane. The density of the IMP's, however, was much lower than in the trophozoite: 6 +/- 2/micron 2 on the P face and averaging less than 1/micron 2 on the E face. In freeze-fracture images, the plasma membrane of the cyst showed a variety of configurations from smooth to uneven or ridged surfaces. These morphological alterations of the plasma membrane may be attributed to the aging of the cyst. The thick wall of the cyst had a filamentous tri- or tetra-lamellar structure. The cytoplasm of the cyst was similar in structure to that of the trophozoite and the diameter of the nuclear pores was equal in both trophozoites and cysts.

摘要

采用冷冻断裂法比较了从一名患者粪便中分离出的溶组织内阿米巴滋养体和包囊的精细结构。膜内颗粒(IMP)在滋养体的质膜上分布不均,在P面的密度为1139±105/μm²。在P面上还观察到其他研究者在培养的滋养体上报道过的富含颗粒的凹陷和线性颗粒阵列,而在E面上未发现这种特殊的颗粒排列。在滋养体质膜的P面上经常观察到无颗粒的小突起。这些突起的存在是一项新发现。在包囊中,IMP在质膜的P面和E面上也分布不均。然而,IMP的密度远低于滋养体:P面为6±2/μm²,E面平均小于1/μm²。在冷冻断裂图像中,包囊的质膜呈现出从光滑到不均匀或有脊状表面的各种形态。质膜的这些形态改变可能归因于包囊的老化。包囊的厚壁具有丝状的三层或四层结构。包囊的细胞质结构与滋养体相似,滋养体和包囊的核孔直径相等。

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