Search PubMed⌕ Search

Biomedical subjects

J Karásek

Publications and source records attributed to J Karásek.

At least 19 recordsLinked to original sources

Nuclear morphology of transitional keratinocytes in normal human epidermis.

Transitional keratinocytes (TK) of normal interfollicular human epidermis were studied by electron microscopy to provide more information on the ultrastructural nuclear and nucleolar changes during physiological keratinization. The results revealed that TK contained condensed nuclei in the initial stage, degraded nuclei in the advanced stage, and nuclear remnants in the late stage of their transformation into cornified cells. The condensed nuclei were essentially characterized by ultrastructural changes generally considered to reflect the cessation of RNA synthesis. The focal increase of density and the structural disintegration observed in the degraded nuclei of TK are apparently characteristic morphological features of degradation of nucleoproteins in these cells. Nuclear remnants contained altered nuclear envelope or similar structures and clumps of dense fibrillar material. Similar clumps of dense fibrils were present in the cytoplasm of both the TK with compact nuclear remnants and the TK with structural disintegration. This finding suggests that some dense fibrillar material of structurally disintegrating nuclei of TK is transported into the cytoplasm of these cells.

Cell Nucleus↗

Nucleolar ultrastructure in psoriatic skin lesions.

Keratinocytes in psoriatic skin lesions were studied to provide more information on the nucleolar ultrastructure in these cells. In contrast to normal keratinocytes, nucleoli in the keratinocytes of the uppermost layer of stratum granulosum (intermedium) of psoriatic lesions were characterized by the absence of the segregation of nucleolar components. In addition, the keratinocytes without keratohyalin of the uppermost layer of stratum intermedium of psoriatic lesions did not contain degranulated nucleoli. Such observations indicate an alteration of the maturation processes in the keratinocytes of the psoriatic skin lesions and the characteristic nucleolar changes apparently represent the morphological expression of the altered inhibition of the nucleolar (preribosomal) RNA synthesis.

Cell Nucleolus↗

[Glomangiomas].

Explore the source record for details and available documents.

Ear Neoplasms↗

Ultrastructural nuclear changes of extranucleolar ribonucleoprotein structures during autolysis of normal liver cells.

The ultrastructural changes of extranucleolar nuclear ribonucleoprotein structures during autolysis of normal liver cells were studied by means of usual and cytochemical procedures. The results revealed that the earliest changes were characterized by the fragmentation of the perichromatin fibrils and disappearance of the perichromatin granules. This was followed by the formation of numerous dense granules among the altered perichromatin fibrils and by the disappearance of dense fibrillar structures from the remaining interchromatin areas. In the later stages of autolysis the altered perichromatin fibrils loosed their density and the dense granules located among them disappeared. In addition, fine filamentous and cross-striated bodies appeared in the nucleoplasm as well as in the cytoplasm of some hepatocytes. The results obtained by the EDTA treatment and digestion of the sections with Pronase and RNA-ase indicated that the altered perichromatin fibrils contained ribonucleoprotein which together with that of the perichromatin granules represent nuclear components most sensitive to the autolysis. The chemical nature of the dense granules located among the altered perichromatin fibrils was different from that of the latter as well as from that of the nuclear microspherules [6]. The dense fine filamentous and cross-striated nucleoplasmic and cytoplasmic bodies are considered to represent a nonspecific structural phenomenon accompanying regressive cellular alterations since these bodies were present only in the later stages of autolysis.

Animals↗