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PMID: 13810485 Published · ppublish English Journal Article

Electron microscope studies of nuclear extrusions in pancreatic acinar cells of the rat.

The Journal of biophysical and biochemical cytology ·Vol. 7 ·1960-04-00 ·Pages 345-52

CLARK WH

Abstract

This paper describes "blebs" protruding from the surface of the nucleus into the cytoplasm. The "blebs" are separated from the cytoplasm by 2 membranes which are continuous with the outer and inner nuclear membranes. The "blebs" contain 3 structurally distinct substances. Two of these substances (beta and gamma substances) are similar to extranucleolar karyoplasm and nucleolar material. The other substance (alpha substance) is present in every "bleb," but it cannot be readily compared to a recognizable nuclear structure. Cytoplasmic vesicles are described that are apparently different from the Golgi vesicles or the vesicular component of the ergastoplasm. It is suggested that these vesicles may be of nuclear "bleb" origin. A dark karyoplasmic zone extending from the region of the nucleolus into the nuclear "bleb" is shown. This zone may be similar in some respects to the preformed pathway ("Leitbahn") described by Altmann (3) and Hertl (28) and could reflect movement of nuclear material from the nucleolar region into the cytoplasm. The "blebs" are thought to be homologous to structures described by many light microscopists, but they are considerably larger than the nuclear "blebs" described previously by electron microscopists.

Keywords
PANCREAS/anatomy and histology
MeSH Terms
Acinar Cells Animals Cell Nucleus Chromatin Cytoplasm Electrons Golgi Apparatus Histological Techniques Microscopy, Electron Nuclear Envelope Pancreas/anatomy & histology Rats
Chemicals
Chromatin
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
CLARK W H
References (23)
23 references, click to expand
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Article Info
Journal
The Journal of biophysical and biochemical cytology
Abbr.
J Biophys Biochem Cytol
ISSN
0095-9901
Published
1960-04-00
Pages
345-52
Language
English
Region
United States
NLM ID
17840020R
PMCID
PMC2224796
Subset
OM
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