Abstract
A systematic survey of endothelial junctions in elastic (aorta) and muscular (mesenteric) arteries and in medium (renal and mesenteric) and large (cava inferior) size veins has been carried out in the rat using freeze-cleaved preparations. The arterial endothelium is provided with a complex of occluding and communicating junctions (gap junctions) comparable to, though less elaborate than, that described in arterioles. The particles of the occluding junctions behave like "single unit" particles and have the tendency to remain on B faces upon membrane cleavage. In the venous endothelium the junctions take the form of long occluding junctions with few associated communicating junctions (maculae communicantes). As in arterial endothelium, the junctional particles appear preferentially on B faces in cleaved preparations. These structures, although continuous over long distances, are interrupted focally by areas in which the junctional elements are similar to those found in venules: the ridges and grooves are short, discontinuous, randomly distributed along the general line of cell contact, and often particle-free. In muscular arteries two unusual types of junctions are encountered. Both are disposed in loops over short distances along the perimeter of the cell. One type appears to be a strectched-out version of the usual combination of occluding and communcating junctions of the arterial endothelium (this type is also occasionally encountered in the venous endothelium). The other type is reminiscent of the septate junctions found in the epithelia of invertebrates but the apparent similarity remains to be checked by further work.
MeSH Terms
Animals
Aorta, Abdominal/ultrastructure
Arteries/ultrastructure
Endothelium/ultrastructure
Intercellular Junctions/ultrastructure
Male
Mesenteric Arteries/ultrastructure
Mesenteric Veins/ultrastructure
Rats
Renal Veins/ultrastructure
Thoracic Arteries/ultrastructure
Veins/ultrastructure
Vena Cava, Inferior/ultrastructure
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Simionescu M
Simionescu N
Palade G E
References (27)
27 references, click to expand
-
Endothelial permeability in atherosclerosis.
Arch Pathol. 1963 Jul;76:99-105
PMID: 13963131
-
The permeability of arterial endothelium to horseradish peroxidase.
Proc R Soc Lond B Biol Sci. 1970 Jan 20;174(1037):435-43
PMID: 4391889
-
Studies on aortic intima. I. Structure and permeability of rat thoracic aortic intima.
Am J Pathol. 1972 Feb;66(2):241-64
PMID: 5009972
-
Gap junctions in arterial endothelium.
J Cell Biol. 1973 Apr;57(1):247-52
PMID: 4121069
-
Fine structural evidence of specific mechanism for increased endothelial permeability in experimental hypertension.
Am J Pathol. 1970 Dec;61(3):395-412
PMID: 4115158
-
The structural organization of the septate and gap junctions of Hydra.
J Cell Biol. 1972 Feb;52(2):397-408
PMID: 4109925
-
Membrane ultrastructure at mammalian intercellular junctions.
Prog Biophys Mol Biol. 1973;26:45-101
PMID: 4122630
-
Regional variation in the permeability of rat thoracic aorta.
Am J Pathol. 1974 Jun;75(3):513-28
PMID: 4135041
-
Permeability patterns in pig aorta.
Atherosclerosis. 1970 May-Jun;11(3):451-62
PMID: 4317442
-
Aortic permeability, lipids, and atherosclerosis.
Lancet. 1971 Apr 10;1(7702):750-1
PMID: 4101449
-
The aortic tunica intima in young and aging rats.
Exp Mol Pathol. 1972 Jun;16(3):382-402
PMID: 4337757
-
Arterial endothelial permeability and vascular disease. The "trap door" effect.
Exp Mol Pathol. 1973 Apr;18(2):241-60
PMID: 4349939
-
Segmental differentiations of cell junctions in the vascular endothelium. The microvasculature.
J Cell Biol. 1975 Dec;67(3):863-85
PMID: 1202025
-
Endothelial cell junctions.
J Cell Biol. 1975 Jul;66(1):200-4
PMID: 1141377
-
Junctional structures in the midgut cells of lepidopteran caterpillars.
J Cell Sci. 1975 Jan;17(1):221-39
PMID: 1112862
-
Axo-axonic septate junctions in the basket formations of the cat cerebellar cortex.
J Cell Biol. 1971 Oct;51(1):328-33
PMID: 5165176
-
Increased permeability of the arteries in hypertensive rats: an electron microscopic study.
Exp Mol Pathol. 1971 Oct;15(2):198-208
PMID: 5111802
-
Endothelial contraction induced by histamine-type mediators: an electron microscopic study.
J Cell Biol. 1969 Sep;42(3):647-72
PMID: 5801425
-
Ultrastructural injury of arterial endothelium. 1. Effects of pH, osmolarity, anoxia, and temperature.
Arch Pathol. 1969 Aug;88(2):99-105
PMID: 5794078
-
The structure of the zonula occludens. A single fibril model based on freeze-fracture.
J Cell Biol. 1974 Jan;60(1):168-80
PMID: 4203358
-
Structure and function of intercellular junctions.
Int Rev Cytol. 1974;39:191-283
PMID: 4611943
-
Studies on protein passage through arterial endothelium. 3. Effect of blood pressure levels on the passage of fine structural protein tracers through rat arterial endothelium.
Lab Invest. 1973 Nov;29(5):536-46
PMID: 4584834
-
Studies on protein passage through arterial endothelium. I. Structural correlates of permeability in rat arterial endothelium.
Lab Invest. 1973 Jun;28(6):672-7
PMID: 4576804
-
Studies on protein passage through arterial endothelium. II. Regional differences in permeability to fine structural protein tracers in arterial endothelium of normotensive rat.
Lab Invest. 1973 Jun;28(6):678-85
PMID: 4714151
-
An electron microscopic study of the transport of peroxidases in the endothelium of mouse aorta.
Z Zellforsch Mikrosk Anat. 1972;133(2):211-22
PMID: 5082883
-
An interpretation of liver cell membrane and junction structure based on observation of freeze-fracture replicas of both sides of the fracture.
J Cell Biol. 1970 Oct;47(1):49-60
PMID: 4935338
-
Septate and gap junctions in molluscan gill epithelium.
J Cell Biol. 1971 Dec;51(3):869-72
PMID: 4942779