Abstract
Ferritin and colloidal gold were found to permeate human erythrocytes during rapid or gradual hypotonic hemolysis. Only hemolysed cells contained these particles; adjacent intact cells did not contain the tracers. Ferritin or gold added 3 min after the onset of hypotonic hemolysis did not permeate the ghost cells which had, therefore, become transiently permeable. By adding ferritin at various times after the onset of hemolysis, it was determined that for the majority of the cells the permeable state (or interval between the time of development and closure of membrane holes) existed only from about 15 to 25 sec after the onset of hemolysis. It was possible to fix the transient "holes" in the open position by adding glutaraldehyde only between 10 and 20 sec after the onset of hemolysis. The existence of such fixed holes was shown by the cell entry of ferritin and gold which were added to these prefixed cells. Membrane defects or discontinuities (of the order of 200-500 A wide) were observed only in prefixed cells which were permeated by ferritin subsequently added. Adjacent prefixed cells which did not become permeated by added ferritin did not reveal any membrane discontinuities. Glutaraldehyde does not per se induce or create such membrane defects since cells which had been fixed by glutaraldehyde before the 10-sec time point or after the 180-sec time point were never permeable to added ferritin, and the cell membranes never contained any defects. It was also observed that early in hemolysis (7-12 sec) a small bulge in one zone of the membrane often occurred. Ghost cells produced by holothurin A (a saponin) and fixed by glutaraldehyde became permeated by ferritin subsequently added, but no membrane discontinuities were seen. Ghosts produced by lysolecithin and fixed by glutaraldehyde also became permeated by subsequently added ferritin, and many membrane defects were seen here (about 300 A wide).
MeSH Terms
Biological Transport/physiology
Cell Membrane/drug effects,ultrastructure
Erythrocytes/drug effects,metabolism,ultrastructure
Ferritins/pharmacokinetics
Gold Colloid/pharmacokinetics
Hemolysis/drug effects,physiology
Humans
Hypotonic Solutions/pharmacology
Microscopy, Electron
Phosphatidylcholines/pharmacology
Saponins/pharmacology
Surface-Active Agents/pharmacology
Chemicals
Gold Colloid
Hypotonic Solutions
Phosphatidylcholines
Saponins
Surface-Active Agents
Ferritins
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Seeman P
References (22)
22 references, click to expand
-
Area and volume changes in hemolysis of single erythrocytes.
J Cell Comp Physiol. 1963 Jun;61:245-53
PMID: 13990738
-
The active transport of sodium by ghosts of human red blood cells.
J Gen Physiol. 1962 May;45:837-59
PMID: 13908117
-
Physiological characteristics of human red blood cell ghosts.
J Gen Physiol. 1958 Sep 20;42(1):9-28
PMID: 13575771
-
The iron oxide core of the ferritin molecule.
J Mol Biol. 1965 Dec;14(2):598-602
PMID: 5880869
-
Simple methods for "staining with lead" at high pH in electron microscopy.
J Biophys Biochem Cytol. 1961 Dec;11:729-32
PMID: 14454024
-
THE DISTRIBUTION OF EXOGENOUS FERRITIN IN TOAD SPINAL GANGLIA AND THE MECHANISM OF ITS UPTAKE BY NEURONS.
J Cell Biol. 1964 Nov;23:307-25
PMID: 14222816
-
Action of saponin on biological cell membranes.
Nature. 1962 Dec 8;196:952-5
PMID: 13966357
-
VISUALIZATION OF ANTIGENIC SITES OF HUMAN ERYTHROCYTES WITH FERRITIN-ANTIBODY CONJUGATES.
J Cell Biol. 1964 Nov;23:396-401
PMID: 14222824
-
Diffusivity measurements of human methemoglobin.
J Gen Physiol. 1966 Mar;49(4):681-7
PMID: 5943609
-
THE FINE STRUCTURE OF STROMALYTIC FORMS PRODUCED BY OSMOTIC HEMOLYSIS OF RED BLOOD CELLS.
J Ultrastruct Res. 1964 Dec;11:494-507
PMID: 14244173
-
The distribution within the brain of ferritin injected into cerebrospinal fluid compartments. II. Parenchymal distribution.
Am J Anat. 1965 Sep;117(2):193-219
PMID: 5883189
-
New high density particles in certain normal and abnormal erythrocytes.
J Cell Physiol. 1956 Apr;47(2):245-59
PMID: 13332029
-
[Electronoptic studies on the membrane of erythrocytes].
Pflugers Arch Gesamte Physiol Menschen Tiere. 1960;270:323-31
PMID: 13797814
-
Electron microscopic observations on Rous sarcoma virus and cell membranes.
Nature. 1962 Jun 23;194:1116-9
PMID: 13887581
-
Human erythrocyte ghosts prepared to contain various metabolites.
J Appl Physiol. 1957 May;10(3):511-8
PMID: 13438810
-
Permeability properties of erythrocyte ghosts.
J Gen Physiol. 1952 May;35(5):669-701
PMID: 14955613
-
Cell junctions in amphibian skin.
J Cell Biol. 1965 Jul;26(1):263-91
PMID: 5859021
-
The distribution within the brain of ferritin injected into cerebrospinal fluid compartments. I. Ependymal distribution.
J Cell Biol. 1965 Jul;26(1):99-123
PMID: 5859025
-
A study of fixation for electron microscopy.
J Exp Med. 1952 Mar;95(3):285-98
PMID: 14927794
-
Hemolysis of individual red blood cells; an interferometer microscopic investigation.
Exp Cell Res. 1958 Feb;14(1):9-22
PMID: 13512300
-
The identity of haemoglobin in human beings.
J Physiol. 1921 Nov 18;55(5-6):332-8
PMID: 16993519
-
Osmotic hemolysis by a gradual decrease in the ionic strength of the surrounding medium.
J Cell Comp Physiol. 1961 Apr;57:111-7
PMID: 13719676