Medusa cells: cytostructure and cytochemistry of amoeboid eosinophils with pseudopod-like processes
- 1 November 1981
- journal article
- research article
- Published by Springer Nature in Journal of Molecular Histology
- Vol. 13 (6) , 905-919
- https://doi.org/10.1007/bf01002631
Abstract
Eosinophils having one or more pseudopod-like processes of various lengths are observed in bone marrow, peripheral blood, sputum, nasal smears, and in other exfoliative cytology and tissue specimens after fixation and staining for histochemical study; they are called medusa cells. Although the conformations and lengths of the processes vary, they resemble protozoal pseudopodia. The form which first called our attention to these cells is a conical determinate projection that tapers to a fine tip, much like a protozoal axopod. A basal specialization in the form of a vesicle or thickening may be frequently observed where the process protrudes from, or appears attached to, the cell body. The processes of these eosinophil variants appear morphologically specialized to interact with other cellular elements of the blood and are occasionally seen in contact with, or engulfing, erythrocytes, platelets or other leukocytes. Two hydroperoxidases have been elucidated in eosinophils and medusa cells by virtue of different substrate specificities, subcellular localizations and inhibitor sensitivities. One of these hydroperoxidases is shown by 3,3′-diaminobenzidine, is cyanide resistant, and is never observed in granules or rods in the medusa cell processes; it is frequently polarized to the sites of contact of medusa cells with other cellular elements of the blood. The other hydroperoxidase is revealed byp-phenylenediamine-pyrocatechol, is sensitive to cyanide and is frequently observed in granules and rods in medusa cell processes as well as in a population of larger granules in the cell bodies; the granules in the processes appear to be precursors to the rods, which may be related to Charcot-Leyden crystals. The extrusion of medusa cell processes is facilitated by the divalent cations calcium and magnesium and is inhibited by anions which sequester them such as phosphate, EDTA, citrate and oxalate. Medusa cells have been observed in samples from both rodents and humans and can be very prominent when eosinophilia accompanies allergy, parasitosis and malignancy.This publication has 32 references indexed in Scilit:
- A new specific, sensitive and non-carcinogenic reagent for the demonstration of horseradish peroxidaseJournal of Molecular Histology, 1977
- Phagocytosis‐induced 45calcium efflux in polymorphonuclear leucocytesFEBS Letters, 1977
- The role of divalent cations in the regulation of microtubule assembly. In vivo studies on microtubules of the heliozoan axopodium using the ionophore A23187.The Journal of cell biology, 1976
- The use of a slide spinner in the analysis of cell dispersion.Journal of Histochemistry & Cytochemistry, 1976
- Leucocyte locomotion and chemotaxis: The influence of divalent cations and cation ionophoresExperimental Cell Research, 1975
- THE REGULATORY ROLE OF DIVALENT CATIONS IN HUMAN GRANULOCYTE CHEMOTAXISThe Journal of cell biology, 1974
- The Eosinophil in Infectious DiseasesThe Journal of Infectious Diseases, 1974
- Studies on Delayed (Cellular) Hypersensitivity in Mice Infected with Trichinella spiralis. IV. Artificial Sensitization of DonorsJournal of Parasitology, 1969
- OSMIUM-CONTAINING COMPOUNDS WITH MULTIPLE BASIC OR ACIDIC GROUPS AS STAINS FOR ULTRASTRUCTUREJournal of Histochemistry & Cytochemistry, 1968
- THF EARLY STAGES OF ABSORPTION OF INJECTED HORSERADISH PEROXIDASE IN THE PROXIMAL TUBULES OF MOUSE KIDNEY: ULTRASTRUCTURAL CYTOCHEMISTRY BY A NEW TECHNIQUEJournal of Histochemistry & Cytochemistry, 1966