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The ultrastructure of the intestinal epithelium of Metastrongylus sp. (Nematoda: Strongyloidea)

Published online by Cambridge University Press:  06 April 2009

T. Jenkins
Affiliation:
Department of Zoology, University College, Cardiff
David A. Erasmus
Affiliation:
Department of Zoology, University College, Cardiff

Extract

Ultrastructural observations on the intestine of Metastrongylus sp. have shown that it is composed of a single layer of epithelial cells each with a basally placed nucleus and resting on a basement layer. The basal plasma membrane of each cell is highly infolded and at the cell apex the lateral plasma membranes of adjacent cells are thickened to form a terminal bar.

The brush border consists of numerous microvilli which possess dilated tips. The tips contain a granular material and the evidence obtained suggests that they are released into the lumen indicating a form of micro-apocrine secretion. Golgi complexes, glycogen, lipid droplets and granular endoplasmic reticulum are present in the intestinal cells. The Golgi complexes are associated with the production of an electron dense body. Other inclusions are cytolysome-like in their structure. The discharge of lamellar bodies into the intestinal lumen is described and the role of the intestine in secretion, absorption, and excretion is discussed.

The authors wish to acknowledge the co-operation and facilities provided by Professor J. Brough in the Department of Zoology and Mr J. H. M. Hughes (Veterinary Officer) for allowing unrestricted access to infected material at the Roath abattoir, Cardiff. Grateful acknowledgement is also expressed for the financial support given to one of us (T. J.) by the Pig Industry Development Authority. Any views expressed in this paper are not necessarily those of the Authority.

The authors also wish to express their appreciation of the excellent technical assistance provided by Mr T. W. Davies.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1969

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References

REFERENCES

Beckett, E. B. & Boothroyd, B. (1960). The ultrastructure of the ‘cilia-like’ processes in the midgut of Trichinella spiralis larvae. Proc. Eur. reg. Conf. Electron Microsc. Delft (1960), 2, 938–41.Google Scholar
Beckett, E. B. & Boothroyd, B. (1961). Some observations on the fine structure of the mature larva of the nematode Trichinella spiralis. Ann. trop. Med. Parasit. 55, 116–24.CrossRefGoogle ScholarPubMed
Bennet, H. S. (1963). Morphological aspects of extracellular polysaccharides. J. Histochem. Cytochem. 11, 1423.CrossRefGoogle Scholar
Bretschneider, L. H. (1954). Die submikroskopische Struktor der Darmzellen von Ascaris suilla: Eine elektronoptische Analyse. Proc. K. ned. Akad. Wet. 57, 524–39.Google Scholar
Browne, H. G. & Chowdhury, A. B. (1959). The ultrastructure of the intestinal wall of Ancylostoma caninum. J. Parasit. 45, 241–7.CrossRefGoogle ScholarPubMed
Browne, H. G., Chowdhury, A. B. & Lipscomb, L. (1965). Further studies on the ultrastructure and histochemistry of the intestinal wall of Ancylostoma caninum. J. Parasit. 51, 389–91.CrossRefGoogle ScholarPubMed
Bruce, R. G. (1966). The fine structure of the intestine and hind gut of the larva of Trichinella spiralis. Parasitology 56, 359–65.CrossRefGoogle ScholarPubMed
Caulfield, J. B. (1957). Effects of varying the vehicle for OsO4 in tissue fixation. J. biophys. biochem. Cytol. 3, 827–30.CrossRefGoogle ScholarPubMed
De Duve, C. & Wattiaux, R. (1966). Function of lysosomes. A. Rev. Physiol. 28, 435–92.CrossRefGoogle ScholarPubMed
Jamuar, M. P. (1966). Cytochemical and electron microscope studies on the pharynx and intestinal epithelium of Nippostrongylus brasiliensis. J. Parasit. 52, 1116–28.CrossRefGoogle ScholarPubMed
Jenkins, T. (1967). Histochemical and electron microscope studies on pig nematodes. Ph.D. Thesis, University of Wales.Google Scholar
Joyon, L. & Collin, J. P. (1962). Ultrastructure de la membrane cellulaire de l'intestin d'ascaris du cheval (Parascaris equorum Goese). C. r. Séanc. Soc. Biol. 156, 651–8.Google Scholar
Karnovsky, M. J. (1961). Simple methods for ‘staining with lead’ at high pH in electron microscopy J. biophys. biochem. Cytol. 11, 729–32.CrossRefGoogle Scholar
Kessel, R. G., Prestage, J. J., Sekhon, S. S., Smalley, R. L. & Beames, H. W. (1961). Cytological studies on the intestinal epithelial cells of Ascaris lumbricoides suum. Trans. Am. microsc. Soc. 80, 103–18.CrossRefGoogle Scholar
Kurosomi, K. (1961). Electron microscopic analysis of secretion. Int. Rev. Cytol. 11, 1124.CrossRefGoogle Scholar
Lawn, A. M. (1960). The use of potassium permanganate as an electron dense stain for sections of tissue embedded in epoxy resins. J. biophys. biochem. Cytol. 7, 197.CrossRefGoogle Scholar
Miller, J. H. (1967). Fine structure of the striated border of the intestinal cells of Ancylostoma caninum. J. Parasit. 53, 94–9.CrossRefGoogle ScholarPubMed
Peebles, C. R. (1957). Ultrastructure of Rhabditis strongyloides. J. Parasit. 43 (suppl.), 45.Google Scholar
Porter, K. R. & Bonneville, M. A. (1964). An Introduction to the Fine Structure of Cells and Tissues, 2nd ed.London: H. Kimpton.Google Scholar
Reynolds, E. S. (1963). The use of lead citrate of high pH as an electron-opaque stain in electron microscopy. J. Cell. Biol. 17, 208–12.CrossRefGoogle ScholarPubMed
Rogers, W. P. (1962). The Nature of Parasitism. The Relationship of some Metazoan Parasites to their Hosts, 287 pp. New York: Academic Press Inc.Google Scholar
Sheffield, H. G. (1964). Electron microscope studies on the intestinal epithelium of Ascaris suum. J. Parasit. 50, 365–79.CrossRefGoogle ScholarPubMed
Tokin, I. B. (1959). (As cited by Sheffield 1964.) Ultrastructure of the brush border of the intestinal cell of Parascaris equorum. Dokl. Akad. Nauk SSSR 125, 902–4. (In Russian.)Google Scholar
Weinstein, P. (1966). The in vitro cultivation of helminths with reference to morphogenesis. In Biology of Parasites (ed. Soulsby, E. J. L.), pp. 143–54. New York: Academic Press.Google Scholar
Wright, K. A. (1963). The cytology of the intestine of the parasitic nematode Capillaria hepatica (Bancroft, 1893). J. Ultrastruct. Res. 9, 143–55.CrossRefGoogle Scholar