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Digestion in Parasitic Nematodes. 1. The Digestion of Carbohydrates

Published online by Cambridge University Press:  18 November 2009

W. P. Rogers
Affiliation:
Hackett Student, University of Western Australia, at the Department of Parasitology, London School of Hygiene and Tropical Medicine.

Extract

Amylolytic enzymes have been extracted from the intestines and contents of Strongylus edentatus and Ascaris lumbricoides (pig strain). The saccharogenic and amyloclastic actions of these enzymes have been examined in relation to the salts present and hydrogen ion concentration.

Type
Research Papers
Copyright
Copyright © Cambridge University Press 1940

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References

Brey, M., 1926.—“Ueber die Wasserstoffionenkonzentration des Pferdeblutes.” Hanover.Google Scholar
Danninger, R., Pfragner, K. & Schultes, H., 1928.—“Über die absolute Reaktion in dem Inhalt der einzelnen Darmabschnitte von Pferd und Rind.” Pflug. Arch. ges. Physiol. CCXX, 430433. (W.L. 16155.)CrossRefGoogle Scholar
Florey, H. W. and Harding, H. E., 1934.—“Further observations on the secretion of Brunner's glands.” J. Path. Bact., XXXIX (2), 255276. (W.L. 11431.)CrossRefGoogle Scholar
Groll, J. T., 1924.—“Influence de la concentration des ions d'hydrogène sur l'action de quelques amylases,” Arch. néerl, Physiol., IX, 520538. (W.L. 1876.)Google Scholar
Hoeppli, R., 1927.—“Über beziehungen zwischen dem biologischen verhalten parasitischer nematoden und histologischen reaktionendes wirbeltierkorpers.” Arch. Schiffs-u. Tropenhyg., XXXI (3), 188. (W.L. 1804.)Google Scholar
Lapage, G., 1937.—“Nematodes Parasitic in Animals.” Methuen: London.Google Scholar
Li, H.-C., 1933.—“Feeding experiments on representatives of Ascaroidea and Oxyuroidea.” Chin. med. J., XLVII, 13361342. (W.L. 6177c.) (Abstr. Trop. Dis. Bull., 1934, XXXI, 788. W.L. 21797.)Google Scholar
Long, J. H. and Fenger, F., 1917.—“On the normal reaction of the intestinal tract.” J. Amer. chem. Soc., XXXIX (6), 12781286. (W.L. 10996.)CrossRefGoogle Scholar
Rogers, C. G., 1927.—“Textbook of Comparative Physiology.” McGraw-Hill: New York.CrossRefGoogle Scholar
Rogers, W. P., 1940.—“Haematological studies on the gut contents of certain Nematode and Trematode parasites.” J. Helminth., XVIII (1), 5362. (W.L. 11224b.)CrossRefGoogle Scholar
Rogers, W. P., 1940a.—“The occurrence of zinc and other metals in the intestine of Strongylus spp.” J. Helminth., XVIII (2/3), 103110. (W.L. 11224b.)CrossRefGoogle Scholar
Schopfer, W., 1932.—“Recherches physico-chimiques sur le milieu interieur de quelques parasites.” Rev. suisse Zool., XXXIX, 59194. (W.L. 19288.)CrossRefGoogle Scholar
Somogyi, M., 1926.—“Notes on sugar determination.” J. biol. Chem., LXX (3), 599612. (W.L. 11063.)CrossRefGoogle Scholar
Visscher, M. B., 1926.—“On the optimum pH for glycogenase action and its bearing upon the regulation of the glucose level in the body.” J. biol. Chem., LXIX, (1), 37. (W.L. 11063.)CrossRefGoogle Scholar
Wigglesworth, V. B., 1927.—“Digestion in the cockroach. II. The digestion of carbohydrates.” Biochem. J., XXI, (4), 797811. (W.L. 2967.)CrossRefGoogle Scholar
Yonge, C. M., 1937.—“Evolution and adaption in the digestive system of the Metozoa.” Biol. Rev., XII (1), 87115. (W.L. 2976b.)CrossRefGoogle Scholar