Metabolism of normal and tumour tissue
- 1 January 1941
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 35 (1-2) , 7-15
- https://doi.org/10.1042/bj0350007
Abstract
The metabolism of mucous membrane from various parts of the intestine (rat and mouse) was measured in Ringer soln. and in serum. The jejunal mucous membrane possesses a high respiration, a high glycolysis, aerobically and anaerobically, and a low R.Q. Acetylcholine was without effect. Jejunal mucous membrane is unique among tissues hitherto studied in that the Pasteur effect is absent. These results are not due to toxic action of Ringer soln., as they are also observed in serum; nor are they due to the severance of the mucosa from the matrix as the metabolism of the whole intestinal wall is that expected from the summation of its parts. The metabolism of mucous membrane from ilenm and colon is less active and more variable, probably owing to greater fragility. It resembles in general that of the jejunum, but the Pasteur effect is often evident. These results are discussed in relation to the problem of tumour metabolism.This publication has 9 references indexed in Scilit:
- Changes in phosphate distribution during anaerobic glycolysis in brain slicesBiochemical Journal, 1941
- Estimation of lactic acid in biological material by oxidation with ceric sulphateBiochemical Journal, 1939
- The retention of acids by serum based on the retention coefficient: its use in manometric experimentsBiochemical Journal, 1939
- The study of metabolic activities of small amounts of surviving tissuesBiochemical Journal, 1939
- Observations on tissue glycolysisBiochemical Journal, 1938
- Further studies of amino-ethyl phosphoric ester—a compound apparently specific to malignant tumoursBiochemical Journal, 1937
- The metabolism of joint tissuesThe Journal of Pathology and Bacteriology, 1937
- Respiration and functional activityThe Journal of Physiology, 1936
- Metabolism of normal and tumour tissueBiochemical Journal, 1936