On Digestive Proteolysis: Being the Cartwright Lectures for 1894Chittenden, R. H. (Russell Henry)
Science
On Digestive Proteolysis: Being the Cartwright Lectures for 1894
Chittenden, R. H. (Russell Henry)
Digestion; Digestive enzymes; Enzymes
In connection with this question of the composition of proteoses
and peptones as formed by pepsin-proteolysis, it is interesting to
note a recent observation recorded by Schützenberger.[138] This
experimenter took 350 grammes of moist blood-fibrin, corresponding to
75.5 grammes of dry substance, and subjected it to proteolysis with
2.5 litres of a very strong pepsin-hydrochloric acid solution for five
days. The resultant fluid was then freed from acid by treatment with
silver oxide, after which the solution was evaporated to dryness on
a water-bath and the residue dried _in vacuo_. This residue, termed
by Schützenberger fibrin-peptone, was found on analysis to contain
49.18 per cent. of carbon, 7.09 per cent. of hydrogen, and 16.33 per
cent. of nitrogen, thus agreeing very closely with true fibrin-peptone
as analyzed by Kühne and myself. Further, Schützenberger showed that
the fibrin in undergoing this transformation had taken on 3.97 per
cent. of water. But to my mind, the most significant fact connected
with this experiment is the positive evidence it affords, not only of
hydration as a feature of peptonization by pepsin-acid, but that this
greatly diminished content of carbon, so characteristic of peptones,
and to a less extent of deuteroproteoses, is wholly independent of the
methods of separation and purification ordinarily made use of. Thus,
Schützenberger, in the above experiment, did not attempt any separation
of individual bodies. Proteolysis was carried out under conditions
favoring maximum conversion into peptone, and the resultant product,
or products, was analyzed directly without recourse to any methods
of precipitation or purification. To be sure, the substance analyzed
could not have been peptone entirely free from proteose, but in any
event it represented the terminal products of pepsin-proteolysis, and
like true amphopeptone contained 3.5 per cent. less carbon than the
original fibrin. Hence, we may conclude, without further argument, that
peptonization in gastric digestion is the result of distinct hydrolytic
action, in which the original proteid molecule is gradually broken
down, or split apart, into a number of simpler molecules, the proteoses
and peptones.
[138] Recherches sur la constitution chimique des peptones. Comptes
Rendus, vol. 115, p. 208.
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