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
Assuming for the moment that the chief products of proteolysis,
_i. e._, the proteoses and peptones, are, during the act of absorption,
transformed through the vital processes of the epithelial cells of the
intestine into serum-albumin, or globulin, and absorbed as such into
the blood, we may well consider whether such transformation, _i. e._, a
retrogression into a native proteid again, is inconsistent, or out of
harmony, with the general character of the changes known to occur in
the body. In attempting to answer this question we need not look far
to find a perfectly analogous case. Thus, in the digestion of starchy
foods by the amylolytic ferments of both the saliva and the pancreatic
juice, the carbohydrate material undergoes hydration with formation
of dextrins and maltose, the latter, at least, being quickly absorbed
into the circulating blood. But large quantities of sugar in the blood
are certainly inimical to the well-being of the organism, and we find
in the liver a tendency for the sugar to undergo a transformation,
_i. e._, a retrogression into glycogen, either through simple
dehydration or otherwise. Further, with reference to the possible
conversion of proteoses into peptone by the substance of the intestine,
we have a perfectly analogous case in the behavior of the intestinal
mucous membrane toward maltose, the final product of amylolytic action.
Thus, according to the recent work of M. C. Tebb,[220] the mucous
membrane of the intestine has the power of transforming maltose into
dextrose; simple warming at 40° C. of a solution of maltose in 0.5 per
cent. sodium carbonate with a few grammes of the dried mucous membrane
from the intestine, being sufficient to insure a marked conversion of
maltose into the higher-reducing sugar, dextrose. This observation,
I can confirm from experiments just completed in my own laboratory.
This action is presumably due to a ferment, which, according to Tebb,
is widely distributed throughout the body, being present not only
in the intestine, but also in the liver, kidney, spleen, striated
muscle-tissue, and, indeed, in the blood-serum; so that it would appear
that nearly all the tissues of the body are endowed with the power of
transforming maltose into dextrose. These statements being correct, it
would seem that, while the amylolytic ferments of the several digestive
juices transform, by hydrolytic action, starchy foods into maltose,
the latter is exposed during its passage through the intestinal wall,
as well as in the blood itself, to another ferment which carries the
hydration still further, with formation of dextrose; and yet the latter
product is destined, in part at least, to undergo retrogression into a
starch-like body, _i. e._, glycogen, before it is completely utilized
by the system. Thus, the analogy between these carbohydrate bodies and
the products of proteolysis is complete, and we may well accept the
statements already made regarding the ultimate fate of the proteoses
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