On Digestive Proteolysis: Being the Cartwright Lectures for 1894 — John Shaqi
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
It must be remembered, however, that in spite of oft-repeated attempts
to obtain more definite knowledge regarding the composition of these
proteolytic enzymes our efforts have been more or less baffled. We
are confronted at the outset with the fact that no criterion of
chemical purity exists, either in the way of chemical composition
or of chemical reactions. The only standard of purity available is
the intensity of proteolytic action, but this is so dependent upon
attendant circumstances that it is only partially helpful in forming an
estimate of chemical purity. My own experiments in this direction, and
they have been quite numerous, have convinced me that it is practically
impossible to obtain a preparation of either pepsin or trypsin at
all active which does not show at least some proteid reactions.
Furthermore, such samples of these two enzymes as I have analyzed have
shown a composition closely akin to that of proteid bodies. I will not
take time to go into all the details of my work in this direction,
contenting myself here with the statement that the purest specimens of
pepsin and trypsin I have been able to prepare have always shown their
relationship to the proteid bodies by responding to many of the typical
proteid reactions, and their composition, though somewhat variable, has
in the main substantiated this evident relationship.
The most satisfactory method I have found for obtaining a comparatively
pure preparation of pepsin, and one at the same time strongly active,
is a modification of the method published some years ago by Kühne and
myself.[29] The mucous membrane from the cardiac portion of a pig’s
stomach is dissected off and washed with water. The upper surface of
the mucosa is then scraped with a knife until at least half of the
membrane is removed. These scrapings, containing the fragments of the
peptic glands, are warmed at 40° C. with an abundance of 0.2 per cent.
hydrochloric acid for ten to twelve days in order to transform all of
the convertible albuminous matter into peptone. The solution is then
freed from insoluble matter by filtration and immediately saturated
with ammonium sulphate, by which the pepsin, with some albumose, is
precipitated in the form of a more or less gummy, or semi-adherent
mass. This is filtered off, washed with a saturated solution of
ammonium sulphate and then dissolved in 0.2 per cent. hydrochloric
acid. The resultant solution is next dialyzed in running water until
the ammonium salt is entirely removed, thymol being added to prevent
putrefaction, after which the fluid is mixed with an equal volume of
0.4 per cent. hydrochloric acid and again warmed at 40° C. for several
days. The ferment is then once more precipitated by saturation of the
fluid with ammonium sulphate, the precipitate strained off, dissolved
in 0.2 per cent. acid and again dialyzed in running water until the
solution is entirely free from sulphate. The clear solution of the
Public-domain text, read in full here on John Shaqi.
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