=Keratins= are typified by the hair of animals. They soften somewhat
in cold water and even more in hot water, but are not dissolved until
digested for some time at temperatures exceeding 100° C. With some
keratins, however, the cystine group is to some extent easily split
off by warm water, and on boiling with water hydrogen sulphide is
evolved. The sulphur content of keratins is often greater than the
average for proteids. All keratins are dissolved with great readiness
by solutions containing sulphydrates and hydrates, _e.g._ a solution
of sodium sulphide. In solutions of the hydrates of the alkali and
alkaline earth metals, keratins behave differently. Some dissolve with
great ease, some with difficulty, some only on heating and some not
even if digested with hot caustic soda. They are dissolved (with
hydrolysis) by heating with mineral acids, yielding peptones and
eventually amido acids, acid amides, etc. Many keratins have a
comparatively low content of nitrogen.
=Gelatins= are very difficult to distinguish from one another, their
behaviour being closely similar to reagents. They are also very
readily hydrolyzed even with water, and the products of hydrolysis are
even more similar. The gelatins are known together, commercially,
under the general name of gelatine. Gelatins of different origin,
however, have undoubtedly a different composition, the nitrogen
content being variable. If the gelatins are not bleached whilst they
are being manufactured into commercial gelatine, they are called
"glue." Gelatine is colourless, transparent, devoid of taste and
smell. It is usually brittle. Its S.G. is about 1.42, and it melts at
140° C. and decomposes. It is insoluble in organic solvents. When
swelling in cold water it may absorb up to 12 times its own weight of
water. The swollen product is called a "jelly." Jellies easily melt on
heating and a colloidal solution of gelatine is obtained. This "sets"
again to a jelly on cooling, even if only 1 per cent. gelatin (or
less) be present. The solution is optically active and lævorotatory,
but with very variable specific rotation. Some observers have thought
that the different gelatins have different specific rotations and may
so be distinguished. Gelatins are precipitated from solutions by many
reagents, such as alcohol, formalin, quinone, metaphosphoric acid,
tannins, and many salt solutions, _e.g._ those of aluminium, chromium
and iron, and of mercuric chloride, zinc sulphate, ammonium sulphate,
potassium carbonate, acidified brine. Many of these precipitations
have analogies in leather manufacture (see Parts I. to IV.). The
gelatin peptones or gelatoses are formed by hydrolysis with acids,
alkalies, ferment or even by digestion with hot water only. A more
detailed description of the properties of gelatine is given in Part
V., Section I. Gelatine is sometimes called "glutin" and "ossein."
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