Obviously these artificial
phenomena have nothing to do with living substance.
Yet if we grind up a living muscle with some sand in a mortar we do
destroy something. The muscle could be made to contract, but after
disintegration this power is lost. We have certainly destroyed a
structure, or mechanism, of some kind. But, again, the paste of muscle
substance and sand still possesses some kind of vital activity,
for with certain precautions it can be made to exhibit many of the
phenomena of enzyme activity displayed by the intact muscle fibres,
or even the entire organism. Mechanical disintegration, therefore,
abolishes some of the activities of the organism, but not all of them.
If, however, we heat the muscle paste above a certain temperature, the
residue of vital phenomena exhibited by it are irreversibly removed,
so that heating destroys the mechanism. This we can hardly imagine
to be the case (within ordinary limits of temperature at least) with
a physical mechanism, but again a mechanism which is partly chemical
might be so destroyed. We see, then, that protoplasm possesses a
mechanical structure, but that all of its vital activities do not
necessarily depend on this structure. The full manifestation of these
activities depends on the protoplasmic substance possessing a certain
volume or mass, and also on a certain chemical structure.
If living protoplasm has a structure, and is not simply a mixture of
chemical compounds, what is it then? Two or three physico-chemical
concepts are at the present time very much in evidence in this
connection. When the substances known as _colloids_ were fully
investigated by the chemists, much attention was paid to them by the
physiologists, so that life was called “the chemistry of the colloids,”
just as after the investigation of the enzymes it was called the
“chemistry of the enzymes,” and when the discovery of the relative
abundance of phosphorus in cell-nuclei and in the brain was discovered,
it was called the “chemistry of phosphorus.” Colloids (_e.g._ glue)
are substances that do not readily diffuse through certain membranes,
in opposition to crystalloids (_e.g._ solution of common salt) which
do readily so diffuse. They form solutions which easily gelatinise
reversibly, that is, can become liquid again (glue); or coagulate
irreversibly, that is, cannot become liquid again (albumen); which have
no definite saturation point; which have a low osmotic pressure (and
derived properties), etc.; and the molecules of which are compound
ones consisting of combinations of the molecules of the substance with
the molecules of the solvent, or with each other, that is, they are
molecular aggregates.
Public-domain text, read in full here on John Shaqi.
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