What is true of the bactericidal action of the salts of mercury is equally
true of their therapeutic effect. It is a great mistake to estimate the
medicinal activity of a solution of a salt of mercury, or indeed of any
electrolytic solution, simply by its degree of molecular concentration. The
important point is the degree of dissociation, which is the only true
measure of its activity. In the intramuscular injection of mercury salts it
is by no means a matter of indifference what salt we employ. A salt should
be used such as the bichloride or the biniodide, which is easily
dissociated. Other salts are often employed because they occasion less pain
at the site of injection; but the pain is a sign of the degree of activity
of the preparation. The pain, it is true, may be avoided by using a salt
which is less easily dissociated, or in which the mercury is bound up in a
complex ion, but by so doing we diminish the efficacy of the remedy. It is
moreover quite easy to diminish, or even entirely to suppress, the pain, by
using a very dilute solution of an active ionized salt. A one-half per
cent. or even one-quarter per cent. solution of the bichloride or biniodide
of mercury may be injected very slowly in sufficient quantity without
producing the slightest discomfort. Local action depends entirely on ionic
concentration. One drop of pure sulphuric acid will destroy the skin,
whereas the same amount if diluted in a tumblerful of water will furnish a
refreshing drink.
* * * * *
{36}
CHAPTER IV
COLLOIDS
As we have already seen, living organisms are formed essentially of
liquids. These liquids are solutions of crystallizable substances or
crystalloids, and non-crystallizable substances or colloids--a
classification which we owe to Graham.
The liquids are the most important constituents of a living organism, since
they are the seat of all the chemical and physical phenomena of life. The
junction of two liquids of different concentration is the arena in which
takes place both the chemical transformation of matter and the correlative
transformation of energy. In a former chapter we have passed in review the
class of crystalloids, we will now turn our attention to the characteristic
properties of colloids.
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