The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
In the first place no one of those colloids which make up the mass of a
living body, appears capable of carrying on vital changes by itself: it is
always associated with other colloids. A portion of animal-tissue, however
minute, almost always contains more than one form of protein-substance:
different chemical modifications of albumen and gelatine are present
together, as well as, probably, a soluble and insoluble modification of
each; and there is usually more or less of fatty matter. In a single
vegetal cell, the minute quantity of nitrogenous colloid present, is
imbedded in colloids of the non-nitrogenous class. And the microscope makes
it at once manifest, that even the smallest and simplest organic forms are
not absolutely homogeneous.
Further, we have to contemplate organic tissue, formed of mingled colloids
in both soluble and insoluble states, as permeated throughout by
crystalloids. Some of these crystalloids, as oxygen,[5] water, and perhaps
certain salts, are agents of decomposition; some, as the saccharine and
fatty matters, are probably materials for decomposition; and some, as
carbonic acid, water, urea, kreatine, and kreatinine, are products of
decomposition. Into the mass of mingled colloids, mostly insoluble and
where soluble of very low molecular mobility or diffusive power, we have
constantly passing, crystalloids of high molecular mobility or diffusive
power, that are capable of decomposing these complex colloids, or of
facilitating decompositions otherwise caused; and from these complex
colloids, when decomposed, there result other crystalloids (the two chief
ones extremely simple and mobile, and the rest comparatively so) which
diffuse away as rapidly as they are formed.
And now we may clearly see the necessity for that peculiar composition
which we find in organic matter. On the one hand, were it not for the
extreme molecular mobility possessed by three out of the four of its chief
elements; and were it not for the consequently high molecular mobility of
their simpler compounds; there could not be this quick escape of the waste
products of organic action; and there could not be that continuously active
change of matter which vitality implies. On the other hand, were it not for
the union of these extremely mobile elements into immensely complex
compounds, having relatively vast molecules which are made comparatively
immobile by their inertia, there could not result that mechanical fixity
which prevents the components of living tissue from diffusing away along
with the effete matters produced by decomposition.
§ 8a. Let us not omit here to note the ways in which the genesis of these
traits distinguishing organic matter conforms to the laws of evolution as
expressed in its general formula.
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