The Body at Work: A Treatise on the Principles of PhysiologyHill, Alex
Science
The Body at Work: A Treatise on the Principles of Physiology
Hill, Alex
Physiology
What chemical changes occur in muscle when it contracts? What is the
chemical source of its power? Carbonic acid is given off. This is
the only product which we can collect and measure; but it is taken
for granted that hydrogen atoms also combine with oxygen, forming
water. There is no reason for thinking that nitrogen is removed from
the molecules of its protoplasm with any greater rapidity during the
activity of muscle than when it is quiescent (_cf._ p. 212). Is the
oxidation immediate and complete, or does it occur in stages? For
many years attention has been directed to lactic acid, partly because
this substance is found in muscle which has been made to contract
under experimental conditions, partly because, on theoretical grounds,
glycogen (animal starch) is looked upon as the most important of
muscle-foods. Lactic acid—C₃H₆O₃—has the same percentage composition
as glycogen—C₆H₁₂O₆. Its formation from glycogen merely involves
a rearrangement of atoms. It has been supposed that lactic acid is
formed in the first instance, and then, if the supply of oxygen be
sufficient, oxidized to carbonic acid and water. But this hypothesis
may be resisted on various grounds. Undoubtedly, lactic acid appears
when oxygen is deficient. Under all circumstances and in all tissues a
certain amount of it is formed. There are reasons for thinking that it
carries away the nitrogen which is wasted, as lactamide. But it does
not follow that under normal conditions, when muscle is abundantly
supplied with blood, lactic acid appears in any greater quantity during
activity than during rest. The hypothesis is due to the misconception
which we have already endeavoured to correct. It is difficult to get
away from the steam-engine analogy. A steam-engine is made of iron and
brass. These materials are subject to wear and tear; but they are not
the source of its power. Its power is due to the combustion of fuel.
Muscle, physiologists formerly said, is made of protoplasm. This wears
down when it works, setting free creatin and other nitrogenous débris.
Its fuel is glycogen. This is not the way, however, in which the matter
is now regarded. Protoplasm is not the machine only, but also the
source of power. Glycogen is not burnt in a framework of protoplasm.
When muscle contracts, protoplasm casts out CO₂ and H₂O. Glycogen is
the food readiest to restore to it the atoms which it has lost.
Public-domain text, read in full here on John Shaqi.
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