Handbook of Medical EntomologyRiley, William A. (William Albert)
Science
Handbook of Medical Entomology
Riley, William A. (William Albert)
Insect pests; Insects as carriers of disease; Medical parasitology
An examination of the internal structures (fig. 26) reveals two distinct
types of poison glands, the acid-secreting and the alkaline-secreting
glands, and a prominent poison reservoir. In addition, there is a small
pair of accessory structures which have been called lubricating glands,
on account of the supposed function of their product. The acid-secreting
gland empties into the distal end of the poison reservoir which in turn
pours the secretion into the muscular bulb-like enlargement at the base
of the shaft. The alkaline secreting gland empties into the bulb ventrad
of the narrow neck of the reservoir.
The poison is usually referred to as formic acid. That it is not so
easily explained has been repeatedly shown and is evidenced by the
presence of the two types of glands. Carlet maintains that the product
of either gland is in itself innocent,--it is only when they are
combined that the toxic properties appear.
The most detailed study of the poison of the honey-bee is that of Josef
Langer (1897), who in the course of his work used some 25,000 bees.
Various methods of obtaining the active poison for experimental purposes
were used. For obtaining the pure secretion, bees were held in the
fingers and compressed until the sting was exserted, when a clear drop
of the poison was visible at its tip. This was then taken up in a
capillary tube or dilute solutions obtained by dipping the tip of the
sting into a definite amount of distilled water.
An aqueous solution of the poison was more readily obtained by pulling
out the sting and poison sacs by means of forceps, and grinding them up
in water. The somewhat clouded fluid was then filtered one or more
times. For obtaining still greater quantities, advantage was taken of
the fact that while alcohol coagulates the poison, the active principle
remains soluble in water. Hence the stings with the annexed glands where
collected in 96 per cent alcohol, after filtering off of the alcohol
were dried at 40° C., then rubbed to a fine powder and this was
repeatedly extracted with water. Through filtering of this aqueous
extract there was obtained a yellowish-brown fluid which produced the
typical reactions, according to concentration of the poison.
The freshly expelled drop of poison is limpid, of distinct acid
reaction, tastes bitter and has a delicate aromatic odor. On
evaporation, it leaves a sticky residue, which at 100 degrees becomes
fissured, and suggests dried gum arabic. The poison is readily soluble
in water and possesses a specific gravity of 1.1313. On drying at room
temperature, it leaves a residue of 30 per cent, which has not lost in
poisonous action or in solubility. In spite of extended experiments,
Langer was unable to determine the nature of the active principle. He
showed that it was not, as had been supposed, an albuminous body, but
rather an organic base.
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