The diagnostics and treatment of tropical diseasesStitt, E. R. (Edward Rhodes)
Science
The diagnostics and treatment of tropical diseases
Stitt, E. R. (Edward Rhodes)
Tropical medicine
=Geographical Distribution.=—Practically every pandemic when
studied can be traced back to India and particularly to the delta
of the Ganges, which may be considered the enduring focus of the
disease.
ETIOLOGY AND EPIDEMIOLOGY
=Etiology.=—The cholera vibrio, _Spirillum cholerae asiaticae_, was
discovered by Koch in 1883 and is a short curved organism which,
from its shape, is often called the comma bacillus. In addition to
single spirilla there may be “S” shapes from attachment of pairs.
In cultures in peptone solutions long filamentous forms may be
seen which however are exceedingly rare in the rice-water stools.
A stained smear from a fleck of mucus gives the fish-in-the-stream
appearance. Besides comma-shaped organisms we may have coccoid or
rod-shaped forms. In old cultures marked pleomorphism is often seen.
[Illustration: FIG. 72.—Cholera vibrios, short forms. (MacNeal from
Kolle and Schurmann after Zettrow.)]
It is Gram-negative and stains best with a dilute (1-10) carbol
fuchsin. There is a single terminal flagellum, which endows
the organism with great motility, which may best be termed
scintillating. It has been estimated that its motility is five
times greater than that of the typhoid bacillus. It grows best on
media with an alkaline reaction (—0.4%) and it is this tolerance
for media of high alkalinity that permits the separation of the
cholera spirillum from the ordinary faecal bacteria by the use of
Dieudonne’s alkaline blood agar or similar media. This is equal
parts of defibrinated ox blood and N/1 NaOH, 3 parts of which
are added to 7 parts of nutrient agar. It thus has 15% of normal
sodium hydrate, instead of the 1% acid reaction of the usual media.
Unfortunately, other spirilla tolerate this high alkalinity.
The cholera organism is strongly aerobic and grows quickly and
luxuriantly in the upper part of a tube of Dunham’s peptone
solution, this property enabling one to separate it from other
organisms of faeces by taking up loopfuls from the surface layer
to plate out on agar of about 0 or -0.3% reaction. When grown in
peptone solution the cholera spirillum produces a nitroso body so
that one obtains an indol reaction (cholera red) by simply adding 5
or 6 drops of concentrated H_{2}SO_{4}.
When this test is employed it is necessary to determine whether the
peptone used is suitable for the reaction. As a matter of fact this
test is now rather discredited. Blood serum is digested. Recently
much discussion has arisen as to the value of the haemolytic power
possessed by noncholera vibrios on blood agar plates.
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