Studies on Epidemic Influenza: Comprising Clinical and Laboratory InvestigationsUniversity of Pittsburgh. School of Medicine
History
Studies on Epidemic Influenza: Comprising Clinical and Laboratory Investigations
University of Pittsburgh. School of Medicine
Influenza; Influenza Epidemic, 1918-1919
Great progress has been made in controlling contagious diseases in
recent years—a fact which can be easily verified by anyone who will
compare the sick reports of the Great World War with those of any war
previous to the beginning of the present century. The diseases which
have been most easily controlled have been those against which
prophylactic vaccines or prophylactic sera have been developed.
Smallpox, dysentery and typhoid fever have lent themselves readily to
control by protective vaccination, while reliable temporary immunity can
be afforded by the administration of sera for protection against
diphtheria and tetanus. These are by no means all, but are probably the
most striking illustrations; and with such examples before us, the
greatest hope for the prevention of influenza apparently lies in the
development of a prophylactic vaccine against it.
_History of Prophylactic Vaccination in General_
The name vaccine came from “vacca,” or cow, and was originally applied
by Jenner (1796) to the virus taken from cowpox pustules for
prophylactic inoculation against smallpox. It has come to be loosely
applied to all forms of preventive inoculations except sera. We have,
therefore, a variety of vaccines which differ in their nature and method
of preparation. Some are produced by growing the virus in insusceptible
animals, some are composed of attenuated viruses, and most common of all
are the bacterial vaccines, sometimes called “bacterins,” which are
prepared from killed cultures of bacteria. Sera are used in prophylaxis,
as well as treatment, and are made by bleeding and separating off the
serum from animals which have been immunized against the cause of the
disease in question. Sera and vaccines are wholly different products,
and the distinction should be made in discussing them, although there is
a common tendency, particularly among lay writers, to use the words
interchangeably. Smallpox is the classical example of a disease which
can be completely controlled by universal vaccination. The parasite
causing smallpox has never been certainly demonstrated, but over a
century ago Jenner showed that cowpox, a localized, non-fatal disease,
protected against smallpox. Modern methods have proven that a cow
inoculated with smallpox virus develops cowpox, and that thereafter the
virus loses its power to produce smallpox when it is returned to man.
Instead, it causes a local pustule, and confers immunity to smallpox
over a considerable length of time. Rabies is another example in which
the exact cause of the disease is still in doubt, and in which a
protective vaccine has proven of great value. Rabies vaccine was
developed by Pasteur, and is prepared by drying the spinal cords of
rabbits that have been killed by a highly virulent rabies virus.
Typhoid, dysentery, pneumonia and several other diseases of known
etiology have been more or less controlled by the use of vaccines made
from their respective bacterial causes.
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