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Biomedical subjects

F Fenner

Publications and source records attributed to F Fenner.

At least 19 recordsLinked to original sources

Smallpox: emergence, global spread, and eradication.

Speculatively, it is suggested that variola virus, the cause of smallpox, evolved from an orthopoxvirus of animals of the central African rain forests (possibly now represented by Tatera poxvirus), some thousands of years ago, and first became established as a virus specific for human beings in the dense populations of the Nile valley perhaps five thousand years ago. By the end of the first millennium of the Christian era, it had spread to all the densely populated parts of the Eurasian continent and along the Mediterranean fringe of north Africa. It became established in Europe during the times of the Crusades. The great voyages of European colonization carried smallpox to the Americas and to Africa south of the Sahara. Transported across the Atlantic by Europeans and their African slaves, it played a major role in the conquest of Mexico and Peru and the European settlement of north America. Variolation, an effective preventive inoculation, was devised as early as the tenth century. In 1798 this practice was supplanted by Jenner's cowpox vaccine. In 1967, when the disease was still endemic in 31 countries and caused ten to fifteen million cases and about two million deaths annually, the World Health Organization embarked on a programme that was to see the disease eradicated globally just over ten years later, and the world was formally declared to be free of smallpox in May 1980. Smallpox is unique--a specifically human disease that emerged from some animal reservoir, spread to become a worldwide, severe and almost universal affliction, and finally underwent the reverse process to emergence, namely global eradication.

Africa

Wallace P. Rowe lecture. Poxviruses of laboratory animals.

Currently the subfamily Chordopoxvirinae, the poxviruses of vertebrates, is subdivided into eight genera, containing some 20-30 species; an inexact figure because the birdpox viruses have not yet been properly investigated taxonomically. I have discussed seven species belonging to three genera, all of which have caused infection and usually disease in mammals commonly used in the laboratory. The list could have been extended had I included chickens and swine as laboratory animals, for that would have meant that I would have spoken about the birdpox viruses and swinepox virus as well. However, I think I have said enough to remind you of the importance of this family of viruses to those of you concerned with laboratory animal medicine. I believe that Wally Rowe would have been interested, for every case I have described presents problems in the ecology of viruses, and like my mentor Macfarlane Burnet, Wally approached virology from an ecological point of view, whether he was thinking about the DNA provirus of retroviruses and the host chromosome, the pathogenesis of disease, or the spread of viruses in animal populations, all topics to which he made major contributions.

Animals

Impact of population density on immunization programmes.

The eradication of smallpox was achieved by surveillance and containment vaccination after the failure of mass immunization campaigns. The reasons for this failure are considered in this paper. Comparison of population densities in the Indian subcontinent and Africa show that in highly populated areas even an 80% vaccine coverage will still leave a density of susceptibles high enough to maintain the disease, a finding with important implications for other vaccine campaigns.

Africa

Methods for comparing sequence data such as restriction endonuclease maps or nucleotide sequences of viral nucleic acid molecules.

Maps of restriction endonuclease sites in the DNA genomes of orthopoxviruses were compared by computer classification methods. Data from such maps were recorded as qualitative binary information, and gave closely similar dendrograms when different dissimilarity measures and sorting strategies were used for the computations. A method for calculating dendrograms from small data sets, by 'hand', is described in detail to assist those who do not have access to suitable computer programs. The same calculation strategy gave useful classifications of partial nucleotide and amino acid sequences of orthomyxovirus haemagglutinins.

Animals

The Florey lecture, 1983. Biological control, as exemplified by smallpox eradication and myxomatosis.

Biological control is an important method of dealing with plant and insect pests. The control of rabbits by myxomatosis and the eradication of smallpox by vaccination are unusual examples of biological control, in that they involve a vertebrate and a viral pest respectively. Myxomatosis is a benign disease in Sylvilagus rabbits in South America which is transmitted mechanically by mosquitoes. In the European rabbit, Oryctolagus, which is a pest in Australia and England, the virus from Sylvilagus produces a generalized disease that is almost always lethal. Myxomatosis was deliberately introduced into Australia in 1950 and into Europe in 1952. It was at first spectacularly successful in controlling the rabbit pest, but biological adjustments occurred in the virulence of the virus and the genetic resistances of rabbits. After 30 years of interaction, natural selection has resulted in a balance at a fairly high level of viral virulence. Smallpox has been a major scourge of mankind for over 1500 years. It spread from Asia to Europe in the Middle ages and from Europe to Africa and the Americas in the 15th and 16th centuries. Jenner's cowpox vaccine provided a method of control that reduced the severity of the disease during the 19th century but failed to eliminate the disease from many countries before the 1930s. Thereafter it was eradicated from Europe and North America, but remained endemic in South America, Africa and Asia. In 1967 it was still endemic in 33 countries and W.H.O. established a programme for global eradication within 10 years. The goal was achieved in 1977. Problems of the eradication programme and reasons for its success will be described.

Animals

Cryptograms--1982.

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Terminology as Topic

Mousepox (infectious ectromelia): past, present, and future.

Mousepox is an orthopoxvirus infection of mice that was discovered in laboratory mice in England in 1930. Depending upon mouse genotype, it may produce a severe disease with acute hepatitis and high mortality, a generalized rash in animals that survive longer, or a trivial inapparent infection. It has long been enzootic in breeding stocks of mice in Europe, Japan, and China but not in North America and Australia. However, it has been imported into the USA on several occasions, sometimes causing severe epizootics. It may contaminate or replace various viruses that are passaged in mice and may be transferred between mouse stocks in intact mice or in mouse tumors or tissues. Vaccination with vaccinia virus provides protection and has been used to eradicate virus from mouse colonies. Depopulation and sterilization of infected animal quarters my be required.

Animals