Production of Antibioticsx



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Summary 
Since the discovery of penicillin in 1929 by Alexander Fleming the importance of 
antibiotics as chemotherapeutic agents has been increasing year after year. More than 
8000 antibiotics are known, although only a few of them have therapeutic importance. 
The study of the biosynthetic pathway of many antibiotics has served as a way to design 
new pathways and products. 
Penicillin production can be studied as an example for the antibiotic world because it 
was the first antibiotic produced on a large scale, and also because today it is the one 
most commonly used in the treatment of
human infectious diseases around the world. In 
addition, many of the techniques used for the industrial production of penicillin have 
served as a model for the industrial production of other antibiotics or secondary 
metabolites. 
Traditionally, the increase in the production of antibiotics has been obtained using
classical improvement methods which have given good results, and
the use of these 
methods has allowed researchers to improve the strains and the production processes. 
However,
over the last few years molecular biology techniques have been implemented 
in order to increase final antibiotic production, and also to obtain products that are not 
naturally synthesized. 
After approximately 20 years of gene manipulation there is still one open question. Can 
the DNA recombinant technology improve natural evolution or simply make it to go 
faster? Since industry still uses classical mutation and screening methods to select for 
better producing strains, molecular biology can probably
serve as an additional tool to 
improve strains, which must be combined with the classical improvement techniques to 
get the best results. 
The article presents an overview about i) the production of penicillin as an historical 
example, ii) the strain improvements techniques used since the discovery of penicillin, 
and iii) examples of the application of DNA-recombinant technology to increase the 
β
-
lactam antibiotic production in filamentous fungi. 

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