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Since penicillin and salvarsan were discovered, a number of new
drugs to combat infectious diseases have been developed, but at the
same time, the number of multi-resistant microorganism strains is
increasing. Thus, the design of new and effective antibacterial,
antiviral and antifungal agents will be a major challenge in the
next years. This book reviews the current state-of-the-art in
antimicrobial research and discusses new strategies for the design
and discovery of novel therapies. Topics covered include the use of
genetic engineering, genome mining, manipulation of gene clusters,
X-ray and neutron scattering as well as the antimicrobial effects
of essential oils, antimicrobial agents of plant origin,
beta-lactam antibiotics, antimicrobial peptides, and
cell-wall-affecting antifungal antibiotics.
Since penicillin and salvarsan were discovered, a number of new
drugs to combat infectious diseases have been developed, but at the
same time, the number of multi-resistant microorganism strains is
increasing. Thus, the design of new and effective antibacterial,
antiviral and antifungal agents will be a major challenge in the
next years. This book reviews the current state-of-the-art in
antimicrobial research and discusses new strategies for the design
and discovery of novel therapies. Topics covered include the use of
genetic engineering, genome mining, manipulation of gene clusters,
X-ray and neutron scattering as well as the antimicrobial effects
of essential oils, antimicrobial agents of plant origin,
beta-lactam antibiotics, antimicrobial peptides, and
cell-wall-affecting antifungal antibiotics.
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