Abstract
Replacement of a sulphur atom by an oxygen at the 1-position of the cephem nucleus generally resulted in fourfold to sixteenfold increase of antibacterial activity in each pair of the structural congeners. However, the increased antibacterial activity caused by the replacement was accompanied by instability to β-lactamase to some extent, which was due presumably to the increased chemical reactivity of the β-lactam ring system. The aim of the research effort is to confer β-lactamase stability and expand the Gram-negative spectrum. Two types of substituents have been demonstrated to protect 1-oxacephem from enzymic hydrolysis and their protecting effects were specifically related to the types of β-lactamases derived from Gram-negative bacteria: the 7β-malonylamino function is specific to cephalosporinase and the 7α-methoxy group to penicillinase. The complementary effect of these substituents was clearly demonstrated. This line of studies led us to prepare the clinical candidate 6059-S, which possessed widely expanded antibacterial spectra against Gramnegative bacteria including indole-positive
Proteus
,
Enterobacter
,
Sarratia marcescen
s,
Pseudomonas aeruginosa
and
Bacteroides fragilis.
Subject
Industrial and Manufacturing Engineering,General Agricultural and Biological Sciences,General Business, Management and Accounting,Materials Science (miscellaneous),Business and International Management
Cited by
34 articles.
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