Abstract
In Sauton's synthetic liquid medium, 10 mug of pyridoxal per ml completely protected Mycobacterium tuberculosis (H37R(a)) from the effects of a minimal inhibitory concentration of isoniazid (0.01 mug/ml). (14)C-labeled isoniazid was employed to study the nature of this protective effect. Uptake of the drug by cells in a Sauton environment containing 0.01 mug of (14)C-isoniazid per ml was inhibited 20 to 40% by 10 mug of pyridoxal per ml during the early hours of drug exposure. A stronger inhibition of uptake resulted when labeled isoniazid and pyridoxal were increased to 0.1 mug/ml and 50 to 100 mug/ml, respectively. Further studies revealed that certain Sauton nutrients are required to achieve this effect. When l-asparagine or salts (MgSO(4) and ferric ammonium citrate) or both were deleted from the menstruum, pyridoxal did not inhibit isoniazid incorporation by the tubercle bacilli. Pyridoxal also failed to inhibit uptake when (NH(4))(2)SO(4) was substituted for l-asparagine. Growth experiments in Sauton's medium modified to contain (NH(4))(2)SO(4) instead of l-asparagine were consistent with the latter finding. Pyridoxal did not prevent isoniazid growth inhibition in this medium. It is postulated that a large excess of pyridoxal in Sauton's medium protects tubercle bacilli from the effects of isoniazid through formation of an extracellular complex involving drug, vitamin, and certain medium constituents, thereby reducing the level of isoniazid available to the cells.
MeSH Terms
Asparagine/pharmacology
Carbon Isotopes
Citrates/pharmacology
Culture Media
Drug Resistance, Microbial
Isoniazid/metabolism,pharmacology
Magnesium Sulfate/pharmacology
Mycobacterium tuberculosis/drug effects,growth & development
Pyridoxine/pharmacology
Quaternary Ammonium Compounds/pharmacology
Sulfates/pharmacology
Chemicals
Carbon Isotopes
Citrates
Culture Media
Quaternary Ammonium Compounds
Sulfates
Asparagine
Magnesium Sulfate
Pyridoxine
Isoniazid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Beggs W H
Jenne J W
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