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Biomedical subjects

D L Lynch

Publications and source records attributed to D L Lynch.

7 recordsLinked to original sources

Irgasan-induced pigmentation in Serratia marcescens and Pseudomonas aeruginosa.

Two irgasan-resistant micro-organisms (P. aeruginosa and S. marcescens) were used to study the effects of various antibiotic and chemotherapeutic agents on pigment production. These agents included streptomycin, thallium acetate, polymyxin B, hexachlorophene, irgasan, prodigiosin and DMSO (dimethyl sulphoxide). Only irgasan, compared to other drugs and membrane-active agents showed the unique property of inducing pigmentation in both P. aeruginosa and S. marcescens, i.e. prodigiosin in S. marcescens and pyocyanin in P. aeruginosa.

Dose-Response Relationship, Drug

A qualitative and quantitative study of the fatty acid composition of selected micro-organisms.

Fatty acid content was found to be an important parameter in the identification and numerical taxonomy of many micro-organisms. Isolates of the same species and genus as well as members of many well defined groups, such as the Enterobacteriaceae, were included in the study. A direct methylation procedure of the bacteria was found to be accurate, efficient and rapid. Fatty acids were found to be reliable indicators of micro-organisms in group, generic, specific and strain identification. Other biochemical tests were especially valuable when used in conjunction with fatty acid profiles in identification and classification of the bacteria studied.

Bacteria

Toxigenic studies with the antibiotic pigments from Serratia marcescens.

Prodigiosin, obtained from the bacterium, Serratia marcescens, was extracted in five organic solvents, petroleum ether, chloroform, acetone, ethanol, and methanol, and the fractions were labeled PE-1, C-2, A-3, E-4, and M-5 respectively. The effects of prodigiosin and its fractions on embryogenesis showed the whole pigment and C-2 fraction to be highly toxigenic while other fractions demonstrated toxicities approaching LD50 values of 26-30 mug/egg when dissolved in 100% dimethyl sulfoxide. The E-4 fraction in DMSO was least toxic. Ninety-five percent ethanol proved to be highly toxic at a dose level of 0.1 ml/egg indicating that it was an unsuitable solvent for studies of this nature. Disc-agar diffusion sensitivity studies were performed against E. coli, E. aerogenes, S. aureus, B. subtilis, and P. aeruginosa with prodigiosin and fractions dissolved in 100% DMSO. The solvent was found to have no diffusible bacteriostatic activity in vitro. However, prodigiosin and the ethanol (E-4) and methanol (M-5) fractions produced inhibition zones with every organism tested. Data presented below indicate that prodigiosin extracts have toxigenic effects on chick embryos and inhibit the growth of several species of bacteria.

Acetone

Chromatographic separation of the pigment fractions from a Serratia marcescens strain.

A procedure was developed for the separation of pigment fractions in a wild-type Serratia marcescens strain. Separation was achieved by column chromatography and elution with several organic solvents. At least six pigment fractions were obtained from the alumina columns by this technique, whereas only four fractions had been reported previously. Spectral and elemental analyses indicate that, in S. marcescens, prodigiosin is a complex of six fractions, differing in absorption spectra while retaining the general characteristics of the whole pigment.

Chloroform