Prior_1990_J.Pharmacol.Exp.Ther_255_1170

Reference

Title : End-plate ion channel block produced by lincosamide antibiotics and their chemical analogs - Prior_1990_J.Pharmacol.Exp.Ther_255_1170
Author(s) : Prior C , Fiekers JF , Henderson F , Dempster J , Marshall IG , Parsons RL
Ref : Journal of Pharmacology & Experimental Therapeutics , 255 :1170 , 1990
Abstract :

Five lincosamide compounds were studied for their effects on end-plate currents (epcs), miniature end-plate currents and acetylcholine-induced current fluctuations in the garter snake costocutaneous nerve-muscle preparation. At high concentrations, lincomycin and clindamycin reduced epc amplitude, but analysis of driving functions showed that only with clindamycin was this due solely to changes in epc quantal content. The effect of lincomycin on epc amplitude was exaggerated by rapid channel block during the rising phase of the epc. Clindamycin produced currents with a single exponential decay and single Lorentzian noise spectra. All the other compounds produced currents which decayed as the sum of two exponential components. For lincomycin and epilincomycin, noise spectra consisted of two Lorentzian components. For epiclindamycin and deoxylincomycin, although epcs and miniature end-plate currents decayed with two components, it was not possible to separate two components in the noise spectra. A kinetic analysis of ion channel blocking actions showed only small differences between the two pairs of stereoisomers studied. End-plate ion channel blocking and unblocking rate constants did not vary greatly among the compounds but the end-plate ion channel unblocking rate constant values for the two lincomycin stereoisomers were larger than those for the two clindamycin stereoisomers. Deoxylincomycin exhibited properties similar to those of the clindamycins. It was concluded that lipid solubility, not stereochemical conformation, plays the greater role in determining the ion channel blocking properties within the series, particularly that of the rate of dissociation of the compound from end-plate ion channels.

PubMedSearch : Prior_1990_J.Pharmacol.Exp.Ther_255_1170
PubMedID: 1702153

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Citations formats

Prior C, Fiekers JF, Henderson F, Dempster J, Marshall IG, Parsons RL (1990)
End-plate ion channel block produced by lincosamide antibiotics and their chemical analogs
Journal of Pharmacology & Experimental Therapeutics 255 :1170

Prior C, Fiekers JF, Henderson F, Dempster J, Marshall IG, Parsons RL (1990)
Journal of Pharmacology & Experimental Therapeutics 255 :1170