Abstract <p>The effect of weak combined magnetic fields, a static magnetic field (60 µT) and a collinear alternating magnetic field at a frequency of 12.6 Hz with amplitudes in the range of 10–2500 nT, on the intensity of a respiratory burst recorded by luminol-dependent chemiluminescence in a mouse neutrophil suspension in response to the activator peptide N-formyl–Met–Leu–Phe was studied. It has been shown that a 40 min exposure to combined magnetic fields preceding the introduction of the activator enhances the respiratory burst in the range of alternating field amplitudes of 40–265 nT.</p>

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The Effect of Combined Static and Alternating Low-Frequency Magnetic Fields on the Respiratory Burst Intensity in Mouse Neutrophils Depending on the Magnitude of the Alternating Field Component

  • V. V. Novikov,
  • E. V. Yablokova

摘要

Abstract

The effect of weak combined magnetic fields, a static magnetic field (60 µT) and a collinear alternating magnetic field at a frequency of 12.6 Hz with amplitudes in the range of 10–2500 nT, on the intensity of a respiratory burst recorded by luminol-dependent chemiluminescence in a mouse neutrophil suspension in response to the activator peptide N-formyl–Met–Leu–Phe was studied. It has been shown that a 40 min exposure to combined magnetic fields preceding the introduction of the activator enhances the respiratory burst in the range of alternating field amplitudes of 40–265 nT.