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Estimation of the membrane potential of cultured macrophages from the fast potential transient upon microelectrode

Insights

Macrophage membrane potentials are more negative than previously reported. Analyzing the initial impalement transient, not the sustained potential, provides a more accurate estimate for these cells.

Area of Science:

  • Cellular electrophysiology
  • Membrane biophysics
  • Immunology

Background:

  • Accurate measurement of macrophage membrane potential is crucial for understanding cellular function.
  • Previous studies often reported sustained potential values (E(s)) that may not reflect the true resting potential.

Purpose of the Study:

  • To re-evaluate the membrane potential of various macrophage types using microelectrode impalement.
  • To determine the most accurate method for estimating macrophage membrane potential.

Main Methods:

  • Microelectrode impalement was used to record membrane potentials in four types of macrophages: P388D1 and PU5-1.8 cell lines, cultured mouse peritoneal macrophages, and cultured human monocytes.
  • Analysis focused on the initial peak potential (E(p)) and subsequent potential changes, including sustained potential (E(s)) and hyperpolarizations (E(h)).
  • Two-electrode impalements were employed to validate findings in single cells.

Main Results:

  • Macrophage membrane potentials were found to be at least two times more negative than previously reported sustained values (E(s)).
  • Upon impalement, a rapid peak potential (E(p)) was observed, followed by decay to a depolarized potential (E(n)) and slow hyperpolarizations (E(h)) before reaching E(s).
  • The peak potential (E(p)) and transient repolarizations (E(h)) were consistent across all tested macrophage types.

Conclusions:

  • The initial peak potential (E(p)) upon microelectrode impalement is a more accurate estimate of the true macrophage membrane potential than the sustained potential (E(s)).
  • Slow hyperpolarizations observed after impalement represent transient repolarizations back to the actual membrane potential.
  • Analysis of the initial impalement transient is a valuable technique for estimating the membrane potential of small, isolated cells.

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