Literature DB >> 3801578

Intracellular microelectrode measurements in small cells evaluated with the patch clamp technique.

C Ince, E van Bavel, B van Duijn, K Donkersloot, A Coremans, D L Ypey, A A Verveen.   

Abstract

Microelectrode penetration of small cells leads to a sustained depolarization of the resting membrane potential due to a transmembrane shunt resistance (Rs) introduced by the microelectrode. This has led to underestimation of the resting membrane potential of various cell types. However, measurement of the fast potential transient occurring within the first few milliseconds after microelectrode penetration can provide information about pre-impalement membrane electrophysiological properties. We have analyzed an equivalent circuit of a microelectrode measurement to establish the conditions under which the peak of the impalement transients (Ep) approaches the pre-impalement resting membrane potential (Em) of small cells most closely. The simulation studies showed that this is the case when the capacitance of the microelectrode is low and the membrane capacitance of the cell high. In experiments performed to assess the reliability of Ep as a measure of Em, whole-cell patch clamp measurements were performed in the current clamp mode to monitor, free from the effects of Rs, Em in cultured human monocytes. Microelectrode impalement of such patch clamped cells and measurement of Ep made it possible to detect correlation between Ep and Em and showed that for small cells such as human monocytes Ep is on average 6 mV less negative than the resting membrane potential.

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Year:  1986        PMID: 3801578      PMCID: PMC1329793          DOI: 10.1016/S0006-3495(86)83563-9

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  9 in total

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3.  Membrane potential, action potential and activation potential of eggs of the sea urchin, Lytechinus variegatus.

Authors:  E L Chambers; J de Armendi
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4.  A teflon culture dish for high-magnification microscopy and measurements in single cells.

Authors:  C Ince; J T van Dissel; M M Diesselhoff
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5.  KCl leakage from microelectrodes and its impact on the membrane parameters of a nonexcitable cell.

Authors:  M R Blatt; C L Slayman
Journal:  J Membr Biol       Date:  1983       Impact factor: 1.843

6.  Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches.

Authors:  O P Hamill; A Marty; E Neher; B Sakmann; F J Sigworth
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7.  Oscillatory hyperpolarizations and resting membrane potentials of mouse fibroblast and macrophage cell lines.

Authors:  C Ince; P C Leijh; J Meijer; E Van Bavel; D L Ypey
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8.  Electrophysiology of phagocytic membranes: induction of slow membrane hyperpolarizations in macrophages and macrophage polykaryons by intracellular calcium injection.

Authors:  P M Persechini; E G Araujo; G M Oliveira-Castro
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9.  Estimation of the membrane potential of cultured macrophages from the fast potential transient upon microelectrode entry.

Authors:  C Ince; D L Ypey; R Van Furth; A A Verveen
Journal:  J Cell Biol       Date:  1983-03       Impact factor: 10.539

  9 in total
  15 in total

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4.  Ionic channels and membrane hyperpolarization in human macrophages.

Authors:  C Ince; B Van Duijn; D L Ypey; E Van Bavel; F Weidema; P C Leijh
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5.  Voltage-activated ionic channels and conductances in embryonic chick osteoblast cultures.

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6.  Factors responsible for oscillations of membrane potential recorded with tight-seal-patch electrodes in mouse fibroblasts.

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8.  Targeted intracellular voltage recordings from dendritic spines using quantum-dot-coated nanopipettes.

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9.  Extracellular ATP induces a large nonselective conductance in macrophage plasma membranes.

Authors:  H P Buisman; T H Steinberg; J Fischbarg; S C Silverstein; S A Vogelzang; C Ince; D L Ypey; P C Leijh
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10.  The effect of noradrenaline on the ion permeability of isolated mammalian hepatocytes, studied by intracellular recording.

Authors:  A C Field; D H Jenkinson
Journal:  J Physiol       Date:  1987-11       Impact factor: 5.182

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