Pethig R, Jakubek L M, Sanger R H, Heart E, Corson E D, Smith P J S
BioCurrents Research Center, Program in Molecular Physiology, Woods Hole, MA 02543, USA.
IEE Proc Nanobiotechnol. 2005 Dec;152(6):189-93. doi: 10.1049/ip-nbt:20050040.
Membrane capacitance and membrane conductance values are reported for insulin secreting cells (primary -cells and INS-1 insulinoma cells), determined using the methods of dielectrophoresis and electrorotation. The membrane capacitance value of 12.57 (+/-1.46) mFm(-2), obtained for -cells, and the values from 9.96 (+/-1.89) mFm(-2) to 10.65 (+/-2.1) mFm(-2), obtained for INS-1 cells, fall within the range expected for mammalian cells. The electrorotation results for the INS-1 cells lead to a value of 36 (+/-22) Sm(-2) for the membrane conductance associated with ion channels, if values in the range 2-3 nS are assumed for the membrane surface conductance. This membrane conductance value falls within the range reported for INS cells obtained using the whole-cell patch-clamp technique. However, the total 'effective' membrane conductance value of 601 (+/-182) Sm(-2) obtained for the INS-1 cells by dielectrophoresis is significantly larger (by a factor of around three) than the values obtained by electrorotation. This could result from an increased membrane surface conductance, or increased passive conduction of ions through membrane pores, induced by the larger electric field stresses experienced by cells in the dielectrophoresis experiments.
报告了使用介电电泳和旋转电泳方法测定的胰岛素分泌细胞(原代β细胞和INS-1胰岛素瘤细胞)的膜电容和膜电导值。β细胞的膜电容值为12.57(±1.46)mFm⁻²,INS-1细胞的膜电容值在9.96(±1.89)mFm⁻²至10.65(±2.1)mFm⁻²之间,均落在哺乳动物细胞预期的范围内。如果假设膜表面电导在2 - 3 nS范围内,INS-1细胞的旋转电泳结果得出与离子通道相关的膜电导值为36(±22)Sm⁻²。该膜电导值落在使用全细胞膜片钳技术测得的INS细胞报告值范围内。然而,通过介电电泳测得的INS-1细胞的总“有效”膜电导值为601(±182)Sm⁻²,明显大于(约为三倍)旋转电泳测得的值。这可能是由于在介电电泳实验中细胞受到更大电场应力,导致膜表面电导增加,或离子通过膜孔的被动传导增加所致。