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巨噬细胞中的全细胞电流:I. 人单核细胞衍生巨噬细胞。

Whole-cell currents in macrophages: I. Human monocyte-derived macrophages.

作者信息

Nelson D J, Jow B, Jow F

机构信息

Department of Medicine, University of Chicago, Illinois 60637.

出版信息

J Membr Biol. 1990 Jul;117(1):29-44. doi: 10.1007/BF01871563.

Abstract

We examined the variability of occurrence and frequency of voltage-dependent whole-cell currents in human peripheral blood monocyte-derived macrophages (HMDM) maintained in culture for up to three weeks. An increase in cell capacitance from an average value of 9 pF on the day of isolation to 117 pF at 14 days accompanied growth and differentiation in culture. The average resting potential was approximately -34 mV for cells beyond two days in culture. Cells exhibited a voltage- and time-dependent outward current upon membrane depolarization above approximately -30 mV, which appeared to be composed of a number of separate currents with variable expression from donor to donor. Three of these currents are carried by K+. The frequency of each outward current type was calculated for 974 cells obtained from 36 donors. The HMDMs in these studies exhibited two 4-aminopyridine (4-AP) sensitive, time-dependent outward currents (IA and IB) that could be differentiated on the basis of the presence or absence of steady-state inactivation in the physiological potential range, time course of inactivation during maintained depolarization, as well as threshold of activation. The 4-AP-insensitive outward current activated at approximately 10 mV. One component of the 4-AP insensitive-outward current (IC) could be blocked by external TEA and by the exchange of internal CS+ or Na+ for K+. The probability of observing IB and IC appeared to be donor dependent. Following total replacement of internal K+ with CS+, two additional currents could be identified (i) a delayed component of outward current (ID) remained which could be blocked by low concentrations of external Zn2+ (4 microM) and was insensitive to anion replacement in the external solution and (ii) a Cl- current with a reversal potential which shifted in the presence of external anion replacement and which was irreversibly inhibited by the stilbene SITS. The activation of a prominent time-independent inward current was often observed with increasing hyperpolarization. This inward current was blocked by external Ba2+ and corresponded to the inwardly rectifying K+ current. Neither inward nor outward current expression appeared dependent on whether cells were differentiated in adherent or suspension culture nor was there demonstrable differential current expression observed upon transition from suspension to adherent form.

摘要

我们研究了在培养长达三周的人外周血单核细胞衍生巨噬细胞(HMDM)中,电压依赖性全细胞电流的发生变异性和频率。细胞电容从分离当天的平均值9 pF增加到第14天的117 pF,伴随着培养过程中的生长和分化。培养两天以上的细胞平均静息电位约为-34 mV。当膜去极化超过约-30 mV时,细胞表现出电压和时间依赖性外向电流,这似乎由许多不同供体间表达可变的独立电流组成。其中三种电流由K +携带。计算了从36名供体获得的974个细胞中每种外向电流类型的频率。这些研究中的HMDM表现出两种对4-氨基吡啶(4-AP)敏感的、时间依赖性外向电流(IA和IB),可根据生理电位范围内是否存在稳态失活、持续去极化期间的失活时间进程以及激活阈值来区分。4-AP不敏感的外向电流在约10 mV时激活。4-AP不敏感外向电流(IC)的一个成分可被外部TEA以及用内部CS +或Na +替代K +所阻断。观察到IB和IC的概率似乎取决于供体。在用CS +完全替代内部K +后,可识别出另外两种电流:(i)外向电流的延迟成分(ID)仍然存在,可被低浓度的外部Zn2 +(4 microM)阻断,并且对外部溶液中的阴离子替代不敏感;(ii)一种Cl -电流,其反转电位在存在外部阴离子替代时会发生偏移,并且被芪类化合物SITS不可逆地抑制。随着超极化增加,经常观察到一种突出的时间非依赖性内向电流的激活。这种内向电流被外部Ba2 +阻断,对应于内向整流K +电流。内向和外向电流表达似乎都不取决于细胞是在贴壁培养还是悬浮培养中分化,也没有观察到从悬浮形式转变为贴壁形式时明显的电流差异表达。

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