Lange K, Gartzke J
Bundesanstalt für Arbeitsschutz und Arbeitsmedizin, D-10317 Berlin, Germany.
Am J Physiol Cell Physiol. 2001 Aug;281(2):C369-85. doi: 10.1152/ajpcell.2001.281.2.C369.
The phenomenon of multidrug resistance (MDR) is reinterpreted on the basis of the recently proposed concept of microvillar signaling. According to this notion, substrate and ion fluxes across the surface of differentiated cells occur via transporters and ion channels that reside in membrane domains at the tips of microvilli (MV). The flux rates are regulated by the actin-based cytoskeletal core structure of MV, acting as a diffusion barrier between the microvillar tip compartment and the cytoplasm. The expression of this diffusion barrier system is a novel aspect of cell differentiation and represents a functional component of the natural defense system of epithelial cells against environmental hazardous ions and lipophilic compounds. Because of the specific organization of epithelial Ca(2+) signaling and the secretion, lipophilic compounds associated with the plasma membrane are transferred from the basal to the apical cell surface by a lipid flow mechanism. Drug release from the apical pole occurs by either direct secretion from the cell surface or metabolization by the microvillar cytochrome P-450 system and efflux of the metabolites and conjugation products through the large multifunctional anion channels localized in apical MV. The natural microvillar defense system also provides a mechanistic basis of acquired MDR in tumor cells. The microvillar surface organization is lost in rapidly growing cells such as tumor or embryonic cells but is restored during exposure of tumor cells to cytotoxins by induction of a prolonged G(0)/G(1) resting phase.
基于最近提出的微绒毛信号传导概念,对多药耐药(MDR)现象进行了重新诠释。根据这一概念,分化细胞表面的底物和离子通量是通过位于微绒毛(MV)尖端膜结构域中的转运蛋白和离子通道发生的。通量速率由MV基于肌动蛋白的细胞骨架核心结构调节,该结构作为微绒毛尖端区室与细胞质之间的扩散屏障。这种扩散屏障系统的表达是细胞分化的一个新方面,代表了上皮细胞天然防御系统针对环境有害离子和亲脂性化合物的功能组成部分。由于上皮细胞钙(Ca2+)信号传导和分泌的特定组织方式,与质膜相关的亲脂性化合物通过脂质流动机制从细胞基底表面转移到顶端表面。药物从顶端极释放是通过从细胞表面直接分泌或由微绒毛细胞色素P - 450系统代谢,以及代谢产物和结合产物通过位于顶端MV中的大型多功能阴离子通道流出实现的。天然的微绒毛防御系统也为肿瘤细胞获得性MDR提供了机制基础。微绒毛表面组织在快速生长的细胞如肿瘤细胞或胚胎细胞中丧失,但在肿瘤细胞暴露于细胞毒素期间,通过诱导延长的G0/G1静止期得以恢复。