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将硝基蓝四氮唑转运至存活和非存活白细胞的机制。

Mechanism for transport of nitro-blue tetrazolium into viable and non-viable leukocytes.

作者信息

DeBari V A, Needle M A

出版信息

Histochemistry. 1978 Jun 9;56(2):155-63. doi: 10.1007/BF00508441.

Abstract

The permeability of the membrane of phagocytic leukocytes (WBC) to the non-complexed nitro-blue tetrazolium (NBT) cation has not been well explored. In this study both complexed and non-complexed (or free) NBT have been incubated with viable cells. The entry of NBT into the WBC was determined by both colorimetric and infrared analyses. Very little free NBT enters the viable WBC compared with NBT complexed with serum factors. NBT entry was also studied in non-viable WBC by use of the infrared system. The entry of NBT into the non-viable cells was independent of serum complexing factors. Much larger quantities of both free and complexed NBT enter non-viable cells than enter viable WBC. It is concluded that the membrane of the viable WBC is quite impermeable to the free NBT cation. Ultrastructural studies suggest that the gaps in the plasma membrane of non-viable cells could allow the passage of relatively large amounts of both free and complexed NBT.

摘要

吞噬性白细胞(白细胞)膜对未复合的硝基蓝四唑(NBT)阳离子的通透性尚未得到充分研究。在本研究中,已将复合和未复合(或游离)的NBT与活细胞一起孵育。通过比色分析和红外分析确定NBT进入白细胞的情况。与与血清因子复合的NBT相比,很少有游离NBT进入活白细胞。还通过使用红外系统在非活白细胞中研究了NBT的进入情况。NBT进入非活细胞与血清复合因子无关。进入非活细胞的游离和复合NBT的量都比进入活白细胞的量大得多。得出的结论是,活白细胞的膜对游离NBT阳离子相当不通透。超微结构研究表明,非活细胞质膜中的间隙可能允许相对大量的游离和复合NBT通过。

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