Warren H S, Skipsey L J
Cancer Research Unit, Royal Canberra Hospital South, Woden, Australian Capital Territory.
Immunology. 1991 Sep;74(1):78-85.
The results of the present study show that activation-induced changes in CD45RA and CD45RO expression on T cells and natural killer (NK) cells are not unidirectional for all cells during a 5-week culture period. T cells and NK cells were generated from a resting subpopulation of peripheral blood mononuclear cells (PBMC) defined by sedimentation at Percoll high buoyant densities (p greater than 1.0640 g/ml) and unresponsiveness to IL-2. T cells were activated by a combination of PHA, sheep erythrocytes and IL-2-conditioned medium (IL-2-CM), and NK cells were activated by co-culture with gamma-irradiated malignant melanoma (MM-170) cells and IL-2-CM. Both T-cell and NK-cell cultures were maintained by subculture in IL-2-CM. NK cells and the CD45R(Abright)RO(dim/neg) subpopulation of T cells gained CD45RO following activation and this was accompanied by a two-fold decrease in CD45RA expression. In different cultures, CD45RO expression was not stable on 28-80% of T cells and 10-55% of NK cells. Cells with decreased CD45RO expression showed increased expression of CD45RA. Instability of CD45RO expression on cultured T cells and NK cells occurred at a time following the period of rapid cell growth when the cells were entering a quiescent phase. Both the CD4+ and CD8+ T-cell subpopulation showed similar changes in CD45 isoform expression. In contrast to the results obtained with the CD45R(Abright)RO(dim/neg) resting T cells, the CD45RO(bright)RA(dim/neg) subpopulation of resting T cells when activated and cultured under identical conditions retained CD45RO expression and remained CD45RAdim/neg. Thus a significant proportion of resting CD45R(Abright)RO(dim/neg) T cells is not related in a differentiation sequence to resting CD45RObrightRAdim/neg T cells, and therefore resting CD45RAbrightROdim/neg T cells and resting NK cells may be heterogeneous with respect to their activation history.
本研究结果表明,在为期5周的培养期内,T细胞和自然杀伤(NK)细胞上CD45RA和CD45RO表达的激活诱导变化并非对所有细胞都是单向的。T细胞和NK细胞由外周血单个核细胞(PBMC)的静息亚群产生,该亚群通过在Percoll高浮力密度(p大于1.0640 g/ml)下沉降以及对IL-2无反应来定义。T细胞通过PHA、绵羊红细胞和IL-2条件培养基(IL-2-CM)的组合激活,NK细胞通过与γ射线照射的恶性黑色素瘤(MM-170)细胞和IL-2-CM共培养激活。T细胞和NK细胞培养物均通过在IL-2-CM中传代培养来维持。NK细胞以及T细胞的CD45R(Abright)RO(dim/neg)亚群在激活后获得CD45RO,同时CD45RA表达下降两倍。在不同培养物中,28 - 80%的T细胞和10 - 55%的NK细胞上CD45RO表达不稳定。CD45RO表达降低的细胞CD45RA表达增加。培养的T细胞和NK细胞上CD45RO表达的不稳定性发生在细胞快速生长阶段之后,此时细胞进入静止期。CD4 +和CD8 + T细胞亚群在CD45异构体表达上表现出相似变化。与CD45R(Abright)RO(dim/neg)静息T细胞获得的结果相反,静息T细胞的CD45RO(bright)RA(dim/neg)亚群在相同条件下激活并培养时保留CD45RO表达且仍为CD45RAdim/neg。因此,相当一部分静息CD45R(Abright)RO(dim/neg)T细胞在分化序列上与静息CD45RObrightRAdim/neg T细胞无关,因此静息CD45RAbrightROdim/neg T细胞和静息NK细胞在激活历史方面可能是异质性的。