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β-肾上腺素能对阿霉素敏感或耐药的P388白血病细胞的影响。

Beta-adrenergic influences on doxorubicin-sensitive or -resistant P388 leukemia cells.

作者信息

D'Amico C, Crescimanno M, Armata M G, Leonardi V, Palazzoadriano M, D'Alessandro N

机构信息

Instituto di Farmacologia, Policlinico P. Giaccone, Palermo, Italy.

出版信息

Anticancer Res. 1992 Nov-Dec;12(6B):2253-6.

PMID:1338280
Abstract

Taking into account the possible regulatory influences of the beta-adrenergic system on lymphocyte proliferation as well as the proposed role of cyclic 3'-5'-adenosine monophosphate (cAMP) in the modulation of multidrug resistance (MDR) in tumour cells, we have tried to assess the status of the interactions between the beta-adrenergic system and a mouse lymphocytic leukemia, the P388, both as a doxorubicin-sensitive (P388) and -resistant (MDR) variant (P388/DXR). P388 showed a low total number of high affinity 125I-pindolol binding sites (340 +/- 33/cell, Kd 108 pM) when compared with normal splenocytes (1221 +/- 67 sites/cell, Kd 97 pM). The number of beta-adrenergic receptors was even lower in P388/DXR cells (230 +/- 41 sites/cell, Kd 101 pM). In addition, these receptors were subnormally expressed on the cell surface: only 26% and 52% of the total receptors were surface receptors in P388 and P388/DXR, respectively, whereas it was 87% in normal splenocytes. Isoproterenol slightly (less than 1-fold) stimulated cAMP accumulation in P388 and P388/DXR; the stimulation observed in splenocytes was 2.5-fold. In addition, the basal levels of cAMP appeared to be low (0.48 +/- 0.05 pmoles/10(6) cells in P388 and 0.71 +/- 0.08 pmoles/10(6) cells in P388/DXR; 3.47 +/- 0.28 pmoles/10(6) cells in splenocytes) in the two leukemias and they were only slightly (less than 2-fold) increased by forskolin, which otherwise stimulated about 15-fold cAMP accumulation in splenocytes; thus, P388 and P388/DXR were probably also defective in their adenylate cyclase activity. It can be concluded that, owing to multifactorial mechanisms, the lymphocytic leukemia P388, also as an MDR variant, is minimally sensitive to the direct influences of the beta-adrenergic system, probably including any effect of this system on drug-sensitivity.

摘要

考虑到β-肾上腺素能系统对淋巴细胞增殖可能存在的调节作用,以及环磷酸腺苷(cAMP)在肿瘤细胞多药耐药(MDR)调节中所起的作用,我们试图评估β-肾上腺素能系统与小鼠淋巴细胞白血病P388之间的相互作用状态,P388有阿霉素敏感型(P388)和耐药型(MDR)两种变体(P388/DXR)。与正常脾细胞(1221±67个位点/细胞,解离常数97 pM)相比,P388显示高亲和力125I-吲哚洛尔结合位点的总数较低(340±33个/细胞,解离常数108 pM)。P388/DXR细胞中的β-肾上腺素能受体数量甚至更低(230±41个位点/细胞,解离常数101 pM)。此外,这些受体在细胞表面的表达低于正常水平:在P388和P388/DXR中,分别只有26%和52%的总受体是表面受体,而在正常脾细胞中这一比例为87%。异丙肾上腺素对P388和P388/DXR中cAMP积累的刺激作用较弱(小于1倍);在脾细胞中观察到的刺激作用为2.5倍。此外,两种白血病中cAMP的基础水平似乎较低(P388中为0.48±0.05 pmol/10^6个细胞,P388/DXR中为0.71±0.08 pmol/10^6个细胞;脾细胞中为3.47±0.28 pmol/10^6个细胞),并且它们仅被福司可林轻微增加(小于2倍),而福司可林在脾细胞中可刺激cAMP积累增加约15倍;因此,P388和P388/DXR的腺苷酸环化酶活性可能也存在缺陷。可以得出结论,由于多种因素机制,淋巴细胞白血病P388,包括其MDR变体,对β-肾上腺素能系统的直接影响极为不敏感,这可能包括该系统对药物敏感性的任何影响。

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