Sidell N, Wada R, Han G, Chang B, Shack S, Moore T, Samid D
Department of Pathology and Laboratory Medicine (Neuropathology), UCLA School of Medicine 90024.
Int J Cancer. 1995 Feb 8;60(4):507-14. doi: 10.1002/ijc.2910600414.
Phenylacetate, a natural metabolite of phenylalanine which was originally described as a plant growth hormone, has recently gained attention as a possible differentiation inducer for a variety of human tumor cell types. This interest prompted us to assess the ability of sodium phenylacetate (NaPA) to promote the differentiation of human neuroblastoma cells, both alone and in combination with retinoic acid (RA), a known inducer of neuroblastoma differentiation and maturation. Using the LA-N-5 cell line, we have determined that NaPA can stimulate the differentiation of neuroblastoma cells, as evidenced by dose-dependent inhibition of cell proliferation, neurite outgrowth, increased acetylcholinesterase activity and reduction of N-myc expression. Furthermore, NaPA and RA synergized in inducing differentiation, in that combination treatment resulted in cessation of cell growth along with morphologic and biochemical changes indicative of the loss of malignant properties. We have determined that NaPA can markedly enhance mRNA levels of the nuclear RA receptor-beta (RAR beta) in LA-N-5 cells prior to morphologic or other phenotypic changes induced by this compound. This effect appeared to be distinct from the ability of NaPA to alter tumor cell lipid metabolism via inhibition of protein isoprenylation. Thus among its varied effects on LA-N-5 cells, NaPA appears to interact with the RA pathway at the nuclear level by up-regulating RAR beta expression.
苯乙酸是苯丙氨酸的一种天然代谢产物,最初被描述为一种植物生长激素,最近作为多种人类肿瘤细胞类型的潜在分化诱导剂而受到关注。这种关注促使我们评估苯乙酸钠(NaPA)单独以及与视黄酸(RA)联合使用时促进人神经母细胞瘤细胞分化的能力,视黄酸是一种已知的神经母细胞瘤分化和成熟诱导剂。使用LA-N-5细胞系,我们已经确定NaPA可以刺激神经母细胞瘤细胞的分化,这表现为细胞增殖的剂量依赖性抑制、神经突生长、乙酰胆碱酯酶活性增加以及N-myc表达降低。此外,NaPA和RA在诱导分化方面具有协同作用,联合治疗导致细胞生长停止以及形态和生化变化,表明恶性特性丧失。我们已经确定,在由该化合物诱导的形态或其他表型变化之前,NaPA可以显著提高LA-N-5细胞中核视黄酸受体-β(RARβ)的mRNA水平。这种作用似乎不同于NaPA通过抑制蛋白质异戊二烯化来改变肿瘤细胞脂质代谢的能力。因此,在其对LA-N-5细胞的多种作用中,NaPA似乎通过上调RARβ表达在核水平与视黄酸途径相互作用。