Binet S, Chaineau E, Fellous A, Lataste H, Krikorian A, Couzinier J P, Meininger V
Laboratoire d'Anatomie, UER Biomédicales des St-Pères et Broussais-Hôtel-Dieu, Paris, France.
Int J Cancer. 1990 Aug 15;46(2):262-6. doi: 10.1002/ijc.2910460220.
Among the various non-naturally-occurring Vinca alkaloid compounds, nor-anhydro-vinblastine (Navelbine, NVB) exhibits in preliminary clinical studies broader anti-tumor activity and lower neurotoxicity than vinblastine (VBL) and vincristine (VCR). The action of these 3 Vinca alkaloids on axonal and mitotic microtubules has been studied experimentally in a specific model, the tectal plate anlage of mouse embryos at the earliest stages of neuronal differentiation. Post-implantation embryos were cultured in toto in a medium containing increasing concentrations of drugs. Microtubules were stained using immunofluorescence with a tubulin-specific polyclonal antibody in semi-thin sections after embedding in high-molecular-weight polyethylene glycol. All drugs induced depolymerization of mitotic interpolar microtubules and cell metaphase block at the same concentration. Increasing the concentrations led to progressive depolymerization of kinetochore microtubules. However, NVB was the only drug to induce complete microtubule depolymerization. The activity of the 3 compounds on axonal microtubules was identical: depolymerization of a labile pool of microtubules. This was observed at higher concentrations with NVB than with the 2 other Vinca alkaloids. Our results show that, in this model, NVB is as active on mitotic microtubules as VCR and VBL, and less active on axonal microtubules. None of the 3 drugs modified microtubule length but all appeared to induce disruption of the labile microtubule pool without altering the stable pool.
在各种非天然存在的长春花生物碱化合物中,去甲脱水长春碱(诺维本,NVB)在初步临床研究中显示出比长春碱(VBL)和长春新碱(VCR)更广泛的抗肿瘤活性和更低的神经毒性。在一个特定模型,即神经元分化最早阶段的小鼠胚胎视顶板原基中,对这三种长春花生物碱对轴突微管和有丝分裂微管的作用进行了实验研究。植入后的胚胎在含有浓度递增药物的培养基中进行整体培养。在嵌入高分子量聚乙二醇后,用微管蛋白特异性多克隆抗体通过免疫荧光对半薄切片中的微管进行染色。所有药物在相同浓度下均诱导有丝分裂极间微管解聚和细胞中期阻滞。增加浓度会导致动粒微管逐渐解聚。然而,NVB是唯一能诱导微管完全解聚的药物。这三种化合物对轴突微管的活性相同:不稳定微管池解聚。与其他两种长春花生物碱相比,NVB在更高浓度时观察到这种情况。我们的结果表明,在这个模型中,NVB对有丝分裂微管的活性与VCR和VBL相同,而对轴突微管的活性较低。这三种药物均未改变微管长度,但似乎都能诱导不稳定微管池的破坏,而不改变稳定微管池。