Department of Biology and Biotecnology "Lazzaro Spallanzani" University of Pavia, 27100 Pavia, Italy.
Anticancer Res. 2012 Jul;32(7):2755-8.
Glioblastoma multiforme, the most common type of primary brain tumour, remains an unsolved clinical problem. A great deal of work has been done in an effort to understand the biology and genetics of glioblastoma multiforme, but clinically effective treatments remain elusive. It is well known that malignant gliomas develop resistance to chemo- and radiotherapy. In this review we evaluated the literature data regarding therapeutic progress for the treatment of astrocytic tumours, focusing our attention on new frontiers for glioblastoma. The research studies performed in in vitro and in vivo models show that the application of hyperthermia using magnetic nanoparticles is safe and could be a promising tool in the treatment of glioblastoma patients. Our efforts are focused towards new fields of research, for example nanomedicine and the study of the uptake and cytotoxic effects of magnetic nanoparticles. The improvement of the quality of life of patients, by increasing their survival rate is the best result to be pursued, since these tumours are considered as ineradicable.
多形性胶质母细胞瘤是最常见的原发性脑肿瘤,仍然是一个未解决的临床问题。人们做了大量的工作来了解多形性胶质母细胞瘤的生物学和遗传学,但临床上仍然难以找到有效的治疗方法。众所周知,恶性神经胶质瘤对化疗和放疗有耐药性。在这篇综述中,我们评估了关于治疗星形细胞瘤的治疗进展的文献数据,重点关注胶质母细胞瘤的新前沿。在体外和体内模型中进行的研究表明,使用磁性纳米粒子进行热疗是安全的,并且可能是治疗胶质母细胞瘤患者的有前途的工具。我们的努力集中在新的研究领域,例如纳米医学和磁性纳米粒子的摄取和细胞毒性作用的研究。提高患者的生活质量,增加其存活率是最好的追求结果,因为这些肿瘤被认为是不可治愈的。