Deakin University, Institute for Technology Research and Innovation (ITRI), Centre for Biotechnology and Interdisciplinary Biosciences (BioDeakin), Laboratory of Immunology and Molecular Biomedical Research (LIMBR), Waurn Ponds, Victoria 3217, Australia.
Expert Opin Ther Pat. 2010 Dec;20(12):1723-37. doi: 10.1517/13543776.2010.533657.
Survivin is a prominent anti-apoptotic molecule expressed widely in the majority of cancers. Overexpression of survivin leads to uncontrolled cancer cell growth and drug resistance. Efficient downregulation of survivin expression and its functions can sensitise the tumour cells to various therapeutic interventions such as chemotherapeutic agents leading to cell apoptosis.
The article thoroughly analyses up-to-date information on the knowledge generated from the survivin patents. Various key areas of research in terms of understanding survivin biology and its targeting are discussed in detail.
The article clearly gives an insight on the recent developments undertaken to understand the roles of survivin in cancer and in validating various treatment paradigms that suppress survivin expression in cancer cells.
Most recent developments are helpful for effectively downregulating survivin expression by using various therapeutic platforms such as chemotherapeutic drugs, immunotechnology, antisense, dominant negative survivin mutant, RNA interference and peptide-based methods. However, selective and specific targeting of survivin in cancer cells still poses a major challenge. Nanotechnology-based platforms are currently under development to enable site-specific targeting of survivin in tumour cells.
Survivin 是一种广泛表达于大多数癌症中的重要抗凋亡分子。Survivin 的过表达导致癌细胞的失控生长和耐药性。Survivin 表达及其功能的有效下调可以使肿瘤细胞对各种治疗干预(如化疗药物)敏感,导致细胞凋亡。
本文全面分析了来自 survivin 专利的最新知识信息。详细讨论了理解 survivin 生物学及其靶向作用的各个关键研究领域。
本文清楚地介绍了为理解 survivin 在癌症中的作用以及验证抑制癌细胞中 survivin 表达的各种治疗模式而进行的最新研究进展。
通过使用各种治疗平台,如化疗药物、免疫技术、反义寡核苷酸、显性负性 survivin 突变体、RNA 干扰和基于肽的方法,大多数最新进展有助于有效下调 survivin 的表达。然而,在癌症细胞中对 survivin 的选择性和特异性靶向仍然是一个主要挑战。基于纳米技术的平台正在开发中,以使 survivin 在肿瘤细胞中的靶向定位具有特异性。