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DNAzyme technology and cancer therapy: cleave and let die.

机译:DNAzyme技术和癌症治疗:分裂并死亡。

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Novel molecules are constantly being discovered and developed to find better means of managing debilitating and fatal diseases, which include cancer in its multiple forms. Among these molecules, and as a direct consequence of a better understanding of the molecular basis of diseases, are those falling within the class of gene therapeutics. Among these players, deoxyribozymes (DNAzymes) have come a long way from being just another analytic tool available to molecular biologists. Recent studies have shown the potential DNAzymes to serve as drugs both in cell-based assays and preclinical models of cancer. It is anticipated that with the development of smart delivery systems for DNAzymes, better pharmacokinetics and pharmacodynamics will be possible, expediting DNAzyme march toward the clinic. Also, the ability of DNAzymes to yield to such phenomena as light-induced activation may be exploited for targeted therapy. This review documents the rise of DNAzymes in the fight against cancer and serves as a forecast for this promising biotechnology in this context.
机译:人们不断发现和开发新型分子,以找到更好的方法来治疗使人衰弱和致命的疾病,包括多种形式的癌症。在这些分子中,并且是更好地理解疾病的分子基础的直接结果,是属于基因治疗药物类别的那些。在这些参与者中,脱氧核酶(DNAzymes)已成为分子生物学家可用的另一种分析工具,已经走了很长一段路。最近的研究表明,潜在的DNA酶可在基于细胞的测定和癌症的临床前模型中用作药物。可以预期,随着用于DNAzyme的智能递送系统的发展,更好的药代动力学和药效学将成为可能,从而加速DNAzyme走向临床。而且,可以利用DNA酶产生诸如光诱导的激活之类的现象的能力用于靶向治疗。这篇综述记录了脱氧核糖核酸酶在抗击癌症中的兴起,并以此为背景预测了这种有前途的生物技术。

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