Comparative studies of suppression of malignant cancer cell phenotype by antisense oligo DNA and small interfering RNA.

Cancer Gene Ther

ERATO-SORST, Kitano Symbiotic Systems Project, Japan Science and Technology Agency, Shibuya-ku, Tokyo.

Published: January 2006

AI Article Synopsis

  • Malignant tumor cells can grow without needing to attach to a surface, making it harder to treat those cancers.
  • Interfering RNA, particularly antisense oligo DNA (AS-ODN) and small interfering RNA (siRNA), offers a targeted approach to inhibit this uncontrolled growth.
  • AS-ODN proved to be more effective with a single high-dose treatment, while siRNA required frequent low-dose treatments for similar results in stopping the proliferation of cancer cells.

Article Abstract

One of the distinguishing features of malignant tumor cells is the ability to proliferate in an anchorage-independent manner; methods that effectively suppress this phenotype may be applicable to the therapeutic inhibition of the malignancy of cancers. Interfering RNA is a potentially powerful tool for cancer therapy because of its specificity of target selection and remarkably high efficiency in target mRNA suppression. We studied the use of two knockdown strategies, antisense oligo DNA (AS-ODN) and small interfering RNA (siRNA), and showed how the anchorage-independent proliferation of malignant cells could be blocked efficiently. Anchorage-independent proliferation of rat fibroblasts transformed with v-src was suppressed with only a single 1-microM dose of AS-ODN; similar suppression using siRNA required treatment with 1 nM siRNA every 12 h. With our experimental system, the molecular stability of AS-ODN allowed the use of a simple treatment regimen to control the amount of the target molecule, providing that the treatment dose was sufficiently high. In comparison, siRNA treatment was effective at lower doses, but more frequent treatment was necessary to achieve the same suppression of proliferation.

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Source
http://dx.doi.org/10.1038/sj.cgt.7700869DOI Listing

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