Diagnostic, Prognostic and Therapeutic Uses of Non-Coding RNAs in Leukemia
Differential lincRNA profiles in B-ALL patients provide an orthogonal method for characterizing cancer to improve the accuracy of current diagnostics/prognostics. Specific lincRNA profiles may also help determine patient response to chemotherapeutic agents.
LincRNA profiles can be used as a diagnostic/prognostic tool in conjunction with cytogenetic analysis in B-ALL patients. Specific lincRNAs (such as BALIR-2) can be developed into targets for molecular therapies to treat leukemia. (e.g. knockdown siRNA)
Long intergenic non-coding RNAs (lincRNAs) are involved in gene regulation and are often dysregulated in cancer. Dr. Dinesh Rao and colleagues at UCLA have focused on the expression of lincRNAs in B acute lymphoblastic leukemia (B-ALL) and developed a method to characterize common forms of B-ALL by their respective lincRNA profiles. In patients with no cytogenetic abnormalities, a specific non-coding RNA termed B-ALL associated long intergeneic RNA (BALIR-2) was correlated with poor response to chemotherapy and overall survival. Knockdown of BALIR-2 expression using lentiviral vectors resulted in decreased cell growth and increased apoptosis, suggesting that BALIR-2 is involved in the regulation and response of B-ALL cells. The use of lincRNAs profiles may provide a more accurate diagnostic and prognostic tool, while the control of specific lincRNA expression could form the basis of therapeutic treatment in patients who fail to respond to traditional therapy.
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State Of Development Background Related Materials O'Connell RM, Balazs AB, Rao DS, Kivork C, Yang L, Baltimore D: Lentiviral Vector Delivery of Human Interleukin-7 (hIL-7) to Human Immune System (HIS) Mice Expands T Lymphocyte Populations. PLoS ONE 2010, 5:e12009. Tech ID/UC Case 24779/2013-475-0 Related Cases 2013-475-0
O'Connell RM, Chaudhuri AA, Rao DS, Baltimore D: Inositol phosphatase SHIP1 is a primary target of miR-155. Proceedings of the National Academy of Sciences 2009, 106:7113-7118.
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