uPA/uPAR downregulation inhibits radiation-induced migration, invasion and angiogenesis in IOMM-Lee meningioma cells and decreases tumor growth in vivo

  • Authors:
    • Odysseas Kargiotis
    • Chandramu Chetty
    • Venkateswara Gogineni
    • Christopher S. Gondi
    • Sai Muralikrishna Pulukuri
    • Athanassios P. Kyritsis
    • Meena Gujrati
    • Jeffrey D. Klopfenstein
    • Dzung H. Dinh
    • Jasti S. Rao
  • View Affiliations

  • Published online on: November 1, 2008     https://doi.org/10.3892/ijo_00000081
  • Pages: 937-947
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Abstract

Meningioma is a well-known tumor of the central nervous system, and is treated by surgical resection and/or radiation. Recently, ionizing radiation has been shown to enhance invasiveness of surviving tumor cells, and several proteolytic enzyme molecules, including urokinase plasminogen activator (uPA), seem to be upregulated after radiation. uPA and its receptor (uPAR) have been strongly implicated in tumor invasion, angiogenesis and progression. Hence, the tumor-associated uPA-uPAR system is considered a potential target for cancer therapy. In the present study, we show that radiation increases uPA levels in the IOMM-Lee meningioma cells, and subsequently, increases tumor invasion, migration and angiogenesis in vitro. Studies with signaling molecule inhibitors AG1478, U0126 and SB203580 (specific inhibitors of EGFR, MEK1/2 and p38 respectively) showed inhibition of uPA levels in both basal and irradiated-IOMM-Lee cells. The PI3K inhibitor (LY294002) and the AKT inhibitor (AKT inhibitor IV) also partially decreased uPA expression, whereas SP600125, a JNK inhibitor, did not affect uPA levels in either radiated or non-radiated cells. Further, a bicistronic plasmid construct with small interfering RNA (siRNA) against uPA and its receptor inhibited tumor invasion, migration and angiogenesis in radiation-treated IOMM-Lee cells. In addition, siRNA against uPA and its receptor inhibited subcutaneous tumor growth in athymic nude mice in combination with radiation in a synergistic manner. Thus, the specific targeting of proteases via RNA interference could augment the therapeutic effect of radiation and prevent the adverse effects resulting from tumor cells that receive sublethal doses of radiation within the tumor mass.

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November 2008
Volume 33 Issue 5

Print ISSN: 1019-6439
Online ISSN:1791-2423

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Spandidos Publications style
Kargiotis O, Chetty C, Gogineni V, Gondi CS, Pulukuri SM, Kyritsis AP, Gujrati M, Klopfenstein JD, Dinh DH, Rao JS, Rao JS, et al: uPA/uPAR downregulation inhibits radiation-induced migration, invasion and angiogenesis in IOMM-Lee meningioma cells and decreases tumor growth in vivo. Int J Oncol 33: 937-947, 2008
APA
Kargiotis, O., Chetty, C., Gogineni, V., Gondi, C.S., Pulukuri, S.M., Kyritsis, A.P. ... Rao, J.S. (2008). uPA/uPAR downregulation inhibits radiation-induced migration, invasion and angiogenesis in IOMM-Lee meningioma cells and decreases tumor growth in vivo. International Journal of Oncology, 33, 937-947. https://doi.org/10.3892/ijo_00000081
MLA
Kargiotis, O., Chetty, C., Gogineni, V., Gondi, C. S., Pulukuri, S. M., Kyritsis, A. P., Gujrati, M., Klopfenstein, J. D., Dinh, D. H., Rao, J. S."uPA/uPAR downregulation inhibits radiation-induced migration, invasion and angiogenesis in IOMM-Lee meningioma cells and decreases tumor growth in vivo". International Journal of Oncology 33.5 (2008): 937-947.
Chicago
Kargiotis, O., Chetty, C., Gogineni, V., Gondi, C. S., Pulukuri, S. M., Kyritsis, A. P., Gujrati, M., Klopfenstein, J. D., Dinh, D. H., Rao, J. S."uPA/uPAR downregulation inhibits radiation-induced migration, invasion and angiogenesis in IOMM-Lee meningioma cells and decreases tumor growth in vivo". International Journal of Oncology 33, no. 5 (2008): 937-947. https://doi.org/10.3892/ijo_00000081