Multiple myeloma, which is responsible for the deaths of 10,000 Americans annually, is a disseminated plasma cell malignancy, not curable with current therapy. We recently discovered that attenuated measles viruses are selectively oncolytic for both human myeloma cells and myeloma xenografts grown in SCID mice. Moreover, systemic measles virus delivery is highly feasible in patients with relapsed multiple myeloma because they have profound suppression of humoral immunity and low, nonprotective titers of antimeasles virus antibody. Attenuated measles virus is therefore a promising experimental agent for treatment of relapsed myeloma. Key issues addressed in this proposal are the risk of excessive spread of oncolytic measles virus in the immunosuppressed myeloma patient, the contrary possibility that intratumoral virus spread may be inadequate for successful therapy, and the need for a noninvasive strategy to monitor virus spread in the treated patient. Since multiple myeloma is one of the most highly radiosensitive malignancies known, we have generated recombinant measles viruses expressing the thyroidal sodium iodide symporter (NIS), a membrane ion channel that transports radioactive iodine into mammalian cells. This novel oncolytic engineered measles virus has been named MV-NIS. Hypotheses regarding the MV-NIS virus that will be tested in the proposed studies are as follows: 1. Radioiodine uptake will be enhanced in myeloma cells infected by MV-NIS, allowing noninvasive in vivo gamma camera imaging to estimate the number and distribution of virus-infected cells. 2. Uptake by MV-NIS infected cells of 125I, which emits low energy Auger electrons, will mediate rapid killing of virus infected myeloma cells, with no bystander killing and will thereby terminate virus spread. 3. Uptake by MV-NIS infected cells of 131I, a beta-emitting isotope, will modify the kinetics of virus spread in a dose-dependent manner by damaging both infected myeloma cells and uninfected neighboring cells. 4. With correct tailoring of the dose and timing of 131I administration the therapeutic benefit of MV-NIS radiovirotherapy will be greater than the benefit of MV-Edm virotherapy alone.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA100634-04
Application #
7031612
Study Section
Radiation Study Section (RAD)
Program Officer
Bernhard, Eric J
Project Start
2003-04-04
Project End
2008-03-31
Budget Start
2006-04-21
Budget End
2007-03-31
Support Year
4
Fiscal Year
2006
Total Cost
$317,216
Indirect Cost
Name
Mayo Clinic, Rochester
Department
Type
DUNS #
006471700
City
Rochester
State
MN
Country
United States
Zip Code
55905
Miller, Amber; Suksanpaisan, Lukkana; Naik, Shruthi et al. (2014) Reporter gene imaging identifies intratumoral infection voids as a critical barrier to systemic oncolytic virus efficacy. Mol Ther Oncolytics 1:14005
Suksanpaisan, L; Pham, L; McIvor, S et al. (2013) Oral contrast enhances the resolution of in-life NIS reporter gene imaging. Cancer Gene Ther 20:638-41
Peng, K-W; Myers, R; Greenslade, A et al. (2013) Using clinically approved cyclophosphamide regimens to control the humoral immune response to oncolytic viruses. Gene Ther 20:255-61
Li, H; Nakashima, H; Decklever, T D et al. (2013) HSV-NIS, an oncolytic herpes simplex virus type 1 encoding human sodium iodide symporter for preclinical prostate cancer radiovirotherapy. Cancer Gene Ther 20:478-85
Yarde, Danielle N; Nace, Rebecca A; Russell, Stephen J (2013) Oncolytic vesicular stomatitis virus and bortezomib are antagonistic against myeloma cells in vitro but have additive anti-myeloma activity in vivo. Exp Hematol 41:1038-49
Penheiter, A R; Griesmann, G E; Federspiel, M J et al. (2012) Pinhole micro-SPECT/CT for noninvasive monitoring and quantitation of oncolytic virus dispersion and percent infection in solid tumors. Gene Ther 19:279-87
Naik, S; Nace, R; Federspiel, M J et al. (2012) Curative one-shot systemic virotherapy in murine myeloma. Leukemia 26:1870-8
Russell, Stephen J; Peng, Kah-Whye; Bell, John C (2012) Oncolytic virotherapy. Nat Biotechnol 30:658-70
Naik, S; Nace, R; Barber, G N et al. (2012) Potent systemic therapy of multiple myeloma utilizing oncolytic vesicular stomatitis virus coding for interferon-?. Cancer Gene Ther 19:443-50
Li, Hongtao; Peng, Kah-Whye; Russell, Stephen J (2012) Oncolytic measles virus encoding thyroidal sodium iodide symporter for squamous cell cancer of the head and neck radiovirotherapy. Hum Gene Ther 23:295-301

Showing the most recent 10 out of 49 publications