Epstein-Barr Virus is a common and worldwide pathogen. While exposure usually results in a self-limited lymphoproliferative syndrome, infectious mononucleosis, the virus is causative, or associated with, a number of malignancies. The latent virus is detected in 2 endemic tumors: 95% of African Burkitt's lymphoma, and 90-100% of nasopharyngeal carcinoma. Many B-lymphomas, some T-lymphomas, and approximately 50% of Hodgkin's lymphomas have also been found to contain latent EBV. 40% of lymphomas arising in AIDS, and nearly all lymphomas arising in transplant recipients (post-transplant-associated lymphoproliferative disease (PT-LPD) harbor EBV. PT-LPD is especially difficult to treat unless the immunosuppression can be reversed, and is typically refractory to radiation therapy and chemotherapy. Similar to herpes simplex virus and varicella-zoster virus, EBV encodes a thymidine kinase (TK) enzyme. In a rate-limiting step, the viral TK converts nucleoside analogues to their monophosphate form, eventually leading to premature termination of the nascent DNA and cell death. Latently-EBV-infected B-cells and epithelial cells, including tumor cells, do not express TK. We have found that exposure of these cells to the experimental drug Arginine Butyrate results in induction of TK expression. Preliminary in vitro studies demonstrated that induction of EBV-TK in patient-derived tumor cells by Arginine Butyrate is possible, and that these previously-resistant cells are rendered susceptible to Ganciclovir (GCV) therapy. We have years of clinical experience in the administration of Arginine Butyrate to adults and children in studies to induce fetal hemoglobin as therapy for sickle cell anemia and thalassemia. We hypothesized that treatment of patients with EBV- associated tumors with arginine butyrate (to induce the EBV-TK) and GCV (to eliminate EBV-TK expressing cells) might be an effective, nontoxic therapy. We have treated eight patients with Arginine Butyrate plus ganciclovir in an FDA-registered pilot study with documented responses in the majority of patients, and no adverse outcomes related to this regimen.
Our Specific Aims are: (1) To determine if treatment with Arginine Butyrate plus Ganciclovir will result in clinical responses in a significant proportion of patients with EBV-associated lymphomas and lymphoproliferative disease (LPD); (2) To determine toxicity or side effects of the combination therapy; and (3) To determine if tumor specimens and cell lines derived from patients demonstrate the same response to Arginine Butyrate and Ganciclovir (with respect to TK gene induction and synergistic susceptibility) as the EBV(+) cell lines we have studied to date.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Exploratory/Developmental Grants (R21)
Project #
1R21CA085687-01A1
Application #
6294186
Study Section
Special Emphasis Panel (ZRG1-CONC (01))
Program Officer
Wu, Roy S
Project Start
2001-02-07
Project End
2003-01-31
Budget Start
2001-02-07
Budget End
2002-01-31
Support Year
1
Fiscal Year
2001
Total Cost
$407,500
Indirect Cost
Name
Boston University
Department
Type
Schools of Medicine
DUNS #
604483045
City
Boston
State
MA
Country
United States
Zip Code
02118
Perrine, Susan P; Hermine, Olivier; Small, Trudy et al. (2007) A phase 1/2 trial of arginine butyrate and ganciclovir in patients with Epstein-Barr virus-associated lymphoid malignancies. Blood 109:2571-8
Ghosh, Sajal K; Forman, Lora W; Akinsheye, Idowu et al. (2007) Short, discontinuous exposure to butyrate effectively sensitizes latently EBV-infected lymphoma cells to nucleoside analogue antiviral agents. Blood Cells Mol Dis 38:57-65
Ghez, David; Damotte, Diane; Perrine, Susan P et al. (2006) Fas ligand-mediated lethal hepatitis after rapid lysis of a localized natural killer cell lymphoma. Clin Lymphoma Myeloma 6:417-9
Chen, James S; Faller, Douglas V (2005) Histone deacetylase inhibition-mediated post-translational elevation of p27KIP1 protein levels is required for G1 arrest in fibroblasts. J Cell Physiol 202:87-99
Park, Jae Hong; Faller, Douglas V (2002) Epstein-Barr virus latent membrane protein-1 induction by histone deacetylase inhibitors mediates induction of intercellular adhesion molecule-1 expression and homotypic aggregation. Virology 303:345-63
Mentzer, S J; Perrine, S P; Faller, D V (2001) Epstein--Barr virus post-transplant lymphoproliferative disease and virus-specific therapy: pharmacological re-activation of viral target genes with arginine butyrate. Transpl Infect Dis 3:177-85
Faller, D V; Mentzer, S J; Perrine, S P (2001) Induction of the Epstein-Barr virus thymidine kinase gene with concomitant nucleoside antivirals as a therapeutic strategy for Epstein-Barr virus-associated malignancies. Curr Opin Oncol 13:360-7