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Updated: Apr 22, 2026

An Organotypic High Throughput System for Characterization of Drug Sensitivity of Primary Multiple Myeloma Cells
Published on: July 15, 2015
A phase I trial of single-agent reolysin in patients with relapsed multiple myeloma
Douglas W Sborov1, Gerard J Nuovo2, Andrew Stiff3
1Department of Internal Medicine, The Ohio State University, Columbus, Ohio.
Purpose:
Reolysin, a proprietary isolate of reovirus type III dearing, enters and preferentially induces apoptosis of malignant cells. RAS pathway activation has been associated with more efficient reoviral infectivity and enhanced oncolysis. Reovirus is currently in advanced solid tumor phase I-II trials; no clinical trials have been conducted in patients with hematologic malignancies.
Experimental Design:
A phase I trial treated 12 relapsed myeloma patients at two dose levels. Reolysin was infused daily for 5 days every 28 days. Bone marrow specimens were examined by in situ-based hybridization (ISH) for CD138, p38, caspase-3, reoviral RNA, and capsid protein at screening and cycle 1 day 8. Junctional adhesion molecule 1 (JAM-1) and cancer upregulated gene 2 (CUG2) were evaluated in patient samples and multiple myeloma cell lines. Neutralizing anti-reovirus antibody assay was performed weekly during cycle 1.
Results:
There were no dose-limiting toxicities, patients reached the 3 × 10(10) TCID50 daily on days 1 to 5 dose level, and grade 3 laboratory toxicities included neutropenia, thrombocytopenia, and hypophosphatemia. ISH demonstrated reoviral genome confined in multiple myeloma cells. Reoviral capsid protein and caspase-3 were rarely identified within reoviral RNA-positive cells. The longest durations of stable disease were 4, 5, and 8 months.
Conclusions:
Treatment with single-agent Reolysin was well tolerated and associated with avid reoviral RNA myeloma cell entry but only minimal intracellular reoviral protein production within multiple myeloma cells. Our data support that in multiple myeloma cells, Reolysin-induced oncolysis requires combination therapy, similar to other cancers.
Insights
Reolysin effectively entered multiple myeloma cells in a Phase I trial, but intracellular protein production was limited. Combination therapy is likely needed for Reolysin to induce significant oncolysis in these blood cancer cells.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Reolysin, a reovirus type III isolate, targets and induces apoptosis in malignant cells.
- RAS pathway activation enhances reovirus infectivity and oncolysis.
- Reovirus is under investigation for solid tumors, but its use in hematologic malignancies is unexplored.
Purpose of the Study:
- To evaluate the safety and tolerability of single-agent Reolysin in relapsed multiple myeloma.
- To assess Reolysin's biological activity within multiple myeloma cells.
- To explore the potential of Reolysin in treating hematologic malignancies.
Main Methods:
- A Phase I clinical trial involving 12 relapsed multiple myeloma patients.
- Reolysin administration: daily infusion for 5 days every 28 days.
- Bone marrow analysis using in situ hybridization (ISH) for viral RNA, capsid protein, and apoptosis markers; evaluation of JAM-1 and CUG2; and anti-reovirus antibody assays.
Main Results:
- No dose-limiting toxicities observed; maximum tolerated dose not reached.
- Grade 3 toxicities included neutropenia, thrombocytopenia, and hypophosphatemia.
- ISH confirmed reovirus RNA within myeloma cells, but viral capsid protein and caspase-3 were rarely detected, indicating limited intracellular replication.
Conclusions:
- Single-agent Reolysin was well-tolerated in multiple myeloma patients.
- Reolysin demonstrated avid entry into myeloma cells but limited intracellular protein expression.
- Reolysin-induced oncolysis in multiple myeloma likely necessitates combination therapy.
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