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Updated: Jul 25, 2026

High-Throughput In Vitro Assay using Patient-Derived Tumor Organoids
Published on: June 14, 2021
Oligonucleotide enhanced cytotoxicity of Idarubicin for lymphoma cells
J G Sharp1, M R Bishop, B Copple
1J. G. Sharp Department of Cell Biology and Anatomy, University of Nebraska Medical Center, 986395 Nebraska Medical Center, Omaha, NE 68198-6395, USA. jsharp@unmc.edu
Abstract:
Oligonucleotides offer the potential to manipulate gene expression in targeted cells which might be exploitable for therapeutic benefit. The effects of combining a phosphorothioate oligonucleotide OL(1) p53, which transiently down-regulates p53 levels, with an anthracycline, Idarubicin, on the growth of wild-type p53 WMN gene-expressing lymphoma cells was evaluated. Fluorescent OL(1) p53, was used to demonstrate oligonucleotide uptake and retention by the WMN cells. Uptake was maximal at 24 hours and compared to baseline (0 hours) increasing apoptotic cells were evident in WMN cells treated with OL(1) (1 microM) alone and in combination with Idarubicin (0.2 nM) for 24 to 48 hours. In cells treated with OL(1) p53 and Idarubicin, truncated p53 message of a predicted 201 base pair length based on RNAase H cleavage of the OL(1) p53-p53 mRNA heteroduplex was detected after 7 hours of incubation. The message for p53 was transiently downregulated as detected by RT-PCR analysis at 24 hours, and protein levels transiently reduced at 36 hours, as shown by a quantitative Western blot. Corresponding to these events, the growth of WMN cells ceased after 48 hours in the concurrent presence of OL(1) p53 and Idarubicin and, the lymphoma cells were dead after 72 hours. No reduction in hematopoietic colony forming cell capacity of similarly treated hematopoietic progenitor cells harvested from cytokine-mobilized blood by apheresis was observed. Therefore, synergistic cytotoxicity of Idarubicin for lymphoma cells treated with an oligonucleotide targeting p53 message was demonstrated at oligonucleotide and Idarubicin concentrations which were minimally toxic to hematopoietic progenitor cells. This approach offers new opportunities for purging of lymphoma cells from hematopoietic harvests and systemic lymphoma therapy.
Insights
This study shows combining a p53 oligonucleotide with Idarubicin effectively kills lymphoma cells. This combination therapy is minimally toxic to healthy hematopoietic progenitor cells, offering a new approach for lymphoma treatment.
Area of Science:
- Molecular Biology
- Cancer Therapeutics
- Gene Expression Regulation
Background:
- Oligonucleotides can target gene expression for therapeutic purposes.
- The p53 tumor suppressor gene plays a critical role in cell cycle regulation and apoptosis.
- Anthracyclines like Idarubicin are potent chemotherapy agents.
Purpose of the Study:
- To evaluate the combined effect of a phosphorothioate oligonucleotide targeting p53 mRNA (OL(1) p53) and Idarubicin on lymphoma cell growth.
- To assess the safety of this combination therapy on hematopoietic progenitor cells.
Main Methods:
- WMn lymphoma cells and hematopoietic progenitor cells were treated with OL(1) p53 and/or Idarubicin.
- Oligonucleotide uptake was confirmed using fluorescently labeled OL(1) p53.
- Gene and protein expression changes were analyzed by RT-PCR and Western blot.
- Cell viability and apoptosis were assessed.
- Hematopoietic progenitor cell capacity was evaluated by colony formation assays.
Main Results:
- OL(1) p53 demonstrated uptake and retention in WMN cells.
- Combined treatment led to transient downregulation of p53 mRNA and protein.
- Synergistic cytotoxicity was observed in WMN lymphoma cells, leading to cell death within 72 hours.
- Hematopoietic progenitor cells showed no reduction in colony-forming capacity.
Conclusions:
- The combination of OL(1) p53 and Idarubicin exhibits synergistic cytotoxicity against lymphoma cells.
- This approach demonstrates minimal toxicity to hematopoietic progenitor cells, suggesting potential for purging lymphoma cells from harvests.
- This strategy presents a promising new avenue for systemic lymphoma therapy.
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