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Updated: Jun 28, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Saporin induces multiple death pathways in lymphoma cells with different intensity and timing as compared to ricin
Letizia Polito1, Massimo Bortolotti, Valentina Farini
1Dipartimento di Patologia Sperimentale, Alma Mater Studiorum - Università di Bologna, via San Giacomo 14, I-40126 Bologna, Italy.
Abstract:
Ribosome-inactivating protein (RIP)-containing immunotoxins are currently used in clinical trials as anti-tumour drugs, in particular against haematological malignancies. In cell killing-based therapies it is important to identify the death pathways induced by the cytotoxic agent. The purpose of this work was to compare the pathways of cell death induced by the RIP saporin with those carried out by ricin in the L540 human Hodgkin's lymphoma-derived cell line. Protein synthesis inhibition, activation of caspases, DNA fragmentation and loss of viability have been evaluated. The two toxins triggered a similar DNA fragmentation and cell death, at concentrations giving the same level of cell protein synthesis inhibition, although the inhibitory effect of ricin on protein synthesis was more rapid than that of saporin. Moreover, the intrinsic apoptotic pathway was equally activated by both toxins, whilst ricin activated the extrinsic caspase pathway and the effector caspase-3/7 more efficiently than saporin. The complete inhibition of caspases by Z-VAD was only partially effective in cell rescue which appeared to be time limited. Necrostatin-1, a new inhibitor of non-apoptotic death, rescued cells from death by RIPs, although the effect was also partial and temporary. Despite the high RIP doses used no necrosis was detectable by Annexin V/Propidium Iodide (PI) test. These results suggest that more than one death mechanism was elicited by both ricin and saporin, however, with different timing and strength. The perspective of modulating cell death of neoplastic lymphocytes through different pathways could add new opportunities to reduce side effects and develop combined synergic immuno-chemotherapy.
Insights
Ribosome-inactivating proteins (RIPs) like saporin and ricin induce cell death in lymphoma. Both toxins activate similar DNA fragmentation and apoptosis, but ricin more rapidly inhibits protein synthesis and activates caspases.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Ribosome-inactivating proteins (RIPs) are utilized in immunotoxins for anti-tumor therapies, particularly for hematological malignancies.
- Identifying the precise cell death pathways induced by cytotoxic agents is crucial for optimizing cell-killing therapies.
Purpose of the Study:
- To compare the cell death pathways induced by saporin and ricin, two RIPs, in the L540 human Hodgkin's lymphoma cell line.
- To evaluate the effects of these toxins on protein synthesis inhibition, caspase activation, DNA fragmentation, and cell viability.
Main Methods:
- Assessed protein synthesis inhibition, caspase activation, DNA fragmentation, and loss of viability in L540 cells treated with saporin and ricin.
- Utilized Z-VAD (caspase inhibitor) and Necrostatin-1 (non-apoptotic death inhibitor) to investigate cell death mechanisms.
- Employed Annexin V/Propidium Iodide (PI) staining to detect necrosis.
Main Results:
- Both saporin and ricin induced similar DNA fragmentation and cell death at equivalent protein synthesis inhibition levels, though ricin acted faster.
- The intrinsic apoptotic pathway was activated by both toxins, while ricin more efficiently activated the extrinsic caspase pathway and caspase-3/7.
- Inhibitors partially rescued cells, indicating multiple, time-dependent death mechanisms were involved, with no detectable necrosis at high RIP doses.
Conclusions:
- Ricin and saporin elicit cell death through multiple mechanisms with distinct kinetics and strengths.
- Modulating these cell death pathways offers potential for reducing side effects and developing synergistic immunochemotherapies for neoplastic lymphocytes.
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