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May 10, 2024Nature Communications46 citationsOpen Access

Pretreatment with IL-15 and IL-18 rescues natural killer cells from granzyme B-mediated apoptosis after cryopreservation

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ABAbdulla BerjisDMDeeksha MuthumaniOAOscar A. Aguilar

Key Points

  • Pretreatment with interleukin-15 and interleukin-18 increases post-thaw natural killer cell recovery to 90–100%, reversing the ~75% 24-hour cell loss seen in standard cryopreservation.
  • CRISPR-Cas9 gene editing and confocal microscopy show freezing triggers granzyme B leakage, whereas cytokine priming reduces intracellular granzyme B and induces antiapoptotic genes.
  • Primed cells match non-cryopreserved controls in suppressing disseminated Raji cell lymphoma; xenograft model, requiring further preclinical testing before human translation.

Abstract

Abstract Human natural killer (NK) cell-based therapies are under assessment for treating various cancers, but cryopreservation reduces both the recovery and function of NK cells, thereby limiting their therapeutic feasibility. Using cryopreservation protocols optimized for T cells, here we find that ~75% of NK cells die within 24 h post-thaw, with the remaining cells displaying reduced cytotoxicity. Using CRISPR-Cas9 gene editing and confocal microscopy, we find that cryopreserved NK cells largely die via apoptosis initiated by leakage of granzyme B from cytotoxic vesicles. Pretreatment of NK cells with a combination of Interleukins-15 (IL-15) and IL-18 prior to cryopreservation improves NK cell recovery to ~90-100% and enables equal tumour control in a xenograft model of disseminated Raji cell lymphoma compared to non-cryopreserved NK cells. The mechanism of IL-15 and IL-18-induced protection incorporates two mechanisms: a transient reduction in intracellular granzyme B levels via degranulation, and the induction of antiapoptotic genes.

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Cite This Study

Berjis et al. (2024) studied this question.

synapsesocial.com/papers/68e6a9d7b6db64358762cc69https://doi.org/10.1038/s41467-024-47574-0
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