AI Article Synopsis

  • NK (Natural Killer) cells are emerging as promising therapeutic options for treating blood cancers, but current manufacturing processes are often outdated and inefficient.
  • This study utilizes advanced Cytiva equipment and media to improve the expansion and cryopreservation methods for the NK92 cell line, aiming for better cell viability after thawing.
  • Results show that optimizing cooling rates and cell densities during cryopreservation significantly enhances post-thaw recovery, facilitating a more automated and connected workflow that can support future clinical and commercial applications.

Article Abstract

Natural killer (NK) cells have recently shown renewed promise as therapeutic cells for use in treating hematologic cancer indications. Despite this promise, NK cell manufacturing workflows remain largely manual, open, and disconnected, and depend on feeders, as well as outdated unit operations or processes, often utilizing research-grade reagents. Successful scale-up of NK cells critically depends on the availability and performance of nutrient-rich expansion media and cryopreservation conditions that are conducive to high cell viability and recovery post-thaw. In this paper we used Cytiva hardware and media to expand the NK92 cell line in a model process that is suitable for GMP and clinical manufacturing of NK cells. We tested a range of cryopreservation factors including cooling rate, a range of DMSO-containing and DMSO-free cryoprotectants, ice nucleation, and cell density. Higher post-thaw recovery was seen in cryobags over cryovials cooled in identical conditions, and cooling rates of 1°C/min or 2°C/min optimal for cryopreservation in DMSO-containing and DMSO-free cryoprotectants respectively. Higher cell densities of 5x107 cells/ml gave higher post-thaw viability than those cryopreserved at either 1x106 or 5x106 cells/ml. This enabled us to automate, close and connect unit operations within the workflow while demonstrating superior expansion and cryopreservation of NK92 cells. Cellular outputs and performance were conducive to clinical dosing regimens, serving as a proof-of-concept for future clinical and commercial manufacturing.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10889882PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0294857PLOS

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