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Objective: Natural killer (NK) cells are the largest innate lymphocyte subset with potent antitumour and antiviral functions. However, clinical utilisation of human NK cells is hampered due to a lack of reliable methods to augment their antitumour potential. We demonstrated technology in which human NK cells were cocultured with osteoclasts in the presence of probiotic bacteria. This approach significantly augmented the antitumour cytotoxicity and polyfunctionality of human NK cells, resulting in the generation of supercharged NK (sNK) cells.
Methods And Analysis: We explored the proteomic, transcriptomic and functional characterisation of sNK cells using cell imaging, flow cytometric analysis, 51-chromium release cytotoxicity assay, ELISA, ELIspot, IsoPLexis single-cell secretome analysis, proteomic analysis, RNA analysis, western blot and enzyme kinetics.
Results: We found that sNK cells were less susceptible to split anergy and tumour-induced exhaustion. Proteomic analyses revealed that sNK cells significantly increased their cell motility and proliferation. Single-cell transcriptomes uncovered sNK cells undertaking a unique differentiation trajectory and turning on STAT1, JUN, BHLHE40, ELF1, MAX and MYC regulons essential for augmenting antitumour effector functions and proliferation, respectively. Both proteomic and single-cell transcriptomes revealed that an increase in Cathepsin C helped to augment the quantity and function of Granzyme B.
Conclusions: These results support that this unique method produces potent NK cells for clinical utilisation and delineate the molecular mechanisms associated with this process.
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http://dx.doi.org/10.1136/bmjonc-2024-000676 | DOI Listing |
PLoS One
September 2025
Division of Reproductive Engineering, Center for Animal Resources and Development, Institute of Resource Development and Analysis, Kumamoto University, Kumamoto, Japan.
Zygotes are used to create genetically modified animals by electroporation using the CRISPR-Cas9 system. Such zygotes in rats are obtained from superovulated female rats after mating. Recently, we reported that in vivo-fertilized zygotes had higher cryotolerance and developmental ability than in vitro-fertilized zygotes in Sprague Dawley (SD) and Fischer 344 rats.
View Article and Find Full Text PDFCell Death Dis
September 2025
Division of Oral Biology and Medicine, The Jane and Jerry Weintraub Center for Reconstructive Biotechnology, University of California School of Dentistry, Los Angeles, USA.
This study highlights the significance of supercharged NK (sNK) cells in inducing the lysis and differentiation of tumors at much higher levels compared to primary activated NK cells. sNK cells-induced higher release of growth factors, cytokines, and chemokines when compared to primary activated NK cells. When we used a similar level of IFN-γ from primary activated NK cells and sNK cells, the IFN-γ secreted from sNK cells exhibited greater potential to induce differentiation in both oral and pancreatic tumors.
View Article and Find Full Text PDFCancers (Basel)
July 2025
Division of Oral Biology and Oral Medicine, The Jane and Jerry Weintraub Center for Reconstructive Biotechnology, UCLA School of Dentistry and Medicine, 10833 Le Conte Ave, Los Angeles, CA 90095, USA.
Background: We have previously shown the remarkable impact of a single infusion of supercharged NK cells (sNK) in preventing and eliminating oral, pancreatic, and uterine cancers implanted in humanized BLT (hu-BLT) mice.
Objective: In this report, we extended the studies to melanoma tumors to observe whether there were differences in response to sNK cells.
Methods: We investigated the safety and tissue biodistribution profile of sNK cells in hu-BLT mice.
Crit Rev Immunol
July 2025
Division of Oral Biology and Medicine, The Jane and Jerry Weintraub Center for Reconstructive Biotechnology, University of California School of Dentistry, 10833 Le Conte Ave, 90095 Los Angeles, CA, USA; The Jonsson Comprehensive Cancer Center, UCLA School of Dentistry and Medicine, Los Angeles, CA,
In this paper, we compared the ability to expand/supercharge NK cells (sNK) by either processed osteoclasts (pOCs) or live osteoclasts (OCs). pOCs induced similar levels of cell expansion in NK cells compared to live OCs. pOC-generated sNK cells exhibited lower lysis of oral squamous carcinoma stem-like cells (OSCSCs) tumors in comparison to live OC-generated sNK cells.
View Article and Find Full Text PDFCrit Rev Immunol
July 2025
Division of Oral Biology and Medicine, The Jane and Jerry Weintraub Center for Reconstructive Biotechnology, University of California School of Dentistry, Los Angeles, CA 90095, USA.
Diffuse intrinsic pontine glioma (DIPG) is the common cause of death in pediatric patients. In this report, we discussed the role of supercharged NK (sNK) cells alone or in combination with other therapies to target such aggressive pediatric brain tumors, suggesting the potential use of sNK cells alone as a therapeutic strategy in treating and preventing the recurrence of aggressive pediatric brain tumors.
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