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Updated: May 16, 2026

Generation of Natural Killer Cells from Human Expanded Potential Stem Cells
Published on: January 13, 2023
Human natural killer cell maturation defect supports in vivo CD56(bright) to CD56(dim) lineage development
Carolina Inés Domaica1, Mercedes Beatriz Fuertes, Ignacio Uriarte
1Laboratorio de Fisiopatología de la Inmunidad Innata, Instituto de Biología y Medicina Experimental (IBYME), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET). Buenos Aires, Argentina.
Insights
This study provides in vivo evidence that CD56(bright) natural killer (NK) cells mature into CD56(dim) NK cells. The patient
Area of Science:
- Immunology
- Cell Biology
- Human Natural Killer (NK) Cell Ontogeny
Background:
- Human peripheral blood contains two main natural killer (NK) cell populations: CD56(dim) (majority) and CD56(bright) (minority).
- In vitro studies suggest CD56(bright) NK cells are precursors to CD56(dim) NK cells, but in vivo evidence is limited.
Purpose of the Study:
- To investigate the in vivo differentiation and maturation of human NK cell subsets.
- To analyze NK cell phenotype and function in a patient with a unique NK cell profile.
Main Methods:
- Phenotypic analysis of NK cell populations (CD56(bright) and CD56(dim)) from a patient with a history of melanoma and fungal infection.
- Assessment of NK cell marker expression (perforin, CD57, CD158, activating/inhibitory receptors) and cytokine-induced functions (IFN-γ production, degranulation).
Main Results:
- The patient presented with a reduced frequency of CD56(dim) NK cells and an increased frequency of CD56(bright) NK cells.
- While expressing similar baseline markers and producing IFN-γ, CD56(dim) cells showed impaired acquisition of terminal differentiation markers (CD57, CD158, CD16), and CD56(bright) cells failed to down-regulate CD62L.
- These findings suggest a maturation/activation defect, hindering the generation of mature NK cells and potentially altering migration patterns.
Conclusions:
- The study provides in vivo evidence supporting the differentiation of CD56(bright) NK cells into CD56(dim) NK cells.
- The observed defects in NK cell maturation and terminal differentiation offer insights into human NK cell ontogeny and function.
Abstract:
Two populations of human natural killer (NK) cells can be identified in peripheral blood. The majority are CD3(-)CD56(dim) cells while the minority exhibits a CD3(-)CD56(bright) phenotype. In vitro evidence indicates that CD56(bright) cells are precursors of CD56(dim) cells, but in vivo evidence is lacking. Here, we studied NK cells from a patient that suffered from a melanoma and opportunistic fungal infection during childhood. The patient exhibited a stable phenotype characterized by a reduction in the frequency of peripheral blood CD3(-)CD56(dim) NK cells, accompanied by an overt increase in the frequency and absolute number of CD3(-)CD56(bright) cells. These NK cells exhibited similar expression of perforin, CD57 and CD158, the major activating receptors CD16, NKp46, NKG2D, DNAM-1, and 2B4, as well as the inhibitory receptor CD94/NKG2A, on both CD56(bright) and CD56(dim) NK cells as healthy controls. Also, both NK cell subpopulations produced IFN-γ upon stimulation with cytokines, and CD3(-)CD56(dim) NK cells degranulated in response to cytokines or K562 cells. However, upon stimulation with cytokines, a substantial fraction of CD56(dim) cells failed to up-regulate CD57 and CD158, showed a reduction in the percentage of CD16(+) cells, and CD56(bright) cells did not down-regulate CD62L, suggesting that CD56(dim) cells could not acquire a terminally differentiated phenotype and that CD56(bright) cells exhibit a maturation defect that might result in a potential altered migration pattern. These observations, support the notion that NK cells of this patient display a maturation/activation defect that precludes the generation of mature NK cells at a normal rate accompanied by CD56(dim) NK cells that cannot completely acquire a terminally differentiated phenotype. Thus, our results provide evidence that support the concept that in vivo CD56(bright) NK cells differentiate into CD56(dim) NK cells, and contribute to further understand human NK cell ontogeny.
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