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January 10, 2026Journal of Human Immunity0 citationsOpen Access

Tracking NK and Memory T Cell Dynamics in Children Affected by Multisystem Inflammatory Syndrome (MIS-C)

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NGNatalia N GonzálezCACamila AstudilloYEYazmín Espinosa

Key Result

Acute MIS-C induces a unique NK cell population with reduced cytotoxicity and increased activation, with persistent low levels of CD158 even after 4 years.

Key Points

  • This research aims to understand the dynamics of NK and memory T cells in children affected by MIS-C after COVID-19 exposure.
  • Collected peripheral blood mononuclear cells from various pediatric groups.
  • Analyzed TCR Vβ21.3 expression using a T cell panel.
  • Assessed NK cell phenotype after co-culture with K562 cells.
  • Acute MIS-C NK cells showed decreased cytotoxic markers CD57 and CD158.
  • Unique NK cell population identified by absent CD107a and elevated markers CXCR6 and Ki67.
  • Persistent TCR Vβ21.3+ T cells detected up to a year, absent after 4 years.

Structured PICO

P
Population
35 children including 4 healthy controls, 4 febrile (non-COVID) controls, 4 with acute COVID-19, 9 with acute MIS-C, 8 MIS-C convalescents (6–12 months), and 6 long-term MIS-C convalescents (4 years)
C
Comparator
Healthy pediatric controls, febrile (non-COVID) controls, and children with acute COVID-19
O
Outcome
NK cell phenotype (CD56, CD3, CD16, CXCR6, Ki67, NKG2D, NKG2C, CD158, CD57, CD107a) and TCR Vβ21.3 expressionsurrogate

MIS-C induces a transient hyperactivated NK cell phenotype and TCR Vβ21.3+ T cell expansion that mostly resolves over time, though some NK cell alterations like low CD158 persist up to 4 years.

Limitations

  • small sample size

Abstract

Background Multisystem inflammatory syndrome in children (MIS-C) is a severe condition that arises 4–6 weeks after SARS-CoV-2 exposure, marked by persistent fever, mucocutaneous symptoms, cardiac involvement, and shock. Natural killer (NK) cells are thought to contribute during the acute phase due to their antiviral and immunoregulatory roles, but their phenotype during recovery is not well defined. An expansion of TCR Vβ21.3+ T cells has been observed during acute MIS-C, though their long-term presence and significance remain unclear. Methods Peripheral blood mononuclear cells (PBMCs) were collected from 4 healthy pediatric controls, 4 febrile (non-COVID) controls, 4 children with acute COVID-19, 9 with acute MIS-C, 8 MIS-C convalescents (6–12 months), and 6 long-term MIS-C convalescents (4 years). TCR Vβ21.3 expression was analyzed using a T cell panel (CD3, CD4, CD8, CD27, CD45RA, TCR Vβ21.3). NK cell phenotype was assessed after co-culture with K562 cells using markers including CD56, CD3, CD16, CXCR6, Ki67, NKG2D, NKG2C, and CD158. Results NK cells from acute MIS-C patients showed decreased CD57, CD158, and CD107a, along with increased NKG2D expression. Clustering analysis revealed a unique NK cell population exclusive to acute MIS-C, defined by absent CD107a and elevated CXCR6 and Ki67. Most alterations resolved within 6–12 months, except CD158, which remained low even after 4 years. TCR Vβ21.3+ T cells persisted for up to a year but were undetectable at 4 years. Conclusions MIS-C triggers a transient NK phenotype marked by reduced cytotoxicity and increased activation, suggesting a hyperactivated or dysregulated immune profile. Persistent downregulation of the inhibitory receptor CD158 may indicate prolonged NK activation. TCR Vβ21.3+ T cells appear to be short lived. Further long-term studies with larger cohorts are needed to validate these findings.

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Cite This Study

González et al. (2025) studied this question. Acute MIS-C induces a unique NK cell population with reduced cytotoxicity and increased activation, with persistent low levels of CD158 even after 4 years.

synapsesocial.com/papers/6963223291e05aa366cb8c64https://doi.org/10.70962/lasid2025abstract.93
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