1.Interleukin‑10 augments human endogenous retroviral E1B variant of cd5in aged T cells
Bharat SINGH ; Smita KUMARI ; Amit Kumar KUREEL ; Arunim SHAH ; Shobhita KATIYAR 2 ; Chandra Prakash CHATURVEDI ; Kulwant SINGH ; Ambak KUMAR RAI
Blood Research 2025;60():43-
Purpose:
Aging leads to immune dysfunction, including altered T-cell phenotypes such as the CD5 low state. This study investigated how the exon switch regulates CD5 expression in aging in an interleukin-10 (IL-10)-dominated environment and the involvement of CCAAT/enhancer-binding protein beta (CEBP-β) in this process.
Methods:
The expression of messenger RNA (mRNA) was analyzed for E1A and E1B in T cells from young and older adults. The effect of IL-10 treatment on the exon switch was assessed by measuring the E1A and E1B mRNA expression in young T cells. MatInspector analysis identified CEBP-β binding sites upstream of E1A and E1B start sites.The effect of IL-10 on CEBP-β isoforms expression was assessed using western blot, and that on CEBP-β binding onto the E1A and E1B upstream was assessed using chromatin immunoprecipitation assays. The short hairpin RNA (shRNA) silencing of CEBP-β was performed to confirm its role in E1A/E1B expression.
Results:
Older individuals showed increased E1B and decreased E1A mRNA expression. IL-10 treatment of young T cells persuaded a similar shift. IL-10 changed CEBP-β binding, reducing its association with the E1B upstream region while increasing its binding to E1A. IL-10 also upregulated the liver-enriched inhibitory protein of CEBP-β. shRNA silencing of CEBP-β reduced E1B expression.
Conclusion
IL-10-driven exon switching alters CD5 expression in aged T cells, increasing E1B and decreasing E1A through CEBP-β regulation. These findings reveal a novel mechanism underlying fundamental immune aging and suggest potential targets for immune modulation. These insights may have clinical implications in chronic inflammatory diseases, autoimmune disorders, and cancer therapies.
2.Comparison of priming versus slow injection for reducing etomidate-induced myoclonus: a randomized controlled study.
Parul MULLICK ; Vandana TALWAR ; Shipra AGGARWAL ; Smita PRAKASH ; Mridula PAWAR
Korean Journal of Anesthesiology 2018;71(4):305-310
BACKGROUND: Etomidate injection is often associated with myoclonus. Etomidate injection technique influences the incidence of myoclonus. This study was designed to clarify which of the two injection techniques—slow injection or priming with etomidate—is more effective in reducing myoclonus. METHODS: This prospective randomized controlled study was conducted on 189 surgical patients allocated to three study groups. Control group (Group C, n = 63) received 0.3 mg/kg etomidate (induction dose) over 20 s. Priming group (Group P, n = 63) received pretreatment with 0.03 mg/kg etomidate, followed after 1 min by an etomidate induction dose over 20 s. Slow injection group (Group S, n = 63) received etomidate (2 mg/ml) induction dose over 2 min. The patients were observed for occurrence and severity of myoclonus for 3 min from the start of injection of the induction dose. RESULTS: The incidence of myoclonus in Group P (38/63 [60.3%], 95% CI: 48.0–71.5) was significantly lower than in Group C (53/63 [84.1%], 95% CI: 72.9–91.3, P = 0.003) and Group S (49/63 [77.8%], 95% CI: 66.0–86.4, P = 0.034). Myoclonus of moderate or severe grade occurred in significantly more patients in Group C (68.3%) than in Group P (36.5%, P < 0.001) and Group S (50.8%, P = 0.046), but the difference between Groups P and S was not significant (P = 0.106). CONCLUSIONS: Priming is more effective than slow injection in reducing the incidence of myoclonus, but their effects on the severity of myoclonus are comparable.
Etomidate
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Humans
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Incidence
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Myoclonus*
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Prospective Studies

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