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Impact of COVID-19 Booster Vaccination on Serum Redox Homeostasis
Marija Vukčević1, Dušan Mihajlo Spasić2, Vladimir Kešelj3
1Institute for Biocides and Medical Ecology, Trebevićka 16, 11030 Belgrade, Serbia.
Insights
COVID-19 booster shots caused minor, temporary changes in antioxidant levels. These effects were most notable with Sinopharm-based vaccines and more pronounced in older adults or those with comorbidities.
Area of Science:
- Biochemistry
- Immunology
- Public Health
Background:
- Booster doses of COVID-19 vaccines are crucial for sustained immunity.
- Understanding the physiological impact of different vaccine regimens is important.
Purpose of the Study:
- To investigate changes in serum redox biomarkers after COVID-19 booster vaccination.
- To compare these changes across four different vaccine regimens.
Main Methods:
- Longitudinal study of 410 adults receiving homologous or heterologous COVID-19 booster doses.
- Measurement of serum total proteins, albumin, total thiols, nitrites, FRAP, and DPPH radical-scavenging activity.
- Analysis stratified by prior SARS-CoV-2 infection, age, and comorbidities.
Main Results:
- Booster vaccination led to modest decreases in DPPH activity, albumin, and total proteins.
- FRAP, nitrite, and total thiol levels remained stable post-vaccination.
- Sinopharm-based regimens, especially heterologous Sinopharm/Pfizer, showed the most significant changes.
Conclusions:
- Booster vaccination induces a transient shift in antioxidant buffering capacity.
- Host factors like age and comorbidities can influence short-term redox biomarker changes.
- Further research is needed to assess direct oxidative damage markers.
Abstract:
This study examined alterations in serum redox biomarkers before and one month after administration of the coronavirus disease 2019 (COVID-19) booster (third) doses across four vaccine regimens. A longitudinal cohort of 410 adults was analyzed following homologous Pfizer-BioNTech, Sinopharm [Vero Cell]-Inactivated, Sputnik V, or heterologous Sinopharm/Pfizer vaccination. Serum total proteins, albumin, total thiols, nitrites, ferric-reducing antioxidant power (FRAP), and 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical-scavenging activity were measured, with DPPH interpreted as an ex vivo surrogate of serum radical-scavenging capacity. Additional analyses included stratification by prior severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection, multivariable regression, correlation analysis, effect-size estimation, and sensitivity testing. Booster vaccination was associated with modest but consistent decreases in DPPH activity, albumin, and total proteins, whereas FRAP, nitrite, and total thiol levels remained stable. This pattern supports a transient shift in antioxidant buffering capacity but, by itself, does not exclude oxidative stress, as direct oxidative damage markers were not assessed. The most pronounced changes were observed in Sinopharm-based regimens, particularly in the heterologous Sinopharm/Pfizer group. Prior SARS-CoV-2 infection did not materially alter the qualitative response pattern, whereas older age and comorbidities were associated with greater declines in DPPH activity and albumin. Overall, the findings indicate a modest, transient redox-associated response following booster-induced immune activation and suggest that host-related factors, such as age and comorbidity burden, may accentuate short-term changes in antioxidant buffering capacity.
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