MedicineBiology

A. J. Pietrobon, Luana de Mendonça Oliveira, J. Guilherme, Victor Hugo Calegari de Toledo, Vitória Alves De Lima, Moníze Valéria Ramos da Silva, Suellen Rodrigues Da Silva, L. Dell'Aquila, Á. Razuk-Filho, Pedro B Batista-Júnior, Maria Notomi Sato, Mayana Zatz, M. V. de Castro

2026.6.1MECHANISMS OF AGEING AND DEVELOPMENT

DOI: 10.1016/j.mad.2026.112214

Abstract

Exceptional longevity has increasingly been recognized as a distinct biological state associated with unique immune and inflammatory profiles. However, the innate immune characteristics associated with extreme aging, particularly following viral infections, remain incompletely understood. Toll-like receptors (TLRs) play central roles in pathogen sensing and inflammatory signaling, including during SARS-CoV-2 infection, yet their relationship with exceptional longevity has not been clearly defined. Here, we quantified TLR gene expression in peripheral blood from unvaccinated older adults who recovered from COVID-19 prior to vaccination (38 nonagenarians and 8 centenarians). Among the receptors analyzed, TLR2 was the only gene differentially expressed, showing lower expression in COVID-19-recovered centenarians compared with recovered nonagenarians. Importantly, this difference was not associated with COVID-19 severity, suggesting that TLR2 expression in this cohort reflects an age- and recovery-associated immune characteristic rather than clinical outcome. Exploratory comparison with centenarians without prior COVID-19 (n=10) indicated that reduced TLR2 expression was not simply a constitutive hallmark of extreme aging, but may instead reflect a distinct post-infectious innate immune remodeling. Together, these findings identify a distinct TLR2-associated immune signature in centenarians recovered from COVID-19 and suggest that exceptional longevity may be associated with a distinct post-infectious innate immune remodeling following SARS-CoV-2 infection.

Citation format

PIETROBON, A. J., et al. "Distinct post-infectious TLR2 immune remodeling in COVID-19-Recovered centenarians". MECHANISMS OF AGEING AND DEVELOPMENT, 2026, 232: 112214.