Intracellular pathogens are ideal candidates for modelling the pathophysiology of chronic infection, as they hide within host cells and avoid immune clearance by reshaping cellular fate. This study unveils how the intracellular pathogen Mycobacterium abscessus (Mab) reprograms alveolar macrophages towards a senescent state -a multifaced phenotype marked by proliferative arrest, distinctive morphological shifts, activation of DNA damage signalling cascade, and secretion of senescence-associated secretory phenotype (SASP) factors. Mab-induced DNA damage emerged as the primary driver of senescence, while SASP secretion acts as a molecular broadcaster, propagating secondary senescence in neighbouring, uninfected cells through paracrine signalling. This cascading wave of amplified senescence undermines the tissue microenvironment, turning it into a chronic inflammatory niche that facilitates Mab persistence and immune evasion. By leveraging evidence of chronic infection-induced senescence, we prototyped a therapeutic approach where the senolytic drug Navitoclax selectively eradicated senescent cells and significantly reduced bacterial burden, similarly to antibiotics.

Cell senescence emerges as a hallmark and therapeutic target of chronic intracellular infection / E. Scarpa, D.O.. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 17:1(2026 Sep), pp. 9896.1-9896.18. [10.1038/s41467-026-76651-9]

Cell senescence emerges as a hallmark and therapeutic target of chronic intracellular infection

E. Scarpa
Primo
;
D. Oliveri;D. Rondelli;F. Russo;R. Nodari;G. Moschetti;A. Griego;M. Zaccaria;M. Albanese;L. Manganaro;R. De Francesco;S. Abrignani;L. Rizzello
Ultimo
2026

Abstract

Intracellular pathogens are ideal candidates for modelling the pathophysiology of chronic infection, as they hide within host cells and avoid immune clearance by reshaping cellular fate. This study unveils how the intracellular pathogen Mycobacterium abscessus (Mab) reprograms alveolar macrophages towards a senescent state -a multifaced phenotype marked by proliferative arrest, distinctive morphological shifts, activation of DNA damage signalling cascade, and secretion of senescence-associated secretory phenotype (SASP) factors. Mab-induced DNA damage emerged as the primary driver of senescence, while SASP secretion acts as a molecular broadcaster, propagating secondary senescence in neighbouring, uninfected cells through paracrine signalling. This cascading wave of amplified senescence undermines the tissue microenvironment, turning it into a chronic inflammatory niche that facilitates Mab persistence and immune evasion. By leveraging evidence of chronic infection-induced senescence, we prototyped a therapeutic approach where the senolytic drug Navitoclax selectively eradicated senescent cells and significantly reduced bacterial burden, similarly to antibiotics.
Settore BIOS-11/A - Farmacologia
Settore BIOS-08/A - Biologia molecolare
Settore BIOS-15/A - Microbiologia
Settore BIOS-10/A - Biologia cellulare e applicata
   Meccanobiologia delle infezioni: un nuovo strumento per eliminare patogeni intracellulari
   FONDAZIONE CARIPLO
   2019-4278

   Host extracellular matrix: a new target to tackle mycobacterial infections
   FONDAZIONE CARIPLO
   ID progetto 2022-0438

   DNA damage as trigger of bacteria-induced senescence
   UNIVERSITA' DEGLI STUDI DI MILANO
set-2026
18-ago-2026
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1272801
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