» Articles » PMID: 32238926

Metabolites Released from Apoptotic Cells Act As Tissue Messengers

Overview
Journal Nature
Specialty Science
Date 2020 Apr 3
PMID 32238926
Citations 209
Authors
Affiliations
Soon will be listed here.
Abstract

Caspase-dependent apoptosis accounts for approximately 90% of homeostatic cell turnover in the body, and regulates inflammation, cell proliferation, and tissue regeneration. How apoptotic cells mediate such diverse effects is not fully understood. Here we profiled the apoptotic metabolite secretome and determined its effects on the tissue neighbourhood. We show that apoptotic lymphocytes and macrophages release specific metabolites, while retaining their membrane integrity. A subset of these metabolites is also shared across different primary cells and cell lines after the induction of apoptosis by different stimuli. Mechanistically, the apoptotic metabolite secretome is not simply due to passive emptying of cellular contents and instead is a regulated process. Caspase-mediated opening of pannexin 1 channels at the plasma membrane facilitated the release of a select subset of metabolites. In addition, certain metabolic pathways continued to remain active during apoptosis, with the release of only select metabolites from a given pathway. Functionally, the apoptotic metabolite secretome induced specific gene programs in healthy neighbouring cells, including suppression of inflammation, cell proliferation, and wound healing. Furthermore, a cocktail of apoptotic metabolites reduced disease severity in mouse models of inflammatory arthritis and lung-graft rejection. These data advance the concept that apoptotic cells are not inert cells waiting for removal, but instead release metabolites as 'good-bye' signals to actively modulate outcomes in tissues.

Citing Articles

Melatonin attenuates inflammatory bone loss by alleviating mitophagy and lactate production.

Lin Z, Gu Y, Liu Y, Chen Z, Fang S, Wang Z Apoptosis. 2025; .

PMID: 40064756 DOI: 10.1007/s10495-025-02096-y.


Fate and long-lasting therapeutic effects of mesenchymal stromal/stem-like cells: mechanistic insights.

Hoseinzadeh A, Esmaeili S, Sahebi R, Melak A, Mahmoudi M, Hasannia M Stem Cell Res Ther. 2025; 16(1):33.

PMID: 39901306 PMC: 11792531. DOI: 10.1186/s13287-025-04158-z.


Moxibustion Alleviates Inflammation via SIRT5-mediated Post-translational Modification and Macrophage Polarization.

Zuo C, Zhang C, Zhang H, Gou C, Lei H, Tian F Inflammation. 2025; .

PMID: 39899130 DOI: 10.1007/s10753-025-02239-y.


Biophysics at the edge of life and death: radical control of apoptotic mechanisms.

Hack S, Beane W, Tseng K Front Cell Death. 2025; 2.

PMID: 39897412 PMC: 11784940. DOI: 10.3389/fceld.2023.1147605.


T Cell-Derived Apoptotic Extracellular Vesicles Ameliorate Bone Loss via CD39 and CD73-Mediated ATP Hydrolysis.

Yang X, Zhou Y, Zhou F, Bao L, Wang Z, Li Z Int J Nanomedicine. 2025; 20:1083-1100.

PMID: 39895982 PMC: 11784384. DOI: 10.2147/IJN.S491222.