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October 9, 2019Cells187 citationsOpen Access

Exosome Treatment Enhances Anti-Inflammatory M2 Macrophages and Reduces Inflammation-Induced Pyroptosis in Doxorubicin-Induced Cardiomyopathy

DSDinender K. SinglaTJTaylor A. JohnsonZDZahra Tavakoli Dargani

Structured PICO

Does treatment with embryonic stem cell-derived exosomes or cells reduce inflammation-induced pyroptosis and cardiac remodeling in a mouse model of doxorubicin-induced cardiomyopathy?

P
Population
C57BL/6J mice ages 10 ± 2 weeks (n = 6-8/group)
I
Intervention
Embryonic stem cell-derived exosomes (ES-Exos) or embryonic stem cells (ESCs)
C
Comparator
Doxorubicin alone (Dox) and untreated Control
O
Outcome
Expression of inflammasome markers, pyroptotic markers, cell signaling proteins, macrophage polarization, adverse cardiac remodeling, and cardiac dysfunctionsurrogate

Embryonic stem cell-derived exosomes and cells attenuate doxorubicin-induced cardiotoxicity by reducing pyroptosis and inflammation in a preclinical model.

Abstract

Doxorubicin (Dox) is an effective antineoplastic agent used to treat cancers, but its use is limited as Dox induces adverse cardiotoxic effects. Dox-induced cardiotoxicity (DIC) can lead to heart failure and death. There is no study that investigates whether embryonic stem cell-derived exosomes (ES-Exos) in DIC can attenuate inflammation-induced pyroptosis, pro-inflammatory M1 macrophages, inflammatory cell signaling, and adverse cardiac remodeling. For this purpose, we transplanted ES-Exos and compared with ES-cells (ESCs) to examine pyroptosis, inflammation, cell signaling, adverse cardiac remodeling, and their influence on DIC induced cardiac dysfunction. Therefore, we used C57BL/6J mice ages 10 ± 2 weeks and divided them into four groups (n = 6-8/group): Control, Dox, Dox + ESCs, and Dox + ES-Exos. Our data shows that the Dox treatment significantly increased expression of inflammasome markers (TLR4 and NLRP3), pyroptotic markers (caspase-1, IL1-β, and IL-18), cell signaling proteins (MyD88, p-P38, and p-JNK), pro-inflammatory M1 macrophages, and TNF-α cytokine. This increased pyroptosis, inflammation, and cell signaling proteins were inhibited with ES-Exos or ESCs. Moreover, ES-Exos or ESCs increased M2 macrophages and anti-inflammatory cytokine, IL-10. Additionally, ES-Exos or ESCs treatment inhibited significantly cytoplasmic vacuolization, myofibril loss, hypertrophy, and improved heart function. In conclusion, for the first time we demonstrated that Dox-induced pyroptosis and cardiac remodeling are ameliorated by ES-Exos or ESCs.

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Cite This Study

Singla et al. (2019) studied this question.

synapsesocial.com/papers/69d56d2e75589c71d767cfd4https://doi.org/10.3390/cells8101224
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