Targeting senescent hepatocytes using the thrombomodulin-PAR1 inhibitor vorapaxar ameliorates NAFLD progression.

dc.contributor.author

Maeso-Díaz, Raquel

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Du, Kuo

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Pan, Christopher

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Guy, Cynthia D

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Oh, Seh Hoon

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Chen, Tianyi

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Wang, Liuyang

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Ko, Dennis C

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Tang, Linda

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Dutta, Rajesh K

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Jun, Ji Hye

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Suzuki, Ayako

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Abdelmalek, Manal F

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Wang, Xiao-Fan

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Diehl, Anna Mae

dc.date.accessioned

2025-12-01T15:04:17Z

dc.date.available

2025-12-01T15:04:17Z

dc.date.issued

2023-10

dc.description.abstract

Background and aims

Senescent hepatocytes accumulate in parallel with fibrosis progression during NASH. The mechanisms that enable progressive expansion of nonreplicating cell populations and the significance of that process in determining NASH outcomes are unclear. Senescing cells upregulate thrombomodulin-protease-activated receptor-1 (THBD-PAR1) signaling to remain viable. Vorapaxar blocks the activity of that pathway. We used vorapaxar to determine if and how THBD-PAR1 signaling promotes fibrosis progression in NASH.

Approach and results

We evaluated the THBD-PAR1 pathway in liver biopsies from patients with NAFLD. Chow-fed mice were treated with viral vectors to overexpress p16 in hepatocytes and induce replicative senescence. Effects on the THBD-PAR1 axis and regenerative capacity were assessed; the transcriptome of p16-overexpressing hepatocytes was characterized, and we examined how conditioned medium from senescent but viable (dubbed "undead") hepatocytes reprograms HSCs. Mouse models of NASH caused by genetic obesity or Western diet/CCl 4 were treated with vorapaxar to determine effects on hepatocyte senescence and liver damage. Inducing senescence upregulates the THBD-PAR1 signaling axis in hepatocytes and induces their expression of fibrogenic factors, including hedgehog ligands. Hepatocyte THBD-PAR1 signaling increases in NAFLD and supports sustained hepatocyte senescence that limits effective liver regeneration and promotes maladaptive repair. Inhibiting PAR1 signaling with vorapaxar interrupts this process, reduces the burden of 'undead' senescent cells, and safely improves NASH and fibrosis despite ongoing lipotoxic stress.

Conclusion

The THBD-PAR1 signaling axis is a novel therapeutic target for NASH because blocking this pathway prevents accumulation of senescing but viable hepatocytes that generate factors that promote maladaptive liver repair.
dc.identifier

01515467-202310000-00024

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0270-9139

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1527-3350

dc.identifier.uri

https://hdl.handle.net/10161/33649

dc.language

eng

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Ovid Technologies (Wolters Kluwer Health)

dc.relation.ispartof

Hepatology (Baltimore, Md.)

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10.1097/hep.0000000000000401

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

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Liver

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Hepatocytes

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Animals

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Mice, Inbred C57BL

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Humans

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Mice

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Disease Models, Animal

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Fibrosis

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Receptor, PAR-1

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Thrombomodulin

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Non-alcoholic Fatty Liver Disease

dc.title

Targeting senescent hepatocytes using the thrombomodulin-PAR1 inhibitor vorapaxar ameliorates NAFLD progression.

dc.type

Journal article

duke.contributor.orcid

Du, Kuo|0000-0002-1446-4653

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Wang, Liuyang|0000-0001-9556-2361

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Ko, Dennis C|0000-0002-0113-5981

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Suzuki, Ayako|0000-0003-1824-1067

pubs.begin-page

1209

pubs.end-page

1222

pubs.issue

4

pubs.organisational-group

Duke

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School of Medicine

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Basic Science Departments

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Clinical Science Departments

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Institutes and Centers

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Cell Biology

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Molecular Genetics and Microbiology

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Pharmacology & Cancer Biology

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Medicine

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Pathology

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Medicine, Gastroenterology

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Duke Cancer Institute

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University Initiatives & Academic Support Units

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Initiatives

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Duke Science & Society

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Duke Regeneration Center

pubs.publication-status

Published

pubs.volume

78

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