Homoharringtonine exhibits senotherapeutic activity that mitigates diet- and age-associated obesity and insulin resistance and extends lifespan in mice

E Eok-Cheon Kim H Han-Byul Jung Y Yu-kyoung Park Y Youlim Son H Hye-Na Cha Y Yash Patel J Ju Hee Lee M Minah Choi S Soyoung Park I Il-Kug Kim L Lauren Pickel S Seungju Lee Y Yuna Ha M Min-Gyeong Shin Q Qiwei Zhang (School of Chemistry and Molecular Engineering) J Jielin Yang (Department of Chemistry and Biochemistry) B Bruno Rodrigues de Oliveira N Nathaniel Vo A Annie Yew J Jacques Togo K Kafi N. Ealey S Su-Ryun Jung S Sunjin Moon H Hye-Jin Yoon J Jee-Young Lee H Hoon-Ki Sung J Jae-Ryong Kim S So-Young Park

Abstract

Abstract The accumulation of senescent cells in white adipose tissue (WAT) is closely associated with the functional decline of WAT and plays a causal role in the pathogenesis of metabolic diseases. Therefore, the elimination of senescent cells in WAT holds promise for the treatment and prevention of age-related metabolic diseases. Using a drug-repositioning strategy for 2150 clinically applied compounds, we discover that homoharringtonine (HHT), an FDA-approved anti-leukemic drug, manifests senotherapeutic activity in vitro in multiple cell types including human preadipocytes, while inflicting minimal cytotoxicity to non-senescent cells. HHT treatment prevents diet- or age-induced metabolic abnormalities in male mice targeting senescent adipocytes and preadipocytes to improve WAT function and reduce WAT inflammation. Moreover, HHT treatment attenuates age-associated phenotypes of human adipose tissue. Mechanistically, the senotherapeutic effects of HHT are mediated through the direct interaction of HHT with heat shock protein family A member 5 (HSPA5). Importantly, we found that HHT treatment delays aging and extends the lifespan in progeroid and aged mice. Our study demonstrates the novel senotherapeutic potential of HHT to mitigate age- and obesity-related metabolic dysfunction and extend longevity in mice.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 31, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (28)

E

Eok-Cheon Kim

H

Han-Byul Jung

Y

Yu-kyoung Park

Y

Youlim Son

H

Hye-Na Cha

Y

Yash Patel

J

Ju Hee Lee

M

Minah Choi

S

Soyoung Park

I

Il-Kug Kim

L

Lauren Pickel

S

Seungju Lee

Y

Yuna Ha

M

Min-Gyeong Shin

Q

Qiwei Zhang

School of Chemistry and Molecular Engineering

J

Jielin Yang

Department of Chemistry and Biochemistry

B

Bruno Rodrigues de Oliveira

N

Nathaniel Vo

A

Annie Yew

J

Jacques Togo

K

Kafi N. Ealey

S

Su-Ryun Jung

S

Sunjin Moon

H

Hye-Jin Yoon

J

Jee-Young Lee

H

Hoon-Ki Sung

J

Jae-Ryong Kim

S

So-Young Park