Cytochalasin B Alleviates LPS-Induced Mastitis and Modulates the Expression of PI3K/N-WASP/ARP2/3-Related Molecules

Cytochalasin B (CB) inhibits actin polymerization and modulates cytoskeletal dynamics, but its role in mastitis remains unclear. This study investigated the protective effects of CB against mastitis and its association with PI3K/N-WASP/ARP2/3-related molecular alterations. Transcriptomic analysis of mammary tissues from healthy cows and cows with subclinical or clinical mastitis revealed extensive transcriptional remodeling during mastitis progression. Validation showed enhanced inflammatory responses accompanied by increased expression of PI3K, N-WASP, CLTC, ARP2, and ARP3 in mastitic tissues. In LPS-stimulated bovine mammary epithelial cells (MAC-T), CB reduced pro-inflammatory cytokine expression, increased IL-10 expression, and attenuated the abnormal elevation of PI3K/N-WASP/ARP2/3-related molecules. Consistently, in an LPS-induced mouse mastitis model, CB alleviated mammary tissue injury and inflammatory cell infiltration, improved inflammatory cytokine profiles, and reduced the expression of PI3K, N-WASP, CLTC, ARP2, and ARP3. Collectively, CB attenuates LPS-induced mammary inflammation and tissue injury, and these effects are associated with alterations in PI3K/N-WASP/ARP2/3-related cytoskeletal molecules. These findings provide new evidence linking cytoskeleton-related molecular alterations to mastitis inflammation and the anti-inflammatory effects of CB.

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Journal
Biomolecules
Published
2026-10-09
DOI
https://doi.org/10.3390/biom16101467
Primary Topic
Milk Quality and Mastitis in Dairy Cows
Type
article
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article

Cytochalasin B Alleviates LPS-Induced Mastitis and Modulates the Expression of PI3K/N-WASP/ARP2/3-Related Molecules

Kejiang Liu, Xingxu Zhao, Quanwei Zhang, Li Yaru et al.
Biomolecules
Milk Quality and Mastitis in Dairy Cows
article

Cytochalasin B Alleviates LPS-Induced Mastitis and Modulates the Expression of PI3K/N-WASP/ARP2/3-Related Molecules

Kejiang Liu, Xingxu Zhao, Quanwei Zhang, Li Yaru, Wenkai Bai, Xingcai Qi, An Wang, Yong Zhang, Weitao Dong
article en

Abstract

Cytochalasin B (CB) inhibits actin polymerization and modulates cytoskeletal dynamics, but its role in mastitis remains unclear. This study investigated the protective effects of CB against mastitis and its association with PI3K/N-WASP/ARP2/3-related molecular alterations. Transcriptomic analysis of mammary tissues from healthy cows and cows with subclinical or clinical mastitis revealed extensive transcriptional remodeling during mastitis progression. Validation showed enhanced inflammatory responses accompanied by increased expression of PI3K, N-WASP, CLTC, ARP2, and ARP3 in mastitic tissues. In LPS-stimulated bovine mammary epithelial cells (MAC-T), CB reduced pro-inflammatory cytokine expression, increased IL-10 expression, and attenuated the abnormal elevation of PI3K/N-WASP/ARP2/3-related molecules. Consistently, in an LPS-induced mouse mastitis model, CB alleviated mammary tissue injury and inflammatory cell infiltration, improved inflammatory cytokine profiles, and reduced the expression of PI3K, N-WASP, CLTC, ARP2, and ARP3. Collectively, CB attenuates LPS-induced mammary inflammation and tissue injury, and these effects are associated with alterations in PI3K/N-WASP/ARP2/3-related cytoskeletal molecules. These findings provide new evidence linking cytoskeleton-related molecular alterations to mastitis inflammation and the anti-inflammatory effects of CB.

BiomoleculesVol. 16(10)
Gansu Agricultural University (CN), Institute of Modern Physics (CN), Lanzhou City University (CN)
Openalex Percentile: Top 10%
Milk Quality and Mastitis in Dairy Cows
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Cytochalasin B Alleviates LPS-Induced Mastitis and Modulates the Expression of PI3K/N-WASP/ARP2/3-Related Molecules — Kejiang Liu, Xingxu Zhao, et al. · Biomolecules (2026) | TGRS Research Map | TGRS