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Anti-inflammatory effects of TP1 in LPS-induced Raw264.7 macrophages

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Title
Anti-inflammatory effects of TP1 in LPS-induced Raw264.7 macrophages
Other Titles
LPS 유도된 Raw264.7 대식세포에서 TP-1의 항 염증효과
Authors
An Jangeun
Kim Minji
Shin Seong-Ah
Moon Sun Young
Kim Moonsu
Choi Seyeon
Kim Huiji
Phi Kim Hoa
Lee, Jun Hyuck
Youn, Ui Joung
Park Hyun Ho
Lee Chang Sup
Keywords
Anti-infammationMAPKNF-κBTP1
Issue Date
2024
Citation
An Jangeun, et al. 2024. "Anti-inflammatory effects of TP1 in LPS-induced Raw264.7 macrophages". APPLIED BIOLOGICAL CHEMISTRY, 67(1): 0-0.
Abstract
Inflammation is an essential defense mechanism in health; however, excessive inflammation contributes to the pathophysiology of several chronic diseases. Although anti-inflammatory drugs are essential for controlling inflammation, they have several side effects. Recent findings suggest that naturally derived compounds possess physiological activities, including anti-inflammatory, antifungal, antiviral, anticancer, and immunomodulatory activities. Therefore, this study aimed to investigate the anti-inflammatory effects and molecular mechanisms of 2,5,6-trimethoxy-p-terphenyl (TP1), extracted from the Antarctic lichen Stereocaulon alpinum, using in vitro models. TP1 treatment decreased the production of nitric oxide (NO) and reactive oxygen species (ROS) in LPS-stimulated Raw264.7 macrophages. Additionally, TP1 treatment significantly decreased the mRNA levels of pro-inflammatory cytokines (IL-1 beta, TNF-alpha, IL-6) and the mRNA and protein levels of the pro-inflammatory enzymes (inducible nitric oxide synthase and cyclooxygenase-2). Moreover, TP1 suppressed lipopolysaccharide-induced phosphorylation of the NF-kappa B and MAPK signaling pathways in Raw264.7 macrophages. Conclusively, these results suggest that TP1 ameliorates inflammation by suppressing the expression of pro-inflammatory cytokines, making it a potential anti-inflammatory drug for the treatment of severe inflammatory diseases.
URI
https://repository.kopri.re.kr/handle/201206/15301
DOI
http://dx.doi.org/10.1186/s13765-024-00873-y
Type
Article
Station
King Sejong Station
Indexed
SCIE
Appears in Collections  
2023-2023, 2023년도 국내 학·연 극지연구 진흥프로그램(PAP사업) 총괄 (23-23) / Shin, Hyoung Chul (PE23900)
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