Unveiling the anti-inflammatory potential of 11β,13-dihydrolactucin for application in inflammatory bowel disease management

被引:0
作者
Matos, Melanie S. [1 ,2 ]
Avila-Galvez, Maria angeles [1 ,3 ]
Gonzalez-Sarrias, Antonio [4 ]
Silva, Nuno-Valerio [3 ]
Crespo, Carolina Lage [3 ]
Jacinto, Antonio [3 ,5 ]
Serra, Ana Teresa [1 ,2 ]
Matias, Ana A. [1 ]
Nunes dos Santos, Claudia [1 ,2 ,3 ,5 ]
机构
[1] Inst Biol Expt & Tecnol iBET, P-2780157 Oeiras, Portugal
[2] Univ Nova Lisboa ITQB NOVA, Inst Tecnol Quim & Biol Antonio Xavier, P-2780157 Oeiras, Portugal
[3] Univ Nova Lisboa, Fac Ciencias Med, NOVA Med Sch, NMS FCM, P-1169056 Lisbon, Portugal
[4] Lab Food & Hlth, Res Grp Qual Safety & Bioact Plant Foods, CEBAS CSIC, 30100 Campus Espinardo, Murcia, Spain
[5] Univ Nova Lisboa, NOVA Inst Med Syst Biol, NIMSB, P-1099085 Lisbon, Portugal
关键词
NF-KAPPA-B; INTESTINAL INFLAMMATION; SESQUITERPENE LACTONE; PROTEIN-KINASE; PERMEABILITY; MODELS;
D O I
10.1039/d4fo01446d
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Management of inflammatory bowel disease (IBD) poses significant challenges, and there is a need for innovative therapeutic approaches. This study investigates the anti-inflammatory properties of the dietary sesquiterpene lactone (SL) 11 beta,13-dihydrolactucin, which can be found in chicory, in three distinct complementary models of intestinal inflammation (two cell models and a zebrafish model), offering comprehensive insights into its potential application for IBD treatment alternatives. In a triple cell co-culture composed of Caco-2, HT29-MTX-E12, and Raji B, 11 beta,13-dihydrolactucin demonstrated remarkable anti-inflammatory activity at several levels of the cellular inflammatory response. Notably, 11 beta,13-dihydrolactucin prevented the activation of critical signalling pathways associated with inflammation, namely NF-kappa B and MAPK p38. This SL also decreased the release of the neutrophil-recruiting chemokine IL-8. Additionally, the compound reduced the gene expression of IL-6 and TNF-alpha, as well as the gene and protein expression of the inflammatory inducible enzymes iNOS and COX-2. In a myofibroblast-like human cell model, 11 beta,13-dihydrolactucin decreased the release of the cytokine TNF-alpha and the COX-2-derived inflammation mediator PGE2. Finally, in a zebrafish model of gut inflammation, 11 beta,13-dihydrolactucin effectively reduced neutrophil infiltration, further supporting its anti-inflammatory efficacy in a physiological context. Collectively, our findings highlight the promising anti-inflammatory potential of 11 beta,13-dihydrolactucin across various facets of intestinal inflammation, providing a foundation for the consideration of chicory as a promising candidate for incorporation in food or nutraceutical products for the potential prevention of IBD. 11 beta,13-Dihydrolactucin, a sesquiterpene lactone found in chicory, presents promising anti-inflammatory potential in complementary in vitro and in vivo models of intestinal inflammation, acting at several levels of the cellular inflammatory response.
引用
收藏
页码:9254 / 9271
页数:18
相关论文
共 64 条
[1]   The gut microbiota metabolite urolithin A, but not other relevant urolithins, induces p53-dependent cellular senescence in human colon cancer cells [J].
Antonio Gimenez-Bastida, Juan ;
Angeles Avila-Galvez, Maria ;
Carlos Espin, Juan ;
Gonzalez-Sarrias, Antonio .
FOOD AND CHEMICAL TOXICOLOGY, 2020, 139
[2]   Establishment of a triple co-culture in vitro cell models to study intestinal absorption of peptide drugs [J].
Antunes, Filipa ;
Andrade, Fernanda ;
Araujo, Francisca ;
Ferreira, Domingos ;
Sarmento, Bruno .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2013, 83 (03) :427-435
[3]   The Complexity of Sesquiterpene Chemistry Dictates Its Pleiotropic Biologic Effects on Inflammation [J].
Arizmendi, Narcy ;
Alam, Syed Benazir ;
Azyat, Khalid ;
Makeiff, Darren ;
Befus, A. Dean ;
Kulka, Marianna .
MOLECULES, 2022, 27 (08)
[4]  
Avila-Gálvez MA, 2022, FOOD FUNCT, V13, P8977, DOI [10.1039/d2fo00933a, 10.1039/D2FO00933A]
[5]   Stromal Cells in the Pathogenesis of Inflammatory Bowel Disease [J].
Barnhoorn, M. C. ;
Hakuno, S. K. ;
Bruckner, R. S. ;
Rogler, G. ;
Hawinkels, L. J. A. C. ;
Scharl, M. .
JOURNAL OF CROHNS & COLITIS, 2020, 14 (07) :995-1009
[6]   Understanding the tumour micro-environment communication network from an NOS2/COX2 perspective [J].
Basudhar, Debashree ;
Bharadwaj, Gaurav ;
Somasundaram, Veena ;
Cheng, Robert Y. S. ;
Ridnour, Lisa A. ;
Fujita, Mayumi ;
Lockett, Stephen J. ;
Anderson, Stephen K. ;
McVicar, Daniel W. ;
Wink, David A. .
BRITISH JOURNAL OF PHARMACOLOGY, 2019, 176 (02) :155-176
[7]   In Vitro Methods for Measuring the Permeability of Cell Monolayers [J].
Bednarek, Radoslaw .
METHODS AND PROTOCOLS, 2022, 5 (01)
[8]   Long-Term Dietary Patterns Are Reflected in the Plasma Inflammatory Proteome of Patients with Inflammatory Bowel Disease [J].
Bourgonje, Arno R. ;
Bolte, Laura A. ;
Vranckx, Lianne L. C. ;
Spekhorst, Lieke M. ;
Gacesa, Ranko ;
Hu, Shixian ;
van Dullemen, Hendrik M. ;
Visschedijk, Marijn C. ;
Festen, Eleonora A. M. ;
Samsom, Janneke N. ;
Dijkstra, Gerard ;
Weersma, Rinse K. ;
Campmans-Kuijpers, Marjo J. E. .
NUTRIENTS, 2022, 14 (12)
[9]   BMS-345541 is a highly selective inhibitor of IκB kinase that binds at an allosteric site of the enzyme and blocks NF-κB-dependent transcription in mice [J].
Burke, JR ;
Pattoli, MA ;
Gregor, KR ;
Brassil, PJ ;
MacMaster, JF ;
McIntyre, KW ;
Yang, XX ;
Iotzova, VS ;
Clarke, W ;
Strnad, J ;
Qiu, YP ;
Zusi, FC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (03) :1450-1456
[10]   Neutrophilic inflammation promotes SARS-CoV-2 infectivity and augments the inflammatory responses in airway epithelial cells [J].
Calvert, Ben A. A. ;
Quiroz, Erik J. J. ;
Lorenzana, Zareeb ;
Doan, Ngan ;
Kim, Seongjae ;
Senger, Christiana N. N. ;
Anders, Jeffrey J. J. ;
Wallace, Wiliam D. D. ;
Salomon, Matthew P. P. ;
Henley, Jill ;
Ryan, Amy L. L. .
FRONTIERS IN IMMUNOLOGY, 2023, 14