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Published on: April 26, 2018
Fucoxanthin Targets β1 Integrin to Disrupt Adhesion and Migration in Human Glioma Cells
Hui Huang1, Wen Zhang2, Qifang Wu3
1Department of Pharmacy, Wenzhou Hospital of Intergrated Traditonal Chinese and Western Medicine, Wenzhou 325000, China.
Abstract:
Glioblastoma, the most aggressive type of primary brain tumor, is marked by high invasiveness and metastasis, posing significant challenges in treatment. Fucoxanthin, a carotenoid derived from brown macroalgae, has demonstrated therapeutic potential in cancer therapy; however, its precise mechanisms of action remain unclear. In this study, we explored the inhibitory effects of fucoxanthin on integrin-mediated adhesion and migration in human glioma U-87 MG cells, shedding light on its potential antimetastatic properties. Our data indicated that fucoxanthin at 1 μM did not affect cell viability but inhibited integrin-mediated adhesion of human glioma U-87 MG cells to fibronectin, a key extracellular matrix (ECM) ligand for integrins, without affecting adhesion to poly-l-lysine, a nonintegrin ligand, indicating its selective impact on integrin-mediated adhesion. Fucoxanthin treatment significantly reduced the size and number of focal adhesions (FA), which play a central role in cell adhesion and migration. In addition, fucoxanthin significantly impaired U-87 MG cell migratory capacity, including a reduced accumulated migration distance and velocity, determined by time-lapse videomicroscopy. Further, fucoxanthin remarkably inhibited integrin engagement-mediated actin polymerization, Vav3 phosphorylation, and the downstream activation of Rac1, FAK, and paxillin, further supporting its role in disrupting integrin signaling and cytoskeletal remodeling. Additionally, complementary experiments utilizing protein binding assays, competitive ELISA, CETSA, DARTS, and MST collectively confirmed the direct interaction between fucoxanthin and β1 integrin as well as reduced ligand affinity of β1 integrin for fibronectin. The theoretical model of molecular docking and the dynamics simulation align with our experimental findings, providing a plausible mechanism by which fucoxanthin competitively inhibits the binding of β1 integrin to fibronectin. In summary, our study highlights fucoxanthin as a promising therapeutic agent that impairs integrin-mediated adhesion and migration in glioblastoma cells by directly targeting β1 integrin and disrupting integrin signaling pathways. These findings offer valuable insights into the potential of fucoxanthin as an antimetastatic agent in glioblastoma treatment.
Insights
Fucoxanthin, a compound from brown algae, inhibits glioblastoma cell adhesion and migration by targeting beta1 integrin. This natural compound shows promise as an antimetastatic agent for brain tumors.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Glioblastoma is an aggressive brain tumor with high invasiveness.
- Fucoxanthin, a carotenoid, shows anti-cancer potential but its mechanisms are unclear.
- Understanding fucoxanthin's effect on glioblastoma metastasis is crucial for treatment.
Purpose of the Study:
- To investigate fucoxanthin's inhibitory effects on integrin-mediated adhesion and migration in human glioma U-87 MG cells.
- To elucidate the molecular mechanisms underlying fucoxanthin's antimetastatic properties.
- To explore fucoxanthin's direct interaction with beta1 integrin.
Main Methods:
- Cell viability assays, integrin-mediated adhesion assays (fibronectin, poly-l-lysine).
- Focal adhesion analysis, time-lapse videomicroscopy for cell migration.
- Biochemical assays (actin polymerization, Western blotting), protein binding assays (ELISA, CETSA, DARTS, MST), molecular docking, and dynamics simulation.
Main Results:
- Fucoxanthin (1 μM) inhibited integrin-mediated adhesion and U-87 MG cell migration without affecting cell viability.
- Fucoxanthin reduced focal adhesions, actin polymerization, and downstream signaling pathways (Vav3, Rac1, FAK, paxillin).
- Direct interaction between fucoxanthin and beta1 integrin was confirmed, inhibiting fibronectin binding.
Conclusions:
- Fucoxanthin effectively impairs glioblastoma cell adhesion and migration by targeting beta1 integrin.
- The compound disrupts integrin signaling and cytoskeletal remodeling, offering antimetastatic potential.
- Fucoxanthin is a promising therapeutic agent for glioblastoma treatment, warranting further investigation.

