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Published on: October 30, 2013
Brusatol hinders the progression of bladder cancer by Chac1/Nrf2/SLC7A11 pathway
Xi Yu1, Ziqi He2, Zhong Wang3
1Departments of Anesthesiology of Renmin Hospital of Wuhan University, Wuhan, Hubei, 430060, PR China.
Abstract:
Bladder cancer is a common tumor that impacts the urinary system and marked by a significant fatality rate and an unfavorable prognosis. Promising antineoplastic properties are exhibited by brusatol, which is obtained from the dried ripe fruit of Brucea javanica. The present study aimed to evaluate the influence of brusatol on the progression of bladder cancer and uncover the molecular mechanism involved. We used Cell Counting Kit-8, colony formation and EdU assays to detect cell numbers, viability and proliferation. We used transwell migration assay to detect cell migration ability. The mechanism of brusatol inhibition of bladder cancer proliferation was studied by flow cytometry and western blotting. It was revealed that brusatol could reduce the viability and proliferation of T24 and 5637 cells. The transwell migration assay revealed that brusatol was able to attenuate the migration of T24 and 5637 cells. We found that treatment with brusatol increased the levels of reactive oxygen species, malondialdehyde and Fe2+, thereby further promoting ferroptosis in T24 and 5637 cells. In addition, treatment with RSL3 (an agonistor of ferroptosis) ferrostatin-1 (a selective inhibitor of ferroptosis) enhanced or reversed the brusatol-induced inhibition. In vivo, treatment with brusatol significantly suppressed the tumor growth in nude mice. Mechanistically, brusatol induced ferroptosis by upregulating the expression of ChaC glutathione-specific gamma-glutamylcyclotransferase (Chac1) and decreasing the expression of SLC7A11 and Nrf2 in T24 and 5637 cells. To summarize, the findings of this research demonstrated that brusatol hindered the growth of bladder cancer and triggered ferroptosis via the Chac1/Nrf2/SLC7A11 pathway.
Insights
Brusatol, derived from Brucea javanica, effectively inhibits bladder cancer progression by inducing ferroptosis. This natural compound suppressed tumor growth in vivo and in vitro, offering a promising new avenue for bladder cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Bladder cancer presents a significant health challenge with poor prognosis.
- Brusatol, a compound from Brucea javanica, shows potential anticancer properties.
- Understanding brusatol's mechanism in bladder cancer is crucial for therapeutic development.
Purpose of the Study:
- To investigate the effects of brusatol on bladder cancer cell progression.
- To elucidate the molecular mechanisms underlying brusatol's action.
- To evaluate brusatol's efficacy in preclinical bladder cancer models.
Main Methods:
- Cell viability, proliferation, and migration assays (CCK-8, colony formation, EdU, Transwell).
- Flow cytometry and Western blotting to analyze cellular mechanisms.
- In vivo studies using nude mice xenograft models.
- Investigation of ferroptosis markers and related pathways (Chac1, Nrf2, SLC7A11).
Main Results:
- Brusatol significantly reduced bladder cancer cell viability, proliferation, and migration.
- Brusatol treatment induced ferroptosis in bladder cancer cells, evidenced by increased reactive oxygen species, malondialdehyde, and Fe2+ levels.
- In vivo studies demonstrated that brusatol suppressed tumor growth in nude mice.
- Mechanistically, brusatol upregulated Chac1 and downregulated Nrf2 and SLC7A11, promoting ferroptosis.
Conclusions:
- Brusatol exhibits potent anti-bladder cancer activity by inducing ferroptosis.
- The Chac1/Nrf2/SLC7A11 pathway is implicated in brusatol-mediated ferroptosis.
- Brusatol represents a promising therapeutic agent for bladder cancer treatment.
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