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Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
Bavachalcone targets transferrin receptor and sensitizes gemcitabine to affect bladder cancer progression
Zihao Zhang1,2, Chenyue Yuan3, Qintao Ge1,2
1Department of Urology Fudan University Shanghai Cancer Center; Center; Department of Oncology, Shanghai Medical College, Fudan University Shanghai China.
Abstract:
Gemcitabine resistance drives bladder cancer recurrence and progression. Using high-throughput drug screening in bladder cancer cells, we identified Bavachalcone (Bava) as a potent gemcitabine sensitizer. Mechanistically, Bava simultaneously targets transferrin receptor (TFRC) and epidermal growth factor receptor (EGFR). It competes with transferrin (Tf) for TFRC binding, reducing cellular iron influx, and inhibits EGFR-mediated phosphorylation of TFRC at tyrosine 20 (Y20). These actions disrupt mitochondria iron utilization and impairs respiration. The combination of Bava and gemcitabine synergistically inhibits the repair of gemcitabine-induced DNA damage, while suppressing the iron-dependent ATR-CHEK1-E2F1 pathway and downregulating RRM1 expression. Patient-derived xenograft models confirmed the superior antitumor efficacy of the Bava-gemcitabine co-treatment compared to monotherapies. Clinically, elevated TFRC and RRM1 expression correlates with poor prognosis, supporting their utility as biomarkers of bladder cancer. Our study identified Bava as the first small-molecule TFRC inhibitor that overcomes gemcitabine resistance through iron modulation, providing both mechanistic insights and a promising therapeutic strategy for bladder cancer.
Insights
Bavachalcone (Bava) overcomes gemcitabine resistance in bladder cancer by targeting transferrin receptor (TFRC) and epidermal growth factor receptor (EGFR). This novel approach enhances chemotherapy efficacy and offers a promising new therapeutic strategy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Gemcitabine resistance is a major challenge in bladder cancer treatment, leading to disease recurrence and progression.
- Identifying novel therapeutic strategies to overcome chemoresistance is crucial for improving patient outcomes.
Purpose of the Study:
- To identify novel compounds that sensitize bladder cancer cells to gemcitabine.
- To elucidate the mechanism of action of identified compounds.
- To evaluate the therapeutic potential of combining the novel compound with gemcitabine in preclinical models.
Main Methods:
- High-throughput drug screening of bladder cancer cell lines.
- Mechanistic studies involving transferrin receptor (TFRC) and epidermal growth factor receptor (EGFR) inhibition.
- Assessment of cellular iron utilization, mitochondrial respiration, and DNA damage repair.
- Combination therapy studies in patient-derived xenograft models.
Main Results:
- Bavachalcone (Bava) was identified as a potent gemcitabine sensitizer.
- Bava inhibits TFRC and EGFR, reducing iron influx and disrupting mitochondrial function.
- The Bava-gemcitabine combination synergistically enhanced anti-tumor efficacy by inhibiting DNA repair and the ATR-CHEK1-E2F1 pathway, while downregulating RRM1.
- Elevated TFRC and RRM1 expression correlated with poor prognosis in bladder cancer patients.
Conclusions:
- Bavachalcone is the first small-molecule TFRC inhibitor that overcomes gemcitabine resistance via iron modulation.
- The Bava-gemcitabine combination represents a promising therapeutic strategy for bladder cancer.
- TFRC and RRM1 serve as potential biomarkers for bladder cancer prognosis.
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