Targeting Galectin-1 Overcomes Paclitaxel Resistance in Esophageal Squamous Cell Carcinoma
Liting Zhou1,2,3, Jie Tian1,2,3, Keke Wang3
1Department of Pathophysiology, School of Basic Medical Sciences, Zhengzhou University, Zhengzhou, China.
Abstract:
Resistance to paclitaxel poses a major obstacle in esophageal squamous cell carcinoma (ESCC) treatment. A better understanding of the mechanisms underlying paclitaxel resistance could help identify prognostic biomarkers and improved therapeutic strategies. In this study, we established a patient-derived xenograft model of acquired paclitaxel resistance and used RNA sequencing to identify galectin-1, encoded by LGALS1, as a key mediator of resistance. Integrative analysis of clinical data and physiological studies indicated that serum galectin-1 levels were elevated in resistant patients and correlated with treatment outcomes before and during taxane therapy. Importantly, exposing cells to serum from resistant patients resulted in increased paclitaxel resistance compared to serum from sensitive patients, which was closely associated with galectin-1 concentrations in the serum. The specific clearance of galectin-1 from resistant patient serum significantly restored paclitaxel sensitivity, and inhibiting galectin-1, through knockdown or the pharmacologic inhibitor OTX008, increased sensitivity to paclitaxel. Galectin-1 inhibition reduced the activity of β-catenin, thereby inhibiting stem cell properties induced by the Wnt/β-catenin pathway. Furthermore, galectin-1 regulated MDR1 transcription through increased nuclear accumulation of β-catenin, thus increasing resistance to paclitaxel. Combining OTX008 with clinical taxane formulations effectively reversed paclitaxel resistance in vitro and in vivo. Elevated galectin-1 levels thus serve as an indicator of response to paclitaxel therapy in ESCC, offering a therapeutic intervention strategy to overcome drug resistance. Significance: Galectin-1 is a key mediator of paclitaxel resistance in esophageal squamous cell carcinoma that can be targeted to improve taxane efficacy, suggesting broad therapeutic potential for treating various cancer types.
Insights
Galectin-1 drives paclitaxel resistance in esophageal squamous cell carcinoma (ESCC). Targeting galectin-1 with OTX008 restores sensitivity, offering a new strategy for ESCC treatment and improving taxane efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Paclitaxel resistance is a significant challenge in treating esophageal squamous cell carcinoma (ESCC).
- Understanding the molecular mechanisms of paclitaxel resistance is crucial for developing effective therapeutic strategies and identifying prognostic biomarkers.
- Patient-derived xenograft models offer valuable platforms for studying drug resistance in cancer.
Purpose of the Study:
- To identify key mediators of acquired paclitaxel resistance in ESCC.
- To investigate the role of galectin-1 in paclitaxel resistance and its potential as a therapeutic target.
- To evaluate the efficacy of galectin-1 inhibition in overcoming paclitaxel resistance in ESCC.
Main Methods:
- Establishment of a patient-derived xenograft (PDX) model of acquired paclitaxel resistance in ESCC.
- RNA sequencing to identify differentially expressed genes, including galectin-1 (encoded by LGALS1).
- Integrative analysis of clinical data, serum galectin-1 levels, and in vitro/in vivo experiments involving galectin-1 inhibition (knockdown and OTX008).
Main Results:
- Galectin-1 was identified as a key mediator of paclitaxel resistance in ESCC.
- Elevated serum galectin-1 levels correlated with paclitaxel resistance and poor treatment outcomes in ESCC patients.
- Specific clearance of galectin-1 or inhibition with OTX008 restored paclitaxel sensitivity by reducing Wnt/β-catenin pathway activity and MDR1 transcription.
- Combination therapy with OTX008 and taxanes effectively reversed paclitaxel resistance in vitro and in vivo.
Conclusions:
- Elevated galectin-1 levels are a significant indicator of paclitaxel resistance in ESCC.
- Targeting galectin-1 presents a promising therapeutic strategy to overcome paclitaxel resistance in ESCC.
- Galectin-1 inhibition enhances taxane efficacy and holds potential for treating other cancer types exhibiting drug resistance.
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