Abstract 33P
Background
Bladder cancer is a globally recognized malignancy for its high recurrence and progression rates. The primary treatment protocol involves cisplatin-based chemotherapy, however, the emergence of cisplatin resistance significantly impedes successful treatment outcomes. In this study, we utilized organoids, a 3D culture model, derived from patient bladder tumors to explore the molecular mechanisms underlying cisplatin resistance.
Methods
To dissect the complex cellular and molecular heterogeneity that fuels cisplatin resistance in bladder cancer, we employed single-cell RNA sequencing (scRNA-seq) technology which enable us to achieve high-resolution characterization of cisplatin-resistant cell populations and their unique gene expression profiles.
Results
We successfully induced two cisplatin resistance bladder cancer patient-derived organoids (PDOs). Through the application of scRNA-seq, we were able to generate exhaustive transcriptomic profiles of individual cells within cisplatin-resistant bladder cancer PDOs. This enabled us to identify specific gene expression patterns linked to resistance. This high-resolution analysis will reveal rare or previously unidentified cell subpopulations that are instrumental in driving cisplatin resistance.
Conclusions
In conclusion, this study signifies a pioneering effort to employ scRNA-seq technology and PDOs to unravel the cellular and molecular mechanisms that govern cisplatin resistance. Comprehensive transcriptomic analysis and integrative studies shed light on the complex biology of resistance and will suggest novel treatment approaches. Ultimately, our research aims to transform the management of cisplatin-resistant bladder cancer, bringing us a step closer to personalized and effective treatment strategies for enhanced patient outcomes.
Editorial acknowledgement
Clinical trial identification
Legal entity responsible for the study
The authors.
Funding
CUHK Direct grant.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
20P - Effects of <italic>Apis dorsata</italic> honey on the expression of selected CYP450, pro-apoptotic, and anti-apoptotic genes during induced cytotoxicity in cyclophosphamide-treated human lung carcinoma (A549) cells
Presenter: Jose Kenneth Narag
Session: Cocktail & Poster Display session
Resources:
Abstract
21P - Hsa_circ_0009061 inhibits the progression of bladder cancer through the miR-889-3p/CPEB3 axis
Presenter: Minkang Wu
Session: Cocktail & Poster Display session
Resources:
Abstract
22P - Exploring exportin-1 as a therapeutic vulnerability in lung squamous cell carcinoma
Presenter: Vidushi Durani
Session: Cocktail & Poster Display session
Resources:
Abstract
23P - Identification of HPSE as potential novel therapeutic target for lung adenocarcinoma patients
Presenter: Samuel Doré
Session: Cocktail & Poster Display session
Resources:
Abstract
24P - High-throughput plasma proteomics profiling in early breast cancer
Presenter: Isabella Lombardo
Session: Cocktail & Poster Display session
Resources:
Abstract
25P - Immunohistochemical analysis of ROR1 and BMI-1 expression in luminal breast cancer
Presenter: Sergey Vtorushin
Session: Cocktail & Poster Display session
Resources:
Abstract
26P - Associations between cancer stem cells (CSC) markers and androgen (AR) and estrogen (ER) receptors expression in prostate cancer (PCa)
Presenter: Marina Puchinskaya
Session: Cocktail & Poster Display session
Resources:
Abstract
27P - Proteomic profiling reveals organ-specific differences in metastases and identifies potential biomarkers for recurrence risk in localized colon cancer
Presenter: Blanca García-Micó
Session: Cocktail & Poster Display session
Resources:
Abstract
28P - Collagen-activated signalling pathway is significantly hypermethylated in high-grade serous ovarian cancer (HGSOC) patients treated with platinum-containing neoadjuvant chemotherapy (NACT)
Presenter: Jose Alejandro Perez Fidalgo
Session: Cocktail & Poster Display session
Resources:
Abstract
29P - Quantitative tissue analysis reveal adenylate kinase 2 protein signatures: Therapeutic target for meningioma
Presenter: Rashmi Rana
Session: Cocktail & Poster Display session
Resources:
Abstract