Preclinical models for bladder cancer therapy research

Author:

Ertl Iris1,Shariat Shahrokh F.12345,Berger Walter6,Englinger Bernard16

Affiliation:

1. Department of Urology, Comprehensive Cancer Center, Medical University of Vienna, Vienna, Austria

2. Department of Urology, Weill Cornell Medical College, New York, New York

3. Department of Urology, University of Texas Southwestern, Dallas, Texas, USA

4. Department of Urology, Second Faculty of Medicine, Charles University, Prag, Czech Republic

5. Karl Landsteiner Institute of Urology and Andrology, Vienna, Austria

6. Center for Cancer Research, Medical University of Vienna, Vienna, Austria

Abstract

Purpose of review Bladder cancer (BC) is a highly heterogenous disease comprising tumours of various molecular subtypes and histologic variants. This heterogeneity represents a major challenge for the development of novel therapeutics. Preclinical models that closely mimic in vivo tumours and reflect their diverse biology are indispensable for the identification of therapies with specific activity in various BC subtypes. In this review, we summarize efforts and progress made in this context during the last 24 months. Recent findings In recent years, one main focus was laid on the development of patient-derived BC models. Patient-derived organoids (PDOs) and patient-derived xenografts (PDXs) were demonstrated to widely recapitulate the molecular and histopathological characteristics, as well as the drug response profiles of the corresponding tumours of origin. These models, thus, represent promising tools for drug development and personalized medicine. Besides PDXs, syngenic in vivo models are of growing importance. Since these models are generated using immunocompetent hosts, they can, amongst others, be used to develop novel immunotherapeutics and to evaluate the impact of the immune system on drug response and resistance. Summary In the past two years, various in vivo and in vitro models closely recapitulating the biology and heterogeneity of human bladder tumours were developed.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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