Patient derived organoids in prostate cancer: improving therapeutic efficacy in precision medicine

前列腺癌 药物发现 精密医学 医学 药物开发 计算生物学 癌症医学 癌症 癌症研究 肿瘤科 药品 生物 临床试验 内科学 生物信息学 医学物理学 病理 药理学
作者
Sahithi Pamarthy,Hatem E. Sabaawy
出处
期刊:Molecular Cancer [Springer Nature]
卷期号:20 (1): 125-125 被引量:69
标识
DOI:10.1186/s12943-021-01426-3
摘要

Abstract With advances in the discovery of the clinical and molecular landscapes of prostate cancer (PCa), implementation of precision medicine-guided therapeutic testing in the clinic has become a priority. Patient derived organoids (PDOs) are three-dimensional (3D) tissue cultures that promise to enable the validation of preclinical drug testing in precision medicine and coclinical trials by modeling PCa for predicting therapeutic responses with a reliable efficacy. We evaluate the advances in 3D culture and PDO use to model clonal heterogeneity and screen for effective targeted therapies, with a focus on the technological advances in generating PDOs. Recent innovations include the utilization of PDOs both in original research and/or correlative studies in clinical trials to examine drug effects within the PCa tumor microenvironment (TME). There has also been a significant improvement with the utilization of various extracellular matrices and single cell assays for the generation and long-term propagation of PDOs. Single cell derived PDOs could faithfully recapitulate the original tumor and reflect the heterogeneity features. While most PDO use for precision medicine understandably involved tissues derived from metastatic patients, we envision that the generation of PDOs from localized PCa along with the incorporation of cells of the TME in tissue models would fulfill the great potential of PDOs in predicting drug clinical benefits. We conclude that single cell derived PDOs reiterate the molecular features of the original tumor and represent a reliable pre-clinical PCa model to understand individual tumors and design tailored targeted therapies.
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