| Literature DB >> 30696439 |
Quanxue Li1,2, Wentao Dai2,3,4, Jixiang Liu2,3,4, Yi-Xue Li5,6,7,8,9, Yuan-Yuan Li10,11,12.
Abstract
BACKGROUND: One of the key reasons for the high failure rate of new agents and low therapeutic benefit of approved treatments is the lack of preclinical models that mirror the biology of human tumors. At present, the optimal cancer model for drug response study to date is patient-derived xenograft (PDX) models. PDX recaptures both inter- and intra-tumor heterogeneity inherent in human cancer, which represent a valuable platform for preclinical drug testing and personalized medicine applications. Building efficient drug response analysis tools is critical but far from adequate for the PDX platform.Entities:
Keywords: Drug response analysis; Patient-derived xenograft; Personalized drug selecting; Preclinical drug testing; Tumor model
Mesh:
Year: 2019 PMID: 30696439 PMCID: PMC6350365 DOI: 10.1186/s12967-019-1785-7
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Fig. 1The overview of DRAP. The emerging PDX trial settings could be classified into four patterns: 1*A*N, T*1*N, T*A*1 and T*A*N. Each pattern has its own specific study purpose, and type of input data. DRAP offers three ways to analyze drug response: statistical analysis methods that assess difference of tumor volume between arms are suitable to 1*A*N and T*A*N; tumor growth inhibition (TGI) rate calculation is useful for 1*A*N, T*1*N, and T*A*N; drug response level analysis is suitable to all four patterns. DRAP provides multiple types of tools to present results, including line chart, waterfall plot, and bar diagram
Fig. 2The analysis and visualization of 1*A*N pattern. a Tumor volume data at the level of arm (mean ± SEM). b Tumor volume data at the level of animal. c TGI value at all timepoints. d Drug response level of each arm
Fig. 3The analysis and visualization of T*A*1 pattern. a The drug efficacy of all arms in CRC. b The waterfall plot of each animal response to the combination of BYL719 and LJM716 in GC