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Updated: Feb 13, 2026

Mouse Kidney Transplantation: Models of Allograft Rejection
Published on: October 11, 2014
A standardized fold change method for microarray differential expression analysis used to reveal genes involved in
Weichen Zhou1,2, Yi Wang1, Masayuki Fujino3,4
1State Key Laboratory of Genetic Engineering and Ministry of Education Key Laboratory of Contemporary Anthropology Collaborative Innovation Center for Genetics and Development School of Life Sciences and Institutes of Biomedical Sciences Fudan University Shanghai China.
Abstract:
Murine transplantation models are used extensively to research immunological rejection and tolerance. Here we studied both murine heart and liver allograft models using microarray technology. We had difficulty in identifying genes related to acute rejections expressed in both heart and liver transplantation models using two standard methodologies: Student's t test and linear models for microarray data (Limma). Here we describe a new method, standardized fold change (SFC), for differential analysis of microarray data. We estimated the performance of SFC, the t test and Limma by generating simulated microarray data 100 times. SFC performed better than the t test and showed a higher sensitivity than Limma where there is a larger value for fold change of expression. SFC gave better reproducibility than Limma and the t test with real experimental data from the MicroArray Quality Control platform and expression data from a mouse cardiac allograft. Eventually, a group of significant overlapping genes was detected by SFC in the expression data of mouse cardiac and hepatic allografts and further validated with the quantitative RT-PCR assay. The group included genes for important reactions of transplantation rejection and revealed functional changes of the immune system in both heart and liver of the mouse model. We suggest that SFC can be utilized to stably and effectively detect differential gene expression and to explore microarray data in further studies.
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