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Cell Stem Cell|August 25, 2023
Chemical reprogramming for cell fate manipulation: Methods, applications, and perspectivesJinlin Wang, Shicheng Sun, Hongkui DengLife Medicine|March 20, 2025
Pluripotent stem cell-based immunotherapy: advances in translational research, cell differentiation, and gene modificationsQi Lei, Hongkui Deng, Shicheng SunOncoimmunology|October 9, 2023
Enhancing T cell anti-tumor efficacy with a PD1-TIGIT chimeric immune-checkpoint switch receptorJingjing Zhao, Jiebin Dong, Changwen Deng, et al.Cell Stem Cell|March 21, 2023
Highly efficient and rapid generation of human pluripotent stem cells by chemical reprogrammingShijia Liuyang, Guan Wang, Yanglu Wang, et al.Cell Reports|May 24, 2023
Chemical-induced epigenome resetting for regeneration program activation in human cellsGuan Wang, Yanglu Wang, Yulin Lyu, et al.Genomics, Proteomics & Bioinformatics|October 8, 2013
Lineage specifiers: new players in the induction of pluripotencyJian Shu, Hongkui DengCell Stem Cell|January 21, 2010
Powering reprogramming with vitamin CYan Shi, Yang Zhao, Hongkui DengCell Stem Cell|February 7, 2015
Direct lineage reprogramming: strategies, mechanisms, and applicationsJun Xu, Yuanyuan Du, Hongkui DengCurrent Opinion in Genetics & Development|June 2, 2018
Small molecule-induced cellular fate reprogramming: promising road leading to RomeXiang Li, Jun Xu, Hongkui DengCell|April 18, 2026
p53 safeguards chemical reprogramming of human somatic cells toward pluripotencyLin Cheng, Yanglu Wang, Zhihan Yang, et al.Pageof 35