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As a classical morphogen signaling, Wnt/β-catenin pathway was well-known for decades as one of the central machineries in governing development and homeostasis, as well as a leading cause of human cancers. Despite the explicit understanding of the key components, discovery of novel regulators of Wnt signaling remains promisingly fruitful and meaningful. With the development in life science research, new theories and focuses emerged in the past few years. In the second half of the game on understanding Wnt, we aimed to bring in new players and to change new strategies, which were under-explored, to provide both novel mechanistic insights and therapeutic opportunities against Wnt-dysregulated diseases.
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Advanced healthcare materials (2023)
Yinuo Wang,Aihua Mao,Jingwei Liu,Pengjie Li,Shaoqin Zheng, Tong Tong,Zexu Li,Haijiao Zhang,Lanjing Ma,Jiahui Lin, Qing Han, Fukang Qi,
CELL CHEMICAL BIOLOGYno. 11 (2023): 1436-+
FEBS lettersno. 24 (2023): 3061-3071
Molecules (Basel, Switzerland)no. 20 (2023): 7028
LIFE SCIENCE ALLIANCEno. 11 (2022)
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