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Comparative Biochemistry and Physiology. Toxicology & Pharmacology : CBP|April 22, 2026
Unraveling olanzapine toxicity in planarian: Multi-omics reveals mechanisms of behavioral and regenerative deficitsWeiyun Guo, Baijie Jin, Lina Pang, et al.Biomolecules|December 30, 2025
Developmental Toxicity of Ibrutinib: Insights from Stem Cell Dynamics and Neural Regeneration in PlanariansWeiyun Guo, Baijie Jin, Nannan Li, et al.Molecular Genetics and Genomics : MGG|May 16, 2024
SoxB family genes delay regeneration and cause abnormal movement in Dugesia japonicaYibo Yang, Ziyi Lin, Nannan Li, et al.Gene|April 29, 2014
The characteristics of sox gene in Dugesia japonicaZimei Dong, Changying Shi, Haixia Zhang, et al.Environmental Research|June 13, 2024
Ecotoxicological evaluation and regeneration impairment of planarians by dibutyl phthalateFan Wu, Zhihong Kong, Peng Ge, et al.Journal of Translational Medicine|January 30, 2025
Usp7 contributes to the tail regeneration of planarians via Islet/Wnt1 axisAng Liang, Jinglong Liu, Zhiyuan Zhang, et al.Gene|February 5, 2022
Djhsp70s, especially Djhsp70c, play a key role in planarian regeneration and tissue homeostasis by regulating cell proliferation and apoptosisQinghua Wang, Lijuan Xie, Yixuan Wang, et al.Biochimie|July 22, 2022
Djptpn11 is indispensable for planarian regeneration by affecting early wound response genes expression and the Wnt pathwayQinghua Wang, Xinxin Sun, Jing Xiao, et al.Cell Stress & Chaperones|August 28, 2015
Identification and expression analysis of a heat-shock protein 70 gene in Polycelis spFangfang Cheng, Zimei Dong, Yanping Dong, et al.Journal of Hazardous Materials|January 4, 2025
Toxic effects and mechanistic insights of cadmium telluride quantum dots on the homeostasis and regeneration in planariansDandan Sun, Siyuan He, Xuheng Li, et al.Pageof 4