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Small (Weinheim an Der Bergstrasse, Germany)|March 15, 2023
Construction of a Novel Cascade Electrolysis-Heterocatalysis System by Using Zeolite-Encaged Ultrasmall Palladium Catalysts for H2 O2 GenerationCaiyi Chen, Xiaoli Wang, Boju Pan, et al.Frontiers in Chemistry|September 1, 2022
Insight on the regulation mechanism of the nanochannels in hard and brittle materials induced by sparially shaped femtosecond laserLin Kai, Caiyi Chen, Yu Lu, et al.Stem Cell Research & Therapy|June 13, 2026
BDNF secreted by mesenchymal stem cells ameliorates the accelerated meiotic progression in aged mouse oocytes by activating the PI3K/AKT pathwayXin Mi, Jiali Zhou, Caiyi Chen, et al.Veterinary Research|May 26, 2021
SYNCRIP facilitates porcine parvovirus viral DNA replication through the alternative splicing of NS1 mRNA to promote NS2 mRNA formationSongbiao Chen, Bichen Miao, Nannan Chen, et al.Sensors (Basel, Switzerland)|March 16, 2019
A Seabed Real-Time Sensing System for In-Situ Long-Term Multi-Parameter Observation ApplicationsLanjun Liu, Zhibo Liao, Caiyi Chen, et al.Veterinary Microbiology|August 8, 2021
Coatomer protein COPƐ, a novel NS1-interacting protein, promotes the replication of Porcine Parvovirus via attenuation of the production of type I interferonSongbiao Chen, Nannan Chen, Bichen Miao, et al.Veterinary Microbiology|December 16, 2021
T598 and T601 phosphorylation sites of canine parvovirus NS1 are crucial for viral replication and pathogenicityBichen Miao, Songbiao Chen, Xuezhi Zhang, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|August 3, 2019
Inhibition of UBE2N-dependent CDK6 protein degradation by miR-934 promotes human bladder cancer cell growthHuiying Yan, Shuwei Ren, Qi Lin, et al.Neoplasia (New York, N.Y.)|August 4, 2017
NF-κB p65 Overexpression Promotes Bladder Cancer Cell Migration via FBW7-Mediated Degradation of RhoGDIα ProteinJunlan Zhu, Yang Li, Caiyi Chen, et al.Cell Communication and Signaling : CCS|March 24, 2025
BDNF secreted by mesenchymal stem cells improves aged oocyte quality and development potential by activating the ERK1/2 pathwayJing Zhou, Cheng Li, Xin Mi, et al.Pageof 3