在Nature Communications、PLoS Pathogens、JVI等期刊发表SCI论文47篇(通讯或第一),在PNAS、Cellular & Molecular Immunology、ACS Applied Materials & Interfaces等发表SCI论文31篇(参与),授权国家发明专利10件。
以通讯或第一作者身份发表的代表性论文:
1.Benign mixed mammary tumor with sebaceous differentiation in a dog.Journal of Veterinary Medical Science. 2024. DOI: 10.1292/jvms.23-0506.
2.IFN-β contributes to astrocyte activation in the brain following coronavirus PHEV infection independent on peripheral immunity.Veterinary Microbiology. 2024.Doi:10.1016/j.vetmic.2024. 110280
3.Chitosan-based hydrogel dressings with antibacterial and antioxidant for wound healing.International Journal of Biological Macromolecules, 2024 (280), 135939.
4.Porcine coronavirus PHEV co-opts multivesicular-derived exosomes for transmission;mBio.2023, 14: 1, e0305422.
5.Oncolytic Parapoxvirus induces Gasdermin E-mediated pyroptosis and activates antitumor immunity.Nature Communications.2023,14:224.
6.Invasive spindle-cell rhabdomyosarcoma with osteolysis in a dog: case report and literature review.Journal of Veterinary Diagnostic Investigation. 2023, 35(2): 168-172.
7.Chitosan-based ussel-Inspired Hydrogel for Rapid Self-Healing and High Adhesion of Tissue Adhesion and Wound Dressings.Carbohydrate Polymers.316 (2023) 121083.
8.The role of lysosomes as intermediates in betacoronavirus PHEV egress from nerve cells.Journal of Virology. 2023. 97(12): e01338-23.
9.PHEV infection: a promising model of betacoronavirus-associated neurological and olfactory dysfunction.Plos Pathogens.2022,18(6):e1010667.
10.The PERK/PKR-eIF2αpathway negatively regulates porcine hemagglutinating encephalomyelitis virus replication by attenuating global protein translation and facilitating stress granule formation.Journal of Virology. 2022, 96:1: e01695-21.
11.Evidence of microglial immune response following coronavirus PHEV infection of CNS.Frontiers in Immunology.2022, 12, 804625.
12.Vesicular stomatitis virus sensitizes immunologically cold tumors to checkpoint blockade by inducing pyroptosis.BBA - Molecular Basis of Disease.2022, 1868 (12): 166538.
13.Antiviral effect of lysosomotropic disaccharide trehalose on porcine hemagglutinating encephalomyelitis virus, a highly neurotropic betacoronavirus.Virology, 2022, 577:131-137.
14.Porcine Haemagglutinating Encephalomyelitis Virus Triggers Neural Autophagy Independent of ULK1.Journal of Virology.2021, 95(19): e00851-21.
15.Orf virus ORF120 protein positively regulates the NF-κB pathway by interacting with G3BP1.Journal of Virology. 2021, 95(19): e00153-21.
16.Porcine Haemagglutinating Encephalomyelitis Virus Deactivates Transcription Factor IRF3 and Limits Type I Interferon Production.Veterinary Microbiology,2021, 252: 108918.
17.An experimental model of neurodegenerative disease based on porcine hemagglutinating encephalomyelitis virus-related lysosomal abnormalities.Molecular Neurobiology.2020, 57(12): 5299-5306.
18.Porcine hemagglutinating encephalomyelitis virus activation of the integrin α5β1-FAK-Cofilin pathway causes cytoskeletal rearrangement to promote its invasion of N2a cells.Journal of Virology. 2019; 93(5): 01736-18.
19.Ulk1 Governs Nerve Growth Factor/TrkA Signaling by Mediating Rab5 GTPase Activation in Porcine Hemagglutinating Encephalomyelitis Virus-Induced Neurodegenerative Disorders.Journal of Virology. 2018, 92(16): 00325-18.
20.Porcine hemagglutinating encephalomyelitis virus enters Neuro-2a cells via clathrin-mediated endocytosis in a Rab5-, cholesterol-, and pH-dependent manner.Journal of Virology. 2017 Nov 14; 91(23): e01083-17.