1.Effect of Avian Influenza Virus subtype H9N2 on the expression of complement-associated genes in chicken erythrocytes. British Poultry Science, 2023, Accepted(通讯作者)
2.Effect of recombinant glutathione-s-transferase a3 protein on the expression of host defense resistance and pattern recognition receptors in the thiram induced tibial dyschondroplasia chicken erythrocytes, 2023, Accepted(通讯作者)
3.Expression profile of Toll-like receptors pathway genes of chicken erythrocytes infected withMycoplasma synoviae.Pakistan Journal of Zoology, 2023,Available online 09 January 2023 (early access)(通讯作者)
4.Identification of Nuclear factor-κBpathway genes in chicken erythrocytes and their expression level in erythrocytes after infection withMycoplasma Synoviae.Pakistan Journal of Zoology, 2023,Available online 05 January 2023 (early access)(共同通讯作者)
5.Cross-reaction of current available SARS-CoV-2 MAbs against the pangolin-origin coronavirus GX/ P2V/2017. Cell Reports, 2022, 41:111831(共同通讯作者)
6.Screening of proliferation-related genes and pathological changes in thiram-induced tibial dyschondroplasia. BioMed Research International, 2022, 6209047(通讯作者)
7.Transcriptome-based biomarker gene screening and evaluation of the extracellular fatty acid-binding protein (Ex-FABP) on immune and angiogenesis-related genes in chicken erythrocytes of tibial dyschondroplasia. BMC Genomics, 2022, 23: 323(共同通讯作者)
8.Profiling of Apoptosis-Related Genes in Erythrocytes of Chickens Infected with Avian Influenza Virus (H9N2 Subtype). Pakistan Journal of Zoology,2022, 54(1): 199-206(通讯作者)
9.Transcriptomeanalysis reveals the immune response of chicken erythrocytes to Marek’s disease virus infection. Pakistan Journal of Zoology, 2021, 53(6): 2057-2069(通讯作者)
10.Molecular basis of cross-species ACE2 interactions with SARS-CoV-2-like viruses of pangolin origin. EMBO Journal, 2021, 40: e107786(共同通讯作者)
11.Dietary supplementation with Celecoxib to prevent the welfare problem of tibial dyschondroplasia in broiler chickens. Livestock science, 2021, 250: 104568(通讯作者)
12.NF-кB pathway genes expression in chicken erythrocytes infected with Avian Influenza virus subtype H9N2, British Poultry Science,2021, 62(5): 666-671(共同通讯作者)
13.Expression of Prostaglandins-Related Genes in Erythrocytes of Chickens Infected with H9N2 Subtype of Avian Influenza Virus. Pakistan Journal of Zoology, 2021, 53(4): 1417-1424(通讯作者)
14.An overview of hydrogels and their role in transdermal drug delivery. International Journal of Polymeric Materials and Polymeric Biomaterials. 2021, 70(8):574-584(通讯作者)
15.Janus Kinase/Signal transducer and activator of transcription signalling pathway-related genes STAT3, SOCS3and their role in thiram induced tibial dyschondroplasia chickens, Research in Veterinary Science, 2021, 136: 25-31(通讯作者)
16.Glutathione-S-transferase A3 protein suppresses thiram-induced tibial dyschondroplasia by regulating prostaglandin-related genes expression, Research in Veterinary Science, 2021, 135: 343-348(通讯作者)
17.Cellular, molecular and genetical overview of avian tibial dyschondroplasia, Research in Veterinary Science, 2021, 135: 569-579(通讯作者)
18.Screening of Toll-like receptor signaling pathway-related genes and the response of recombinant glutathione S-transferase A3 protein to thiram induced apoptosis in chicken erythrocytes, Developmental and Comparative Immunology, 2021, 114: 103831(通讯作者)
19.Thermosensitive chitosan-based injectable hydrogel as an efficient anticancer drug carrier, ACS Omega, 2020, 5 (32): 20450−20460(共同通讯作者)
20.Integration of gene expression profile data to screen and verify immune-related genes of chicken erythrocytes involved in Marek's disease virus. Microbial Pathogenesis, 2020, 104454(通讯作者)
21.Recombinant glutathione-S-transferase A3 protein regulates the angiogenesis-related genes of erythrocytes in thiram induced tibial lesions. Research in Veterinary Science, 2020, 131: 244-253(通讯作者)
22.Transcriptome-based screening of intracellular pathways and angiogenesis related genes at different stages of thiram induced tibial lesions in broiler chickens. BMC Genomics, 2020, 21: 50(通讯作者)
23.Transcriptome analysis of MAPK signaling pathway and associated genes to angiogenesis in chicken erythrocytes on response to thiram-induced tibial lesions. Research in Veterinary Science, 2019, 127: 65-75(通讯作者)
24.The mRNA expression of host defense peptides in chicken erythrocytes are highly related to Tibial Dyschondroplasia and induced by recombinant Glutathione-S-Transferase A3 protein. Pakistan Journal of Zoology, 2019, 51(4): 1475-1482.(通讯作者)
25.The expression of prostaglandins-related genes in erythrocytes of broiler chicken responds to thiram-induced tibial dyschondroplasia and recombinant glutathione-S-transferase A3 protein. Research in Veterinary Science, 2019, 124: 112-117(通讯作者)
26.Immunomodulatory and growth promoting effects of basil (ocimum basilicum) and ascorbic acid in heat stressed broiler chickens. Pakistan Journal of Zoology, 2019, 51(3): 801-807.(通讯作者)
27.Transcripts of antibacterial peptides in chicken erythrocytes infected with Marek’s disease virus, BMC Veterinary Research, 2018, 14(1):363(通讯作者)
28.Protective effects of zinc and N-acetyl-L-cysteine supplementation against cadmium induced erythrocyte cytotoxicity in Arbor Acres broiler chickens (Gallus gallus domesticus). Ecotoxicology and Environmental Safety, 2018, 163: 331-339(通讯作者)
29.Identification of apoptosis-related genes in erythrocytes of broiler chickens and their response to thiram-induced tibial dyschondroplasia and recombinant glutathione-S-transferase A3 protein. Research in Veterinary Science, 2018, 120: 11-16(通讯作者)
30.Screening of differentially expressed genes in the growth plate of broiler chickens with Tibial Dyschondroplasia by microarray analysis. BMC Genomics, 2013, 14: 276(第一作者)
31.Effects of Gallid Herpesvirus 2 Marek's Disease Challenge Virus and Atteunated Vaccine Virus CVI988/Rispens on immune adhesion of erythrocytes of chickens. International Journal of Poultry Science, 2013, 12(4): 217-223(第一作者)
32.Identification of differentially expressed genes in the growth plate of broiler chickens with thiram-induced Tibial Dyschondroplasia. Avian Pathology, 2009, 38 (2): 161-166(第一作者)
33.H9N2亚型禽流感病毒感染鸡红细胞引起白细胞介素的免疫应答.山西农业科学,2023已录用(通讯作者)
34.一株铜绿假单胞菌噬菌体的分离鉴定及其生物学特性研究.中国兽医科学,2023已录用(通讯作者)
35.H5亚型禽流感病毒对公共卫生安全威胁与疫苗研究进展.中国动物检疫,2023,已录用(通讯作者)
36.猪源嗜麦芽寡养单胞菌分离鉴定及致肺脏病理损伤分析.动物医学进展, 2022, 43(9):6(通讯作者)
37.动物传染病mRNA疫苗研究进展.动物医学进展,2022, 43(7): 64-68(通讯作者)
38.猪伪狂犬病病毒山西株的分离鉴定及遗传变异分析.山西农业科学,2021, 49(5): 649-655(通讯作者)
39.10株鸭疫里氏杆菌的分离鉴定及耐药性分析,山西农业科学,2021, 49(5): 675-678(通讯作者)
40.重组GSTA3蛋白对福美双诱导的肉鸡TD中抗凋亡基因BAG-3表达的影响,中国农业科学,2020, 53(9): 1921-1930(通讯作者)
41.重组鸡细胞外脂肪酸结合蛋白的原核表达及鉴定,山西农业科学,2020,48(6):855-859, 888(通讯作者)
42.重组GSTA3蛋白对福美双诱导的TD肉鸡生长性能的影响,山西农业科学,2020,48(3):449-451(通讯作者)
43.肉鸡谷胱甘肽S_转移酶A3基因的克隆及蛋白的表达和纯化,山西农业大学学报(自然科学版),2019,39(1):095(通讯作者)
44.两株禽绿脓杆菌的分离鉴定与致病性研究,山西农业大学学报(自然科学版),2019,39(1):107(通讯作者)
45.晋中地区鸡致病性大肠杆菌分离株的鉴定及其16S rDNA序列的同源性分析,中国兽医科学,2019,49(03):341-346(通讯作者)
46.重组鸡Ex-FABP蛋白对福美双诱导的TD肉鸡血清中Bcl-2含量的影响,山西农业科学,2019,47(4):673-676(通讯作者)
47.马立克病病毒感染鸡红细胞6种免疫相关因子转录水平的鉴定,动物医学进展,2018,39(12):49-53(通讯作者)
48.sFRP4基因在肉鸡胫骨软骨发育不良中的表达及生物信息学分析,动物医学进展,2018,39(12):90-95(通讯作者)
49.重组鸡GSTA3蛋白对福美双诱导胫骨软骨发育不良肉鸡红细胞免疫相关基因转录的影响,畜牧兽医学报, 2018, 49(4): 811-817(通讯作者)
50.福美双诱导的肉鸡胫骨软骨发育不良软骨细胞凋亡,畜牧兽医学报, 2017, 48(12): 2421-2428(通讯作者)
51.重组鸡GSTA3蛋白对福美双诱导的TD肉鸡血清中Bax含量的影响,山西农业科学,2017,45(11):1849-1852(通讯作者)
52.重组鸡GSTA3蛋白对福美双诱导肉鸡TD的血清GST-α含量的影响,山西农业科学,2017,45(11):1853-1855(通讯作者)
53.MDV感染B19、B21单倍型SPF鸡外周血淋巴细胞BLec1、BNK及细胞因子基因转录水平比较.畜牧兽医学报,2015,46(7):1184-1190
54.鸡源大肠杆菌耐药性分析及中药对大肠杆菌耐药性消除作用的研究.畜牧兽医学报,2015,46(6):1018-1025(通讯作者)
55.四甲基秋兰姆二硫化物对肉鸡胫骨生长板超微结构的影响.畜牧兽医学报,2013,44(6):965-971(第一作者)
56.肉鸡胫骨软骨发育不良早期钙黏蛋白1(CDH1)差异表达研究.畜牧兽医学报,2012,43(4):642-646(第一作者)
57.福美双诱发肉鸡胫骨软骨发育不良早期生长板消减cDNA文库的构建.中国农业科学,2011,44(4):829-834(通讯作者)
58.I型胶原和热休克蛋白90在肉鸡胫骨软骨发育不良不同阶段的变化.畜牧兽医学报,2009,40(3):428-432(第一作者)
59.福美双对肉鸡生长性能和胫骨软骨发育不良组织病理学变化的影响.畜牧兽医学报,2008,39(6):733-738(第一作者)
60.cDNA芯片筛选肉鸡胫骨软骨发育不良相关基因.中国畜牧杂志,2014,50(17):17-20(第一作者)
61.马立克病毒强毒感染和疫苗免疫鸡组织病理学变化比较.动物医学进展,2014,35(8):36-39(第一作者)
62.马立克病鸡血清生化指标的检测与分析.动物医学进展,2013,34(8):127-130(第一作者)
63.有核红细胞免疫应答前景分析.国外畜牧学-猪与禽,2013,33(6):59-63(通讯作者)
64.鸡马立克氏病免疫应答研究进展.中国家禽,2012,10:1-6(通讯作者)