[1] 周 勇,李知新,鲁宏伟,等.我国H5和H7N9亚型高致病性禽流感的监测及疫情暴发分析[J].畜牧兽医学报,2022,53(9):3093-3106. ZHOU Y,LI Z X,LU H W,et al.Surveillance and outbreak analysis of H5 and H7N9 subtypes of highly pathogenic avian influenza in China[J].Acta Veterinaria et Zootechnica Sinica,2022,53(9):3093-3106.(in Chinese) [2] HAUSE B M,COLLIN E A,LIU R,et al.Characterization of a novel Influenza virus in cattle and swine:Proposal for a new genus in the Orthomyxoviridae family[J].mBio,2014,5(2):e00031-14. [3] 马 洲,关 明,邢志芳,等.流感病毒研究现状与进展[J].检验医学,2020,35(12):1315-1319. MA Z,GUAN M,XING Z F,et al.Research status and progress of Influenza viruses[J].Laboratory Medicine,2020,35(12):1315-1319.(in Chinese) [4] 江 宁,尹 航,张岩威,等.H9N2亚型禽流感病毒与其他病原混合感染的研究进展[J].中国畜牧兽医,2021,48(9):3447-3455. JIANG N,YIN H,ZHANG Y W,et al.Research progress on co-infection of H9N2 subtype Avian influenza virus with other pathogens[J].China Animal Husbandry & Veterinary Medicine,2021,48(9):3447-3455.(in Chinese) [5] 梁世蕊,吉艳红,王 丹,等.H9N2亚型禽流感病毒NP蛋白纳米抗体的筛选与鉴定[J].中国兽医科学,2023,53(10):1216-1222. LIANG S R,JI Y H,WANG D,et al.Screening and identification of H9N2 Avian influenza virus NP nanobodies[J].Chinese Veterinary Science,2023,53(10):1216-1222.(in Chinese) [6] 李 琼,姚 萍,蒋靖怡,等.2017—2018年常州市甲型H3N2流感病毒血凝素基因特征分析[J].公共卫生与预防医学,2020,31(6):37-41. LI Q,YAO P,JIANG J Y,et al.Analysis of hemagglutinin gene characteristics of Influenza A H3N2 virus in Changzhou,2017—2018[J].Journal of Public Health and Preventive,2020,31(6):37-41.(in Chinese) [7] PAULES C,SUBBARAO K.Influenza[J].Lancet (London,England),2017,390(10095):697-708. [8] BHAT S,JAMES J,SADEYEN J R,et al.Coinfection of chickens with H9N2 and H7N9 Avian influenza viruses leads to emergence of reassortant H9N9 virus with increased fitness for poultry and a zoonotic potential[J].Journal of Virology,2022,96(5):e0185621. [9] CHAUHAN R P,GORDON M L.An overview of Influenza A virus genes,protein functions,and replication cycle highlighting important updates[J].Virus Genes,2022,58(4):255-269. [10] 孙守飞,张 静,薛晓霞,等.新型抗病毒RNA聚合酶PA亚基抑制剂临床研究进展[J].药学研究,2024,43(1):89-92. SUN S F,ZHANG J,XUE X X,et al.Clinical research progress of novel antiviral RNA polymerase PA subunit inhibitor[J].Journal of Pharmaceutical Research,2024,43(1):89-92.(in Chinese) [11] ZHANG J,HU Y,MUSHARRAFIEH R,et al.Focusing on the Influenza virus polymerase complex:Recent progress in drug discovery and assay development[J].Current Medicinal Chemistry,2019,26(13):2243-2263. [12] WANG Q,LI Q,LIU R,et al.Host cell interactome of PA protein of H5N1 Influenza A virus in chicken cells[J].Journal of Proteomics,2016,136:48-54. [13] 董新莹,高晓薇,宋 浩,等.纳米抗体的研究进展及其应用现状[J].生物工程学报,2024,40(12):4324-4338. DONG X Y,GAO X W,SONG H,et al.Research progress and application of nanobodies[J].Chinese Journal of Biotechnology 2024,40(12):4324-4338.(in Chinese) [14] WOLFSON W.Ablynx makes nanobodies from llama bodies[J].Chemistry & Biology,2006,13(12):1243-1244. [15] HE T,NIE Y,YAN T,et al.Enhancing the detection sensitivity of nanobody against aflatoxin B1through structure-guided modification[J].International Journal of Biological Macromolecules,2022,194:188-197. [16] 郭 婷,张宇昊,马 良.纳米抗体的特性及其应用研究进展[J].食品科学,2013,34(3):294-297. GUO T,ZHANG Y H,MA L.Properties and application prospects of nano-antibody in food industry[J].Food Science,2013,34(3):294-297.(in Chinese) [17] VINCKE C,MUYLDERMANS S.Introduction to heavy chain antibodies and derived nanobodies[J].Methods in Molecular Biology (Clifton,NJ),2012,911:15-26. [18] 孙 山,谭 星,庞晓燕,等.纳米抗体技术应用的最新进展[J].生物工程学报,2022,38(3):855-867. SUN S,TAN X,PANG X Y,et al.Recent advances in the application of nanobody technology:A review[J].Chinese Journal of Biotechnology,2022,38(3):855-867.(in Chinese) [19] 王 丹,吉艳红,梁世蕊,等.新型鹅星状病毒ORF2蛋白纳米抗体的筛选及鉴定[J].中国农业科学,2023,56(24):4956-4966. WANG D,HONG J Y,LIANG S R,et al.Screening and identification of nanobodies against Novel goose astrovirus ORF2 protein[J].Scientia Agricultura Sinica,2023,56(24):4956-4966.(in Chinese) [20] RIZK S S,MOUSTAFA D M,ELBANNA S A,et al.Nanobodies in the fight against infectious diseases:Repurposing nature’s tiny weapons[J].World Journal of Microbiology & Biotechnology,2024,40(7):209. [21] 刘翔宇,尹永康,张 红,等.甲氧苄啶纳米抗体噬菌体展示文库的构建及初步筛选[J].中国畜牧兽医,2024,51(11):5074-5085. LIU X Y,YIN Y K,ZHANG H,et al.Construction of phage display library and perliminary screening of trimethoprim nanobody[J].China Animal Husbandry & Veterinary Medicine,2024,51(11):5074-5085.(in Chinese) [22] 侯 强,彭伍平,孙 元,等.猪瘟病毒E2蛋白主要抗原区编码基因的原核表达及其单克隆抗体的制备[J].中国兽医科学,2008,38(1):1-5. HOU Q,PENG W P,SUN Y,et al.Expression of the truncated E2 protein-encoding gene of Classical swine fever virus in Escherichia coli and preparation of a monoclonal antibody against E2 protein[J].Chinese Veterinary Science,2008,38(1):1-5.(in Chinese) [23] 严 昊,冯建远,张子仪,等.纳米抗体的制备与临床应用研究进展[J].中国畜牧兽医,2021,48(2):685-694. YAN H,FENG J Y,ZHANG Z Y,et al.Progress in preparation and clinical application of nanobody[J].China Animal Husbandry & Veterinary Medicine,2021,48(2):685-694.(in Chinese) [24] HE Y,KHAN S,HUO Z,et al.Proteolysis targeting chimeras (PROTACs) are emerging therapeutics for hematologic malignancies[J].Journal of Hematology & Oncology,2020,13(1):103. [25] ZHOU Y,XU S,LÓPEZ-CARROBLES N,et al.Recent advances in the molecular design and applications of proteolysis targeting chimera-based multi-specific antiviral modality[J].Acta Materia Medica,2023,2(3):285-298. [26] KEOWN J R,ZHU Z,CARRIQUE L,et al.Mapping inhibitory sites on the RNA polymerase of the 1918 pandemic Influenza virus using nanobodies[J].Nature Communications,2022,13(1):251. [27] CHEN Z S,HUANG H C,WANG X,et al.Influenza A virus H7 nanobody recognizes a conserved immunodominant epitope on hemagglutinin head and confers heterosubtypic protection[J].Nature Communications,2025,16(1):432. [28] SHI Y,WU H,HU W,et al.An antigen-strengthened dye-modified fully-human-nanobody-based immunoprobe for second near infrared bioimaging of metastatic tumors[J].Biomaterials,2022,287:121637. |