姓名:王家俊
性别:男
出生年月:1989-10-20
职称:教授
办公电话:15124530820
工作单位:东北农业大学动物科学技术学院
E-mail:wjj1989@neau.edu.cn
开设研究生课程情况
课程编号 课程名称 课程级别 学时
近五年主持科研项目概况

(1)   国家自然科学基金委员会, 青年科学基金项目, 32002215, 高稳定脂酰肽的分子设计、纳米组装体构建及猪肠道内抗菌效力研究, 2021-01-01 2023-12-31,主持

(2)   黑龙江省人社厅, 黑龙江省博士后面上项目, LBH-Z21003, 脂酰化富脯氨酸肽分子的全新设计、纳米组装体构建及其体内应用效果研究, 2021-12 2024-12,  主持

(3)   东北农业大学, “东农学者学术骨干项目(人才引进), 19YJXG05, 疏水性氨基酸尾端锚定结构对抗菌肽生物学活性的影响, 2019-09 2024-09, 主持

(4)   中国博士后基金委, 中国博士后面上项目, 2021M690576, 抗酶解型Trp富集肽的分子设计、构效关系及抗菌机制研究, 2021-06 2024-06,  主持

(5)   黑龙江省科技厅, 黑龙江省自然科学基金优秀青年项目, YQ2020C009, 抗酶解β-折叠肽的全新设计及其对腹泻断奶仔猪肠道健康的影响, 2020-07 2023-07, 主持

(6)   黑龙江省人社厅, 黑龙江省博士后特别资助项目,LBH-TZ2305,纳米靶向捕获肽分子骨架设计及其对腹泻仔猪肠屏障功能影响的研究,202312至今,主持

(7)    中国博士后基金委, 中国博士后特别资助项目, 2024T170116,   抗酶解型靶向捕获肽的分子设计及其对仔猪肠黏膜屏障保护作用的研究20247月至今,主持       

(8)     国家自然科学基金委员会, 面上项目, 32472956, 基于先天免疫抗菌模式研发的靶向捕获肽对仔猪肠黏膜屏障保护作用的研究, 2025-01-01 2028-12-31主持

近五年项目获奖概况

(1)     2020年度帝斯曼缤纷科技奖——动物营养科学青年学者奖-优胜奖

(2)     2020年度黑龙江省优青

(3)     2021年度黑龙江省研究生导学思政团队(导师)——非粮型饲料资源研发研究生导学思政团队

(4)     2022年度颐和青年奖——新锐奖

(5)     2023年中国畜牧兽医学会动物营养学分会第六届青年学者讲坛—优秀报告

(6)     2023年饲料创新研究生论坛—优胜奖(指导教师)

(7)     第九届全国大学生生命科学竞赛(科学探究类)-国赛一等奖(指导教师)

(8)     第九届全国大学生生命科学竞赛(科学探究类)-省赛一等奖(指导教师)

(9)     2024年饲料创新研究生论坛-一等奖(指导教师)

(10) 2023年度黑龙江省科学技术,科技进步一等奖,非粮型饲料资源挖掘与安全利用关键技术创新,单安山,董娜,王家俊,孟庆维,窦秀静,燕磊,梁代华,毕重朋,张丽聪,邵长轩,杨洋(3/112023-J-014-1-R03

(11)   中国研究生乡村振兴科技强农+创新大赛第四届科技作品竞赛—国赛一等奖(优秀指导教师)


近五年代表性著作、论文

 第一作者或通讯作者

1.         Yang, Zhanyi; Li, Tong; Xing, Junya; He, Shiqi; Wu, Wanpeng; Shan, Anshan*; Wang, Jiajun*, The novel peptide adjuvants potentiate antimicrobial properties of melittin against methicillin-resistant Staphylococcus aureus and their efficacy as potential food preservatives. Food Control 2025, 170, 111037.(IF2023=5.6, 中科院1Top)

2.         Gao, Nan; Fang, Cchunyang; Bai, Pengfei; Wang, Jiajun*; Dong, Na; Shan, Anshan*; Zhang, Licong, De novo design of Na+-activated lipopeptides with selective antifungal activity: A promising strategy for antifungal drug discovery. International Journal of Biological Macromolecules. 2024, 283, 137894.(IF2023=7.7, 中科院1Top)

3.         Song Jing, Zhang Shanshan, Xing Junya, Zhang Licong, Wang Jiajun*, Shan Anshan*, Optimizing Therapeutic Efficacy of Antifungal Peptides via Strategic Terminal Amino Acid Modification. Journal of Advanced Research 2024.(IF2023=11.4,中科院1Top)

4.         Nan GaoPengfei BaiChunyang FangWanpeng WuChongpeng BiJiajun Wang*Anshan Shan*Biomimetic Peptide Nanonets: Exploiting Bacterial Entrapment and Macrophage Rerousing for Combatting Infections[J], ACS Nano, 202418(37):25446-25464.(IF2023=15.8,中科院1Top)

5.         Yu, Weikang; Guo, Xu; Li, Xue Feng; Wei, Ying Xin; Lyu, Yinfeng; Zhang, Licong; Wang, Jiajun*; Shan, Anshan*, Novel multidomain peptide self-assembly biomaterials based on bola structure and terminal anchoring: Nanotechnology meets antimicrobial therapy. Materials Today Bio 2024, 28101183. (IF2023=8.7, 中科院分区一区2023Top, 2024-10)

6.         Weikang YuXu GuoQingrui LiXuefeng LiYingxin WeiChangxuan ShaoLicong ZhangJiajun Wang*Anshan Shan*Revolutionizing Antimicrobial Biomaterials: Integrating an Enzyme Degradation Resistant Sequence into Self-Assembled Nanosystems to Overcome Stability Limitations of Peptide-Based Drugs. Advanced Fiber Materials, 2024, 6 (4), 1188-1211 (IF2023=17.2, 中科院分区一区2023Top, 2024-5)

7.         Wu, Wanpeng; Song, Jing; Li, Tong; Li, Wenyu; Wang, Jiajun*; Wang, Shuo; Dong, Na; Shan, Anshan*, Unlocking Antibacterial Potential: Key-Site-Based Regulation of Antibacterial Spectrum of Peptides. Journal of Medicinal Chemistry 2024, 67 (5), 4131-4149. (IF2023=6.8,  中科院分区2023一区Top, 2024-2-29)

8.         Gao, Nan; Wang, Jiajun*; Fang, Chunyang; Bai, Pengfei; Sun, Yu; Wu, Wanpeng; Shan, Anshan*. Combating bacterial infections with host defense peptides: Shifting focus from bacteria to host immunity. Drug Resistance Updates, 2023, 72: 10103 (IF2022=24.3, 中科院分区2023Top, 2023-12)

9.         Su, Yunzhe; Sun, Taotao; Gao, Junhan; Zhang, Chenxu; Liu, Xuesheng; Bi, Chongpeng; Wang, Jiajun*; Shan, Anshan*. Anti-Proteolytic Peptide R7I Protects the Intestinal Barrier and Alleviates Fatty Acid Malabsorption in Salmonella Typhimurium-Infected Mice. International Journal of Molecular Sciences, 2023, 24:22 (IF2022=5.6, 中科院分区2023, 2023-11)

10.     Yang, Zhanyi; He, Shiqi; Wei, Yingxin; Li, Xuefeng; Shan, Anshan*; Wang, Jiajun*, Antimicrobial peptides in combination with citronellal efficiently kills multidrug resistance bacteria. PHYTOMEDICINE, 2023, 120: 155070 (IF2022=7.9, 中科院分区2023一区Top, 2023-11)

11.     He, Shiqi; Yang, Zhanyi; Li, Xuefeng; Wu, Hua; Zhang, Licong; Shan, Anahsn*; Wang, Jiajun*, Boosting Stability and Therapeutic Potential of Proteolysis-Resistant Antimicrobial Peptides by End-Tagging β-Naphthylalanine. Acta Biomaterialia, 2023, 164:175-194. (IF2022=9.7, 中科院分区2023一区Top, 2023-5)

12.     Yu, Weikang; Sun, Yu; Li, Wenyu; Guo, Xu.; Liu, Xuesheng; Wu, Wanpeng; Yu, Wanqi; Wang, Jiajun*; Shan, Anshan*, Self-Assembly of Antimicrobial Peptide-Based Micelles Breaks the Limitation of Trypsin. ACS Applied Materials & Interfaces, 2022,15(1):494-510 (IF2021=10.383, 中科院分区2022二区Top, 2022-12)

13.     Sun, Taotao; Liu, Xuesheng; Su, Yunzhe; Wang, Zihang; Cheng, Baojing; Dong, Na; Wang, Jiajun*; Shan, Anshan*. The Efficacy of Anti-Proteolytic Peptide R7I in Intestinal Inflammation, Function, Microbiota, and Metabolites by Multi-Omics Analysis in Murine Bacterial Enteritis. Bioengineering & Translational Medicine. 2023, 8 (2). (IF2021=10.684, 中科院分区2022二区, 2022-11-18)

14.     He, Shiqi; Yang, Zhanyi; Li, Xuefeng; Wu, Hua; Zhang, Licong; Wang, Jiajun*; Shan, Anshan*, Optimized Proteolytic Resistance Motif (DabW)-Based U1-2WD: A Membrane-Induced Self-Aggregating Peptide to Trigger Bacterial Agglutination and Death. Acta Biomaterialia, 2022, 153, 540-556. (IF2021=10.633, 中科院分区2022一区Top, 2022-11)

15.     Wang, Jiajun*; Li, Wenyu; KHosravi-Darani, Kianoush; Kim, In Ho, Editorial: The Development and Utilization of Novel Antibiotic Alternatives. Frontiers in Microbiology, 2022, 13:1008850. (IF2021=6.064, 中科院分区2022二区Top, 2022-8-31)

16.     Li, Qiuke; Li, Jinze; Yu, Weikang; Wang, Zhihua; Li, Jiawei, Feng, Xingjun; Wang, Jiajun*; Shan, Anshan*, De Novo Design of A pH-Triggered Self-Assembled β-Hairpin Nanopeptide with the Dual Biological Functions for Antibacterial and Entrapment. Journal of Nanobiotechnology, 2021, 19:183. (IF2020=10.435, 中科院分区2021一区Top, 2021-6-14)

17.     Yu, Weikang#; Wang, Jiajun#; Wang, Zihang; Li, Lingxue; Li, Wenyu; Song, Jing; Zhang, Shanshan; Shan, Anshan*, PEGylation of the Antimicrobial Peptide PG-1: A Link between Propensity for Nanostructuring and Capacity of the Antitrypsin Hydrolytic Ability[J]. Journal of Medicinal Chemistry, 2021, 64 (14): 10469-10481. (IF2020=7.446, 中科院分区(升级)2021一区Top. 2021-07)

18.     于伟康,张珊珊,杨占一,王家俊*,单安山*.超分子多肽自组装在生物医学中的应用[J].生物工程学报, 2021, 37 (07):2240-2255.

19.     Yang, Yang; Wang, Chenxi; Gao, Nan; Lyu, Yinfeng; Zhang, Licong; Zhang, Sujiang; Wang, Jiajun*; Shan, Anshan*, A Novel Dual-Targeted α-Helical Peptide with Potent Antifungal Activity against Fluconazole-Resistant Candida Albicans Clinical Isolates[J]. Frontiers in Microbiology, 2020, 11 (548620). (IF2019=4.236,中科院分区(升级)2020二区Top, 2020-9-30)

20.     He, Shiqi; Yang, Zhanyi; Yu, Weikang; Li, Jiawei; Li, Zhongyu; Wang, Jiajun*; Shan, Anshan*, Systematically Studying the Optimal Amino Acid Distribution Patterns of the Amphiphilic Structure by Using the Ultrashort Amphiphiles[J]. Frontiers in Microbiology, 2020, 11:569118. (IF2019=4.236,中科院分区(升级)2020二区Top, 2020-11-25)

21.     Wang, Jiajun; Dou, Xiujing; Song, Jing; Lyu, Yinfeng; Zhu, Xin; Xu, Lin; Li, Weizhong; Shan, Anshan*, Antimicrobial Peptides: Promising Alternatives in the Post Feeding Antibiotic era[J], Medicinal Research Reviews, 2019, 39 (3): 831-859. (IF2018=9.791, 中科院分区(升级)2019一区Top, 热点文章, 2019-05)

22.     Song, Jing#; Wang, Jiajun#; Zhan, Na; Sun, Taotao; Yu, Weikang; Zhang, Licong; Shan, Anshan*; Zhang, Aizhong, Therapeutic Potential of Trp-Rich Engineered Amphiphiles by Single Hydrophobic Amino Acid End-Tagging, ACS Applied Materials & Interfaces, 2019, 11 (47): 43820-43834. (IF2018=8.456, 中科院分区(升级)2019一区Top, 2019-11-27)

23.     Wang, Jiajun#; Song, Jing#; Yang, Zhanyi; He, Shiqi; Yang, Yi; Feng, Xingjun; Dou, Xiujing; Shan, Anshan*, Antimicrobial Peptides with High Proteolytic Resistance for Combating Gram-Negative Bacteria[J], Journal of Medicinal Chemistry, 2019, 62 (5): 2286-2304. (IF2018=6.054, 中科院分区(升级)2019一区Top,2019-3-14)

24.     Chou, Shuli#; Wang, Jiajun#; Shang, Lu; Akhtar Muhammad Usman; Wang, Zhihua; Shi, Baoming; Feng, Xingjun; Shan, Anshan*, Short, Symmetric-Helical Peptides Have Narrow-Spectrum Activity with Low Resistance Potential and High Selectivity[J]. Biomaterials Science, 2019, 7 (6): 2394-2409. (IF2018=5.251, 中科院分区(升级)2019二区, 2019-6-1)

25.     Wang, Jiajun#; Chou, Shuli#; Yang, Zhanyi; Yang, Yang; Wang, Zhihua; Song, Jing; Dou, Xiujing; Shan, Anshan*, Combating Drug-Resistant Fungi with Novel Imperfectly Amphipathic Palindromic Peptides[J]. Journal of Medicinal Chemistry, 2018, 61 (9): 3889-3907. (IF2017=6.253, 中科院分区(升级)2018一区,2018-5-10)

26.     Wang, Jiajun; Chou, Shuli; Xu, Lin; Zhu, Xin; Dong, Na; Shan, Anshan*; Chen Zhihui, High Specific Selectivity and Membrane-Active Mechanism of the Synthetic Centrosymmetric Alpha-Helical Peptides with Gly-Gly Pairs[J]. Scientific Reports, 2015, 5: 15963. (IF2014=5.578, 中科院分区2015二区,2015-11-4)


近五年授权的专利等情况

1.        双靶点抗真菌肽及其制备方法和应用, 王家俊 邢珺雅 要雨婷 李湘 宋静 单安山, CN202411856278.9,申请日 2024.12.17

2.        细菌微环境响应型的免疫调节抗菌肽及其制备方法和应用, 王家俊,高楠,卞一宽,王香婉,王莎莎,房春洋,白鹏飞,单安山,CN2024102966000,申请日:2024.3.15

3.        一种抗酶解型纳米捕获肽及其制备方法和应用, 王家俊,高楠,范艺萱,王莎莎,王香婉,卞一宽,白鹏飞,房春洋,单安山,CN2024104203738,申请日期:2024.04.09

4.        一种广谱抗菌肽AG3及其制备方法和应用,毕重朋; 徐浩然; 王家俊; 董娜; 单安山,2024-4-30, CN202410536908.8

5.        一种具有免疫调节功能的pH响应型纳米抗菌肽及其制备方法和应用,单安山; 房春洋; 王莎莎; 王家俊,2024-7-29, CN202411020706.4

6.        兼具细菌捕获与抑菌功能的纳米抗菌肽及制备方法和应用, 王家俊;高楠;房春洋;白鹏飞,ZL202310673197.4,申请时间:2023.6.8,授权日2024.02.06。缴费日期78日。

7.        一种HD6仿生纳米捕获肽及其制备方法和应用,王家俊;高楠;王宇靖;宋静;吕晶;单安山,ZL202310494519.9,申请时间:2023.05.05,  授权日:2024.04.02。缴费日期65日。

8.        一种靶向真菌的抗菌肽及制备方法和应用,王家俊; 李灵雪; 孙涛涛; 单安山; 于伟康,申请日2021.11.04,授权日2023.03.07, ZL202111298404X。缴费日期124日。

9.        一种广谱抗菌的α螺旋肽及其制备方法和应用,王家俊; 李文宇; 宋静; 单安山, 申请日2021.10.13,授权日2023.03.31ZL202111191231.1。缴费日期1113

10.    一种脯氨酸保护型抗酶解抗菌肽及其制备方法和应用, 王家俊; 徐浩然; 吴万鹏; 单安山, ZL202210818325.5,申请日:, 授权时间:2023.09.07。缴费日期812日。

11.    一种高蛋白酶稳定性色氨酸富集抗菌肽的制备方法和应用, 王家俊; 李文宇; 孙佳琦; 单安山, 申请日2022.7.12,授权日2023.10.13ZL202210817693.8。缴费日期823

12.    一种月桂酸修饰抗酶解肽及其制备方法和应用, 王家俊; 孙宇; 于宛琪; 刘学生; 单安山, 申请日2022.7.25,授权日2023.10.17ZL202210877482.3。缴费日期826

13.    一种尾端锚定的α-螺旋抗菌肽GW4A及制备方法和应用,单安山; 王家俊; 宋静; 展娜; 于伟康,申请日2019.7.22,授权日2021.03.16ZL201910659907.1

14.    基于两栖类蛙源抗菌肽的衍生肽W8及其制备方法和应用,单安山; 杨占一; 何诗琪; 王家俊, 申请日2018.11.30 授权日2021.12.14ZL201811452513.0

15.    一种靶向抗菌肽及其制备方法和应用,单安山; 徐林; 丑淑丽; 王家俊, 申请日2016.11.25,授权日2018.08.28ZL201611052825.3

16.    一种非完美两亲性肽W4及其制备方法和应用,单安山; 何诗琪; 杨占一; 王家俊,申请日2018.11.30,授权日2021.10.19ZL201811452528.7

17.    一种抗菌肽VCK-17及其联合香茅醛做为抗菌药物的应用, 单安山; 杨占一; 何诗琪; 王家俊, 申请日2022.09.07,授权日2023.11.24ZL202211087472.6

18.    一种抗酶解抗菌肽N1及其制备方法和应用, 单安山; 何诗琪; 杨占一; 王家俊 ;申请日2022.3.16,授权日2023.07.07ZL202210259454.5

19.    一种抗酶解抗菌肽U1-2WD及其制备方法和应用, 单安山; 何诗琪; 杨占一; 王家俊, 申请日2022.03.16, 授权日2023.06.30ZL202210258550.8

其他获奖及荣誉称号

(1)     2020年度帝斯曼缤纷科技奖——动物营养科学青年学者奖-优胜奖

(2)     2020年度黑龙江省优青

(3)     2021年度黑龙江省研究生导学思政团队(导师)——非粮型饲料资源研发研究生导学思政团队

(4)     2022年度颐和青年奖——新锐奖

(5)     2023年中国畜牧兽医学会动物营养学分会第六届青年学者讲坛—优秀报告

(6)     2023年饲料创新研究生论坛—优胜奖(指导教师)

(7)     第九届全国大学生生命科学竞赛(科学探究类)-国赛一等奖(指导教师)

(8)     第九届全国大学生生命科学竞赛(科学探究类)-省赛一等奖(指导教师)

(9)     2024年饲料创新研究生论坛-一等奖(指导教师)

(10) 2023年度黑龙江省科学技术,科技进步一等奖,非粮型饲料资源挖掘与安全利用关键技术创新,单安山,董娜,王家俊,孟庆维,窦秀静,燕磊,梁代华,毕重朋,张丽聪,邵长轩,杨洋(3/112023-J-014-1-R03

(11)   中国研究生乡村振兴科技强农+创新大赛第四届科技作品竞赛—国赛一等奖(优秀指导教师)