宗成利 博士 教授 博士生导师
联系方式:海南省海口市人民大道58号海南大学药学院药学系,570228
邮箱:chengli.zong@hainanu.edu.cn
课题组:http://zong.scigoogle.com/
1.教育及工作背景
2020.10-至今 海南大学药学院 教授
2016.08-2020.10 默沙东制药公司-美国费城 高级科学家
2010.09-2016.05乔治亚大学(university of Georgia)-复杂碳水化合物研究中心(Complex Carbohydrate Research Center)(博士)
2007.09-2010.07中国海洋大学-药学院(硕士)
2003.09-2007.07中国海洋大学-药学院(本科)
2.科研情况
细菌疫苗新策略,新型肿瘤疫苗,疫苗佐剂活性增强研究
海南大学药学院-迈科康生物科技有限公司“先进疫苗研究联合实验室”-负责人
海南大学-糖类小分子药物及多糖疫苗研究创新团队-负责人
3.研究领域
多糖疫苗,免疫学,药物化学,糖化学生物学
4.代表性项目
(1)肿瘤疫苗
新型原位肿瘤疫苗,基于肿瘤表面特殊抗原的亚单位疫苗。
(2)针对超级耐药菌的多糖疫苗研究
作为肺炎球菌多糖领域的行业专家,参与了默沙东下一代肺炎球菌疫苗的开发:例如细菌的发酵,荚膜多糖的分离,纯化,活化,与CRM197偶联等。参与研究的默沙东多价肺炎球菌结合型疫苗研发V114和V116项目已经进入临床实验。
(3)糖胺聚糖的化学生物学研究
建立了一种可以快速合成糖胺聚糖类化合物的保护基以及纯化策略,为此类化合物的构效关系研究奠定了基础。领导并完成了以下项目:建立了一个硫酸肝素四糖化合物库,通过微阵列筛选,发现了一系列硫酸肝素结合蛋白的底物特点;发现了一个在神经导向过程中起重要作用的硫酸肝素八糖结构;发现了一种可以修饰哺乳动物细胞表面的新方法;确定了肿瘤细胞表面一种特殊的硫酸软骨素A。
5.代表性成果
1)Xu, Y. #; Yang, J.; Meng, X. #; Meng, S.; Sun, T. *; Ding, N. *; Zong, C. *, The synthesis and preliminary immunological evaluation of a dual-adjuvant SARS-CoV-2 RBD vaccine: Covalent integration of TLR7/8 and iNKT cell agonists. International Journal of Biological Macromolecules, 2024, 270, 132258. IF=8.2 一区
2)Meng, X. #, Xu, Y. #, Yang, J., Meng, S., Ding, N., Sun, T.; Zong, C. *, Strategic development of a self-adjuvanting SARS-CoV-2 RBD vaccine: From adjuvant screening to enhanced immunogenicity with a modified TLR7 agonist. International Immunopharmacology, 2024, 132, 111909. IF=5.6 二区
3)Yang, J. #; Meng, X.; Rao, Y.; Wang, X.; Meng, S.; Teng, C.; Sun, T. *; Zong, C.*, Harnessing the potential of de-sulfated heparin for targeted drug delivery: A three-component approach exemplified by conjugation with galactose and paclitaxel. Carbohydrate Polymers, 2024, 333, 121986. IF=11.2 一区
4)Weng, W. #; Ren, S. #; Teng, C. #; Guo, J.; Guo, Q.; Zhang, W.; Zong, C.*; Ding, N.*, Chemoenzymatic Synthesis and Immunological Evaluation of sialyl-Thomsen-Friedenreich (sTF) Antigen Conjugate to CRM197. 2024, Bioorganic & Medicinal Chemistry, 117615. IF=3.5 三区
5)Shen, Y. #; Yuan, H. #; Guo, Z.; Li, X.; Yang, Z.*; Zong, C.*, Exonuclease III Can Efficiently Cleave Linear Single-Stranded DNA: Reshaping Its Experimental Applications in Biosensors. Biosensors, 2023, 13, 581. IF=5.5 二区
6)Teng, C. #; Meng, X.; Hu, Y.; Mao, H.; Li, H.; Yang, J.; Sun, T.; Meng, S.; Zong, C.*, Self-assembled TLR7/8 agonist-mannose conjugate as an effective vaccine adjuvant for SARS-CoV-2 RBD trimer. Polymers, 2022, 14, 5466. IF=5.0 二区
7)Sun, T. #; Mai, S-Y. #; Mao, H-Z.; Li, H-T.; Duan, Y-Y.; Meng, S.; Bao, J-L.; Ding, N.; Zong, C.*, Conjugate of Structurally Reassigned Pneumococcal Serotype 31 Polysaccharide with CRM197 Elicited Potent Immune Response. Carbohydrate Polymers, 2022, 289, 119414 IF=11.2 一区
8)Li, H.#; Chen, C.; Mao, H-Z.; Xu, Y.; Meng, S.; Sun, T-T.; Zong, C.*, Efficient synthesis of α-galactosylceramide and its C-6 modified analogues, Frontiers in Chemistry, 2022, 10, 1039731 IF=5.5 三区
9)Wan, Y. #; Zong, C.#; Li, X-P.; Wang, A.; Li, Y.; Yang, T.; Bao, Q.; Dubow, M.; Yang, M.*; Rodrigo, L-A. *; Mao, C. *, New Insights for Biosensing: Lessons from Microbial Defense System. Chemical Reviews, 2022, 122, 8126-8180 综述 IF=62.1 一区
10)Zong, C.#; Fang, L.; Song, F.; Wang, A.; Wan, Y.*, Fluorescent Fingerprint Bacteria by Multi-channel Magnetic Fluorescent Nanosensor. Sensors and Actuators B: Chemical. 2019, 289, 234-241. IF=8.4 一区
11)Zong, C.#; Venot, A., Li, X.; Lu, W; Xiao, W.; Wilkes, J-W; Salanga, C-L.; Handel, T-M.; Wang, L.; Wolfert, M-A.; Boons, G-J.*, Heparan Sulfate Microarray Reveals that Heparan Sulfate-Protein Binding Exhibit Different Ligand Requirements. Journal of the American Chemical Society, 2017, 139, 9534-9543. IF=15.0一区
12)Zong, C.#; Huang, R.; Condac, E.; Chiu, Y.; Xiao, W.; Li, X.; Lu, W.; Ishihara, M.; Wang, S.; Ramiah, A.; Stickney, M.; Azadi, P.; Amster, I-J.; Moremen, K-W.; Wang, L.; Sharp, J-S.; Boons, G-J.*, Integrated Approach to Identify Heparan Sulfate Ligand Requirements of Robo1. Journal of the American Chemical Society, 2016, 138, 13059-13067. IF=15.0 一区
13)Zong, C.#; Venot, A.; Dhamale, O-P.; Boons, G-J.*, Fluorous supported modular synthesis of heparan sulfate oligosaccharides. Org. Lett., 2013, 15, 342–345. IF=5.2一区
14)Zong, C. #; Li, Z.; Sun, T.; Wang, P.; Li, Y.*, “Convenient Synthesis of Sulfated Oligofucosides” Carbohydr. Res. 2010. 11, 1522-1532. IF=3.1 三区
15)Lu, W.#; Zong, C.; Chopra, P.; Pepi, L.; Xu, Y.; Amster, J.; Liu, J.; Boons, G-J.*, Controlled chemoenzymatic synthesis of heparan sulfate oligosaccharide. Angewandte Chemie, 2018, 57, 5340-5344. IF=16.6 一区
16)Capicciotti, C. J. #; Zong, C.; Sheikh, M.; Sun, T.; Wells, L.; Boons, G-J.*, Cell-Surface Glyco-Engineering by Exogenous Enzymatic Transfer using a Bi-Functional CMP-Neu5Ac Derivative. Journal of the American Chemical Society, 2017, 139, 13342-13348. IF=15.0 一区
17)Huang, R.#; Zong, C.; Venot, A.; Chiu, Y.; Zhou, D.; Boons G-J.; Sharp, J.*, The de novo Sequencing of Complex Mixtures of Heparan Sulfate Oligosaccharides. Analytical Chemistry, 2016, 88, 5299-5307. IF=7.4 一区